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Posts Tagged ‘Image’

Google ends free ‘original quality’ image backups for the Pixel 4, Pixel 4 XL

20 Oct

The newly unveiled Google Pixel 4 and Pixel 4 XL smartphones will not include three years of free ‘original quality’ Google Photos storage, the company has confirmed. Details about the change were quietly listed on the Google Store’s Pixel 4 product page following the company’s press event on Tuesday, revealing an elimination of the perk Google has offered since the launch of its original Pixel model.

All Android mobile devices come with free Google Photos storage for images and videos captured with the handset, but there’s a catch: the content is compressed from its original quality down to ‘high quality.’

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The Pixel smartphone line has remained notable among its peers by offering atypically excellent camera quality, particularly in low-light environments. Before the Pixel 4, Google relied on computational photography, not extra lenses, to give its phones an edge. This time around, however, Google has taken steps to remain competitive with Apple by packing more than one camera into its newly unveiled Pixel 4 devices.

Many consumers, particularly photographers who prefer Android over iOS, have anticipated the launch of this phone specifically for its mobile camera capabilities. That makes Google’s decision to end its free ‘original quality’ photo storage particularly baffling. Buyers must either sign up for a paid storage plan or settle for compressed backups.

As recently noted by XDA, the Google Store’s Pixel 4 page reads, ‘Never worry about storing, finding, or sharing your memories thanks to unlimited storage in high quality on Google Photos.’ That feature comes with a small disclaimer that states:

Google Photos offers free unlimited online storage for all photos and videos uploaded in high quality. Photos and videos uploaded in high quality may be compressed or resized. Requires Google Account. Data rates may apply.

Google offers multiple cloud storage plans under its Google One subscription, which starts at $ 1.99/month for 100GB of storage if you pay annually. The Pixel 4 smartphone is available to preorder from the Google Storage now for $ 799.


Update (October 16, 2019): Corrected pricing of the entry-level Google One subscription plan.

Articles: Digital Photography Review (dpreview.com)

 
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Shutterstock’s free image editor gets new ‘Remove Background’ tool

10 Oct

Shutterstock Editor, the stock image company’s free online image-editing web app, has added a new feature called Remove Background. With this tool, users can easily remove the background from images in order to isolate the subject, making it possible to incorporate the extracted element or person into other designs.

Shutterstock Editor offers users access to custom canvas sizes, such as ones intended for ebook covers and Instagram posts; users can also create their own custom canvas size. Images can be uploaded from an online destination using a URL or from the user’s computer, plus there’s the option of selecting an image from Shutterstock’s collection. The web app also offers access to free design templates.

The new Remove Background tool, which is found in the UI’s ‘Image Tools’ section, simply requires the user to select the areas of the image they want to keep and the areas they want to remove. When tested, the entire selection and removal process was very fast and accurate. The feature is live for all users now.

Articles: Digital Photography Review (dpreview.com)

 
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Exposure Software releases Exposure X5 image editing and organizing software

02 Oct

Exposure Software (formerly Alien Skin) has released its new flagship product, the image editing and organizing software Exposure X5. The new package comes with long list of improvements over the last version Exposure X4.5 which includes the following:

  • 3D Color Masking allows you to control where an image adjustment is applied by color characteristics such as hue, saturation, and luminance. You can select foreground or background areas, skies, skin tones or specific color ranges using the tool.
  • Chromatic Aberration Correction removes color fringes caused by lens refraction. Corrections can be applied by selecting a lens profile or manually for more precise control. Apply via lens profile or by manual adjustment if precise control is desired.
  • Vignette Correction does what it says on the tin and lifts the brightness around the edges of your images to counteract vignetting effects. Like the CA correction, this can be applied using a lens profile or manually.
  • Custom Camera Profiles let you control the JPG color rendering from RAW data for a particular camera. Camera profiles created by X-Rite or other software can be automatically applied by matching a camera model or serial number. Optionally they can also be applied when matching a specific lens or a pre-defined ISO range.

Other new few features and functions include complementary color presets, additional black&white film simulation presets, new image flip options, support for gatscale TIF and JPG images as well as multiple user interface language options.

Owners of Exposure X4 who purchased their copy on or after August 1st, 2019 will be receiving a free upgrade to Exposure X5 soon. Anyone you bought any Exposure version before this date will be able to purchase an update version for $ 89. The full version will set you back $ 119. A 30 day trial version is available. You’ll find more information on the Exposure website.

Articles: Digital Photography Review (dpreview.com)

 
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Sony has announced it’s reorganizing and renaming its image sensor business

30 Sep

Sony has announced it’s reorganizing its image sensor business and giving new titles to various management positions tomorrow, October 1, 2019.

In a press release, Sony notes its ‘Imaging & Sensing Solutions’ is being reorganized to ‘Corporate IS Department.’ Sony has also streamlined its research and development (R&D) organizations by combining the divisions within each of the three R&D organizations: Application Technology Development, System and Platform Technology Development, and Fundamental Technology Research and development.

The section of the press release detailing the ‘Organizational Reforms’ within Sony’s image sensor business.

With the reorganized structure comes new titles for multiple division heads and Senior Vice President Makoto Toyoda.

The section of the press release detailing the ‘Personnel Appointments’ within Sony’s image sensor business.

No answer is given as to why the changes are being made and what they could mean for consumers, but it’s something we’ll be keeping an eye on.

Articles: Digital Photography Review (dpreview.com)

 
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Huawei Kirin 990 mobile chipset launches with improved image signal processor

10 Sep

Last week Samsung announced its new top end mobile chipset Exynos 980 with a range of new imaging capabilities. Now it’s rival Huawei’s turn. At its press conference at the IFA trade show in Berlin the Chinese company revealed its new system-on-a-chip (SoC) that will likely power upcoming high-end Huawei devices, including the Mate 30 Pro which is expected to launch on September 19th.

Like for the the Exynos, one of the Huawei’s Kirin 990 chipset’s new stand-out features is the integration of 5G modem. Huawei says the Kirin 990 will provide peak download speeds of 2.3 Gbit/s and upload of 1.25 Gbit/s.

Of course there’s also an integrated Neural Processing Unit (NPU) that will be tasked will all sorts of AI-applications and Huawei says the new chipset will be more energy-efficient and deliver more power for mobile gaming aficionados.

Mobile photographers will be more interested in the new Image Signal Processor ISO 5.0, though. The company says it’s 15 percent more powerful than its predecessor for faster image and video processing, and also comes with ‘professional-level’ hardware noise reduction. In addition, real-time video post-processing and rendering is based on AI segmentation and is capable of adjusting color parameters frame by frame for optimized video color.

We should find out in just over a week how the new chipset performs in an actual device.

Articles: Digital Photography Review (dpreview.com)

 
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Sony announces a6600 with image stabilization and Real-time Tracking autofocus

29 Aug

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Sony has just announced the a6600, a camera it’s calling the new ”flagship” of its APS-C lineup. In it, you’ll find a host of enhancements, including in-body image stabilization, the latest implementation of Sony’s Real-time Tracking autofocus, which seamlessly transitions from subject tracking to face and eye-detection, as well as a Z-type battery, which should have around 2.2x the stamina of the older, smaller W-series battery. Weight has gone up as a result of all this, with the camera weighing in at 503g (the a6400 is 100g lighter at 403g).

Sony has also tweaked the design of the grip on the a6600, partly for ergonomic reasons of course, but also partly to make room for the much-bigger battery. You can also shoot full 14-bit Raw files, and Real-time Tracking functionality – including eye detection – is possible while shooting 4K video. Speaking of video, the a6600 makes room for both microphone and headphone ports, and can shoot 4K footage in HLG to help make the most of the camera’s dynamic range.

Other core features remain unchanged from the existing a6400, including a 24MP APS-C sensor, 11fps burst shooting with autofocus and auto exposure, 4K/30p video recording and a 2.36M-dot OLED viewfinder. The a6600 does have a touchscreen for touch focus, touch shutter and touch tracking functionality. We’re told the a6600 officially replaces the a6500.

The Sony a6600 will be available in November, 2019, at a price of $ 1400 US ($ 1900 CAN) body-only, and $ 1800 US ($ 2400 CAN) with an 18-135mm F3.5-5.6 kit lens.

Press release:

Sony Electronics Strengthens APS-C Mirrorless Line-up with Launch of Two New Cameras

Company Introduces Alpha 6600 with in-body Image Stabilization and Enhanced Battery Life, Also Boosts Product Portfolio with Introduction of Alpha 6100

SAN DIEGO — August 28, 2019 — Sony Electronics today announced two new additions to its ? (Alpha) series of mirrorless cameras with the launch of the Alpha 6600 (model ILCE-6600) and Alpha 6100 (model ILCE-6100). These new models bring many of Sony’s most advanced imaging technologies into compact, lightweight APS-C bodies.

The new, extremely versatile Alpha 6600 camera has been designed to address the needs of the most demanding photographers and videographers, while the new Alpha 6100 is targeted at users who are looking to produce high-quality photos and videos with an interchangeable lens camera.

In addition to the new bodies, the Sony APS-C range has been further strengthened by the launch of two new lenses: E 16-55mm F2.8 G and E 70-350mm F4.5-6.3 G OSS. Sony’s “One Mount” solution for both APS-C and Full-frame cameras provides creators an extreme amount of versatility for all of their photography and video needs.

“These new APS-C cameras provide excellent image quality in a compact package, with the ability to take full advantage of Sony’s growing lineup of 54 different E-mount lenses,” said Neal Manowitz, deputy president of Imaging Products and Solutions at Sony Electronics. “We are proud to bring so many of our innovations into our APS-C lineup and to provide creators with several new tools to realize their vision.”

The new Alpha 6600 and Alpha 6100 include a 24.2MP Exmor™ CMOS image sensor, the latest BIONZ X™ image processor, and a front-end LSI implemented in Sony’s full-frame cameras. This powerful trio combine to deliver all-around enhancements in image quality and performance across all areas of photo and video capture.

The Alpha 6600 and Alpha 6100 offer a lightning-fast autofocus acquisition time of 0.02 seconds. With 425 focal-plane phase-detection autofocus (AF) points covering approximately 84 percent of the image area and 425 contrast-detection AF points, the high density and wide coverage of the AF system ensure reliable AF, even in the most challenging light conditions. Both new models benefit from Sony’s ‘Real-time Tracking’ which utilizes Sony’s latest algorithm with Artificial Intelligence-based object recognition to ensure that subjects can be captured with excellent accuracy, even via the touch panel on the rear screen. In addition, the new models offer ‘Real-time Eye AF’, the latest version of Sony’s acclaimed Eye AF technology. Real-time Eye AF employs AI-based object recognition to detect and process eye data in real time, resulting in improved accuracy, speed and tracking performance of Eye AF for both humans and animals, and it allows the photographer to concentrate exclusively on composition. The Alpha 6600 also offers Real Time Eye AF in video. When activated, the eye of a subject is automatically tracked with high precision and reliability, allowing the shooter to focus on the content itself as opposed to what is in focus or not.

Additionally, both cameras can shoot high-quality 4K video, and include a microphone jack and flip screen that allows for easy framing and shooting of vlog-style content. The Alpha 6600 also features a headphone jack to monitor audio.

An Eye for Detail

Based upon feedback from users of existing Sony APS-C camera users, Sony has added features to the Alpha 6600 and Alpha 6100 to fine tune the user experience. These include:

  • Improved color reproduction; algorithms inherited from full-frame models deliver natural color reproduction, particularly in skin tones
  • Hi-resolution internal 4K movie recording with full-pixel readout without pixel binning in Super 35mm format with easy smartphone transfers via the Imaging Edge™ Mobile application
  • Interval shooting for stunning time-lapse videos
  • 180-degree tiltable, 3.0-type 921k-dot (approx.) LCD touch screen
  • Integrated Microphone input for clear and crisp audio on video recordings

Alpha 6600

Across an ISO range of 100-32000 (expandable to ISO 50 – 102400), the new Alpha 6600 offers superb low-noise performance and delivers extremely high-quality images, even in low-light conditions. By applying noise reduction and sharpness processing optimally in each area, Area-specific Noise Reduction and Detail Reproduction Technology greatly reduce noise while preserving high resolution. This contributes to fine reproduction of subject textures and shadow details.

The Alpha 6600 features many of the technology breakthroughs that are attracting praise on Sony’s high-end full-frame cameras. These include:

  • Sony’s innovative 5-axis in-body image stabilization system that results in a 5.0-step shutter speed advantage
  • Implementation of the industry-leading long battery life with Sony Z Battery for the first time on an APS-C camera, enabling extended power performance; approx. 720 still images using viewfinder, approx. 810 images using LCD monitor
  • A tough magnesium alloy design that is dust and moisture resistant
  • Real-time Eye AF for movie shooting; when activated, the eye of a subject is automatically tracked with high precision and reliability, allowing the shooter to focus on the content itself as opposed to what is in focus or not in focus. Touch Tracking functionality will also automatically initiate Eye AF when a human subject is selected
  • Integrated headphone jack which allows the user to connect high-quality headphones for accurate monitoring of recorded sound

4K Recording

The Alpha 6600 and Alpha 6100 boasts internal 4K movie recording in Super 35mm format with full pixel readout without pixel binning, to enable them to capture approximately 2.4x the amount of information required for 4K movies. This oversampling results in stunning footage, delivered in the XAVC S™ format with unparalleled resolution. The Alpha 6600 also equips an HLG (Hybrid Log-Gamma) picture profile that supports an instant HDR workflow. Recorded movies played back on an HDR (HLG) compatible TV will appear true-to-life, with no blocked shadows or blown highlights, and without the need for color grading. For users who want to color grade their footage in post-production, S-Log3 and S-Log2 Gamma profiles are provided.

Pricing and Availability

The new Alpha 6600 will be available in November and will be sold at a variety of Sony authorized dealers throughout North America at below prices:

Camera body – $ 1,400 US / $ 1,900 CA

Camera kit with Sony 18-135mm Lens – $ 1,800 US / $ 2,400 CA

Sony a6600 specifications

Price
MSRP $ 1400 (body only), $ 1800 (w/18-135mm lens)
Body type
Body type Rangefinder-style mirrorless
Body material Magnesium alloy
Sensor
Max resolution 6000 x 4000
Image ratio w:h 3:2, 16:9
Effective pixels 24 megapixels
Sensor photo detectors 25 megapixels
Sensor size APS-C (23.5 x 15.6 mm)
Sensor type CMOS
Processor Bionz X
Color space sRGB, Adobe RGB
Color filter array Primary color filter
Image
ISO Auto, 100-32000 (expandable to 102400)
Boosted ISO (maximum) 102400
White balance presets 8
Image stabilization Sensor-shift
Image stabilization notes 5-axis
Uncompressed format RAW
JPEG quality levels Extra fine, fine, standard
File format
  • JPEG (Exif v2.3)
  • Raw (14-bit Sony ARW)
Optics & Focus
Autofocus
  • Contrast Detect (sensor)
  • Phase Detect
  • Multi-area
  • Center
  • Selective single-point
  • Tracking
  • Single
  • Continuous
  • Touch
  • Face Detection
  • Live View
Autofocus assist lamp Yes
Manual focus Yes
Number of focus points 425
Lens mount Sony E
Focal length multiplier 1.5×
Screen / viewfinder
Articulated LCD Tilting
Screen size 3
Screen dots 921,600
Touch screen Yes
Screen type TFT LCD
Live view Yes
Viewfinder type Electronic
Viewfinder coverage 100%
Viewfinder magnification 1.07× (0.71× 35mm equiv.)
Viewfinder resolution 2,359,296
Photography features
Minimum shutter speed 30 sec
Maximum shutter speed 1/4000 sec
Exposure modes
  • iAuto
  • Program
  • Aperture priority
  • Shutter priority
  • Manual
Built-in flash No
External flash Yes (via hot shoe)
Flash modes Flash off, Autoflash, Fill-flash, Rear Sync., Slow Sync., Red-eye reduction (On/Off selectable), Hi-speed sync, Wireless
Flash X sync speed 1/160 sec
Drive modes
  • Single
  • Continuous (Hi+/Hi/Mid/Lo)
  • Self-timer
  • Bracketing
Continuous drive 11.0 fps
Self-timer Yes
Metering modes
  • Multi
  • Center-weighted
  • Highlight-weighted
  • Spot
Exposure compensation ±5 (at 1/3 EV, 1/2 EV steps)
AE Bracketing ±5 (3, 5 frames at 1/3 EV, 1/2 EV, 2/3 EV, 1 EV, 2 EV steps)
WB Bracketing Yes (3 frames, H/L selectable)
Videography features
Format MPEG-4, AVCHD, XAVC S
Microphone Stereo
Speaker Mono
Storage
Storage types SD/SDHC/SDXC + Memory Stick Pro Duo
Connectivity
USB USB 2.0 (480 Mbit/sec)
USB charging Yes
HDMI Yes (micro-HDMI)
Microphone port Yes
Headphone port Yes
Wireless Built-In
Wireless notes 802.11b/g/n + NFC
Remote control Yes (via smartphone)
Physical
Environmentally sealed Yes
Battery Battery Pack
Battery description NP-FZ1000
Battery Life (CIPA) 810
Weight (inc. batteries) 503 g (1.11 lb / 17.74 oz)
Dimensions 120 x 67 x 69 mm (4.72 x 2.64 x 2.72)
Other features
Orientation sensor Yes
Timelapse recording Yes
GPS None

Articles: Digital Photography Review (dpreview.com)

 
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You can now search for images in Google Photos using text found within the image

24 Aug

Google has confirmed Google Photos is adding the ability to search for images using the text featured in the content. This is different than searching for images based on their filename, instead using Optical Character Recognition (OCR) technology to identify words featured in photographs, such as from an image of a menu or sign.

The feature was first spied by Hunter Walk, who shared the above screenshots of the new capability. The official Google Photos account responded to the tweet, confirming it’s rolling out the new search capability.

Though apps that use OCR to copy text aren’t anything new, the ability to search through albums of uploaded photos for text located within the images will come in handy for many users, particularly those who use Google Photos for storing scanned copies of invoices and other business documents.

According to The Verge, the new OCR-based search option is available on some Android devices at this time. Google indicated in its tweet that the feature is rolling out over the course of this month, so it may take a number of days or weeks to arrive for everyone.

Articles: Digital Photography Review (dpreview.com)

 
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Nikon SnapBridge 2.6 update brings Raw image transfer support to Android, iOS

21 Aug

Nikon has released SnapBridge version 2.6, finally adding support for Raw (NEF/NRW) image transfers when shooting with Nikon’s WiFi-enabled camera models. The addition finally enables users to wirelessly transfer Raw images from a camera to a smartphone or tablet, something users have been seeking for years.

In addition to Raw transfer support, SnapBridge 2.6 has added a number of smaller changes, including faster transfer of 2MP images, DSLR camera control for settings like shutter speed and aperture, simplified and faster pairing, an updated app design, a power-saving mode and location data with user-selectable accuracy.

SnapBridge 2.6 is available now on both Android and iOS. Nikon has shared videos detailing how to set up SnapBridge with both Android and iOS on its website.

Articles: Digital Photography Review (dpreview.com)

 
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How to Simulate Long Exposure using Stacked Image Averaging

18 Aug

The post How to Simulate Long Exposure using Stacked Image Averaging appeared first on Digital Photography School. It was authored by Rick Ohnsman.

Silky water effects, streaked clouds, motion-smoothed with an ethereal look; long exposure photography seems to be in vogue as photographers discover the looks that can be created. There are multiple ways to achieve this. The most basic is to buy a standard neutral-density photography filter which cuts the light, allowing you to use long shutter speeds without overexposing your shot. You can achieve exposures minutes long, especially when using 10-stop ND filters like the Lee Big Stopper or even the 15-stop Super Stopper.

I recently did an article on an alternative way to make long exposure photos, “Try this DIY Neutral Density Filter for Long Exposure Photos.” I encourage you to read the piece and learn how a piece of welding glass can be a budget substitute for more expensive photographic ND filters.

simulate-long-exposure-stacked-image-averaging

This is the same location I used for some of the other shots in this article but taken when the river was much higher and faster. The biggest difference is that I used DIY welding glass ND filter to achieve this shot. See my other article for this technique.

This article teaches you a third method of making long-exposure images with no filter at all. Unlike the welding glass trick which pretty much requires your final image to be monochrome so as not to have to fight the heavy color cast, this works great in full color, with no filter at all, and no color cast present. It’s a great method to simulate long exposure.

The technique uses a stack of multiple images of the same scene then processed with a Photoshop process called Image Averaging. It’s really quite simple and has some advantages over traditional methods with ND filters.

Advantages over the traditional ND filter method

When doing traditional long exposure photography with an ND filter you will be making long exposures.  (Duh!)  There are a few challenges with this:

  • If during the long exposure you bump the camera or things move in the shot you don’t want to be blurred, you will need to re-do the shot.
  • Long exposures can often be several minutes in length. Double the time if you also enable in-camera noise reduction. If it takes 2-minutes to expose and another 2-minutes for the noise reduction to work, you will only be making a shot every 4-minutes. This can really slow down your work, and if the light changes during that time, you could miss it.
  • With very dark ND filters, you won’t be able to see anything through the lens once the filter is in place. You will have to compose your shot, pre-focus, then mount the ND filter and make the image.
  • Determining exposure will take some calculation. You’ll check exposure without the filter then use a calculation tool to determine the new shutter speed the ND filter requires. Often this will need some tweaking after you see your shot and…yup, another re-do will be needed.
  • If back in editing you see the shots and wish you’d gone for longer or shorter shutter speeds to change the look, too bad. You’d have to go back and reshoot – if that is even possible.
Image: In fairly bright sunlight, even with the ISO at 50 and aperture at f/22, 1/5th of a second wa...

In fairly bright sunlight, even with the ISO at 50 and aperture at f/22, 1/5th of a second was as slow a shutter speed attainable while maintaining proper exposure. This was with no filter.

 The advantages of the Image Averaging method

The advantages of using the image stacking method are essentially the opposite of those things just stated above:

  • You’ll be making multiple images rather than one long one. If one of the images in the group has a problem, you may be able to eliminate it and use the rest to still successfully create the effect.
  • You can see what you’re doing! Not shooting with a dark filter means you’ll still be able to see, compose, use auto-focus, auto-exposure, and even image stabilization if you shoot handheld.
  • No calculation! Without the addition of a dark filter, you eliminate this step.
  • Adjust the length of your “simulated slow shutter” later in post-production. Want more or less blur? You can change your mind later.
  • Are conditions too bright for a standard long exposure shot? Maybe you only own a 6-stop ND filter, and daytime conditions are too bright to let you get the length of exposure you’d like. You can combine both methods to simulate a longer exposure than possible with the ND filter alone.
  • Are people in the shot you’d like to remove? Because they are likely to move during the multiple shots, when the averaging process takes place, they will vanish!
simulate-long-exposure-stacked-image-averaging

Make people disappear! Notice on the inset the people walking in the river, but on the completed shot, 15 images, each 1/5th of a second = 4 seconds simulated. They are gone.

Making the shots

Setting up and shooting the images you need for your image-averaged creation is much the same as any photography. Here are the factors and steps to keep in mind:

Composition still counts!

Because you introduce a long exposure blurred effect does not mean that you will have automatically created a good photo. Still consider how to carefully compose your image. Take into consideration that moving objects in the shot will blur and look simplified with less detail. Good long exposure shots often emphasize the contrast between static, non-moving objects (buildings, rocks, trees, etc.), and moving objects like clouds and water. Include both in your shot.

Shoot on a tripod

I mentioned you could do this handheld and, well…maybe you could. However, even with this technique, you will still want to shoot at the slowest shutter speed possible. That way, you won’t have to make too many shots for combining. Once you get much slower than 1/30th of a second (and faster than that if if you’ve just had coffee), handholding your camera is probably going to ruin your shots.

simulate-long-exposure-stacked-image-averaging

All Images ISO 50, f/22 . Top left – No filter – 20 images each 1/5 second = simulated total = 4 seconds. Top right – No filter – 35 images each 1/5 second = simulated total = 7 seconds. Bottom – 6-Stop ND filter – 15 images each 20 seconds = simulated total = 5 minutes.

How many shots?

This technique simulates long exposure by combining multiple shots.  The simple formula is:

(# Shots) x (Shutter Speed of each shot) = Total simulated shutter speed effect (in seconds)

Let’s plug some numbers into that and see the result.  Set your camera for the lowest ISO possible.  I can get my Canon 6D down to ISO 50.  Some cameras will have ISO 100 as the lowest.  Use whatever you can.  Set your aperture to the smallest aperture possible.  Meter with those settings and see how long you can make each individual shot and have it properly exposed.  Say we were able to do this in the shade: 1/4 second, f/22, ISO 50.  To get a simulated shutter speed of one minute (60 seconds), we’d need to make 240 shots.

240 shots x 1/4 second (.25) = 60 seconds

That’s a little unwieldy, and stacking 240 shots in Photoshop may cause your computer to choke. So what to do? Perhaps you don’t have an ND filter in your bag, but you do have a circular polarizer. It will help reduce the light. You mount it and now find you’ve lost 2-stops. So your exposure can be 1 second, f/22, ISO 50. Plug that into the formula, and you get:

60 shots  x 1 second = 60 seconds

If you’re shooting in lower light conditions, you may be able to get a slower shutter speed to start with. That will mean you can take fewer shots.

To make your job easier (and the computers as well), always try to get the slowest shutter speed you can for your shots. That will mean you can create the simulated long exposure with fewer shots.

Say you did have a 6-stop ND filter in your kit. You mount that, and now your settings are 16 seconds, f/22, ISO 50. Now, to get that simulated 1-minute exposure, you’d just need about four shots. Why not make 10 while you’re at it and you can simulate a 2.6 minute (160 seconds) exposure?

Had you done this traditionally, and had a 10-stop ND filter, you could take the unfiltered exposure down from 1/4 second, f/22, ISO 50 to 256 seconds (4.2 minutes), f/22, ISO 50. So, to get the same effect with a 6-stop ND filter as you could with a 10-stop by using image averaging, take 16 shots.

16 shots x 16 seconds each = 256 seconds (4.2 minutes)

simulate-long-exposure-stacked-image-averaging

35 images each 1/6 second combine to simulate a 6-second exposure. Shooting into the sun, it would probably be impossible to make a 6-second exposure without a filter.

Forget the math, make the shots!

If all that math made your head hurt (it did mine), here’s the simple way to get what you need so Photoshop can do its magic:

  • Use a tripod.  You don’t want to do all this and get shaky shots.  That will waste all your work.
  • Do what’s necessary to shoot with the slowest shutter speed you can get with the equipment you have.  In the camera, that will usually mean setting the lowest ISO and smallest aperture.
  • If you have a polarizer or ND filter, use those to get the shutter speed even slower if you can.
  • Make lots of shots for each stacked image you will create.  Depending on how slow you were able to get your shutter speed, a few dozen isn’t too many.  You don’t have to use them all when you get into editing, but having more will allow a longer simulated effect.

Putting it all together

This recipe assumes you will be using Adobe Lightroom and Photoshop in combination. You don’t have to use Lightroom. You can get your individual images into a stack in Photoshop another way if you need to (though using LR is much easier). Using Photoshop, however, is mandatory. Also, to use the Smart Objects function described, you will need a version of Photoshop that is Version 14.2 or higher. Older versions of Photoshop won’t have this.

There are ways to do this with older versions in a more manual process. If you have an older version, you will need to do a little online research to learn that technique. I used the latest version of Photoshop at this writing (Photoshop CC 20.0.4).

Let’s look at this step-by-step process visually…

simulate-long-exposure-stacked-image-averaging

1. From Lightroom, select the sequence of images you will use.  Edit the first one in the sequence to your liking.  Then select all of them and use the Sync function so all have the same settings as the first.

How to Simulate Long Exposure using Stacked Image Averaging

2. With all selected, send the images from Lightroom to Photoshop by going to Photo->Edit In->Open as Layers in Photoshop. (Photoshop will open, and the images will appear as layers in a stack). If you have a lot of images to be opened and stacked, this can take a while. Let it work.

How to Simulate Long Exposure using Stacked Image Averaging

3. With all the layers selected, in the menu select Layer->Smart Object->Convert to Smart Object. This can take a while to do its work. Be patient.

How to Simulate Long Exposure using Stacked Image Averaging

4. With the Smart Object layer selected, from the menu select Layer->Smart Objects->Stack Mode->Mean. This can also take a bit to work.

How to Simulate Long Exposure using Stacked Image Averaging

Wait for it…wait for it…and…

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Presto!  You will have a simulated long-exposure image made from your stack of shorter exposures.  20 images each at 3.2 seconds, f/22, ISO 50.  No filter used.  Simulated long exposure of 64 seconds.

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The water in this section of the river was pretty calm anyway, but look at the before and after areas pointed out by the arrow where the original shots were 3.2 seconds vs the combined 20 shots x 3.2 seconds = a simulated 64 seconds.

How to Simulate Long Exposure using Stacked Image Averaging

5. To finish up, go to Layer->Flatten Image.  Then File->Save As and save the finished image where you like.  If you want to give the completed image some additional tweaking, you can do that with Photoshop or Lightroom as you would with any other image.

Remember…

That’s the magic!  Here are a few things to remember for best results:

  • Consider your composition.  Look for a scene where you will have a combination of static objects that won’t move during the sequence and those that will.  An image with both will be more compelling.
  • Use a tripod.  You can do this handheld if you must, but know that any camera movement will be translated as a blur in the final result.
  • Do what you can to get as long a shutter speed with each image in the sequence as possible.  Drop your ISO to the lowest setting, use a small aperture, and use polarizing filters or whatever ND filters you have.  Longer exposures for each shot mean fewer images are needed to create a simulated long exposure.
  • Overshoot.  You don’t need to use all the images in a sequence if you decide you don’t want as much blur. However, if you don’t shoot enough, you might later wish you had them.
  • As you work through the steps, some things can take a long time.  Be patient and let your computer work.  If the process crashes, it could be you don’t have enough computer resources and will have to settle for a smaller stack.
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5 images, each 6 seconds = a simulated exposure of 30 seconds. No filter used.

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10 images, each 1/4 second combine to give a 2.5-second simulated exposure. This can be a great technique to use for getting silky water effects when you don’t have an ND filter and only need a longer exposure of a few seconds.

Final thoughts

Is this a better method than using an actual ND filter? Like so many photographic things, the answer is probably…it depends. Maybe you don’t have a filter or have one with you. Perhaps you don’t need a really long exposure, but just one a little longer than you can get with a low ISO/small aperture combination such as when seeking blur on a waterfall. Maybe you need to vanish people and don’t want to make a single multi-minute shot for various reasons. Alternatively, perhaps you have an ND filter but need an even longer exposure than it can give you.

There are lots of reasons to add this How to Simulate Long Exposure using Stacked Image Averaging Technique to your bag of tricks. Give it a try, and I’m sure you’ll have fun. Share your images with us in the comments!

 

simulate-long-exposure-stacked-image-averaging

The post How to Simulate Long Exposure using Stacked Image Averaging appeared first on Digital Photography School. It was authored by Rick Ohnsman.


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Three Mistakes That Kill Image Quality (and How to Avoid Them)

16 Aug

The post Three Mistakes That Kill Image Quality (and How to Avoid Them) appeared first on Digital Photography School. It was authored by Adam Welch.

We all want to make the highest quality photographs we possibly can, right? Hopefully, you just gave a very slow yet very serious head nod in agreement to that statement.

There are a host of factors that play into the final quality of your digital images. Even the phrase “image quality” seems to be the best way to sum up all the pieces that have to come together for us to consider our photographs to be of high quality. Sharpness, composition, color balance and contrast are a few variables that jump to mind along with a multitude of others that we can and cannot control.

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In this article, we’re going to look at three mistakes that you could very well be making with your photography right now which could be sabotaging your image quality before they ever leave your camera. Luckily, all of these mistakes are easily remedied once you realize they exist. Let’s get started.

Shooting “wide open” all the time

Make no mistake, from a lens standpoint, we live in an extraordinary time. Lens manufacturers have evolved to the point where we currently see extremely well-constructed optics with beautiful sharpness capable of shooting with relatively enormous apertures.

Not even a decade ago, you virtually could not find a “fast zoom” lens with a maximum aperture wider than F/4 for less than a $ 1,000US – at I least I never did.

Now, it has become blissfully common to acquire an outstanding F/2.8 or wider lens without taking out a second mortgage on your home.

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This new age of lens evolution comes with a few caveats, though. Just because your lens is a low-light beast capable of shooting at F/1.4, doesn’t mean that is an ideal aperture for every situation. You see, lenses have certain “optimum apertures” which provide the sharpest results for that particular lens.

In most cases, the widest aperture of your lens, while providing the best light gathering and arguably the best bokeh, is usually the worst optical setting for your lens. The widest aperture setting of your lens often makes nasty little image problems more apparent. Chromatic aberrations, edge softening, and vignetting all become more pronounced when you shoot wide open.

The solution:

Stop down your lens, even if it’s only by a stop or two. You’ll lose some light, but you will also likely see a markedly visible increase in image sharpness and overall quality. While it’s true that not all lenses are created equal (some show shockingly fantastic performance even at their widest apertures), the outcome will probably only become better if you stop down.

Three Mistakes That Kill Image Quality (and How to Avoid Them)

A good F/1.4 lens will be great at F/2.8 and likely outstanding at F/4. If you’re worried about losing that “creamy” bokeh, you may be surprised to see how little background blur you lose with a couple of stops on the wide end of your aperture. It depends on the relative distance of objects in the scene as much as it does on the aperture.

So if you’re suffering from a lack of sharpness and heavy vignetting try stopping down that lens and observe your results.

Poor body mechanics

No matter your gear, conditions or subject matter, if your camera is moving unintentionally, then your images will likely never be as technically qualitative as they could be. Camera shake robs sharpness and can make an otherwise strong image unusable.

Some of us can naturally hold our cameras more steady than others. In-camera or in-lens image stabilization can help, and of course, a trusty tripod is always a good shooting companion.

All of those things aside, simply being conscious of your body mechanics can go a long way to improve the quality of your photographs. At the same time, a bad grip on the camera and poor bodily positioning can cost you a photo.

The solution:

Whenever you’re shooting handheld, be mindful of how your hands grip the camera and the position of your arms and legs. Keep a flat-footed stance with your legs about shoulder-width apart. If you’re using a DSLR or other interchangeable lens camera, grip the camera body firmly with your right hand with your left supporting the lens. Also apply slight opposing pressure (push with the right, pull with the left). Tuck your arms in close to your body for maximum stability.

This will work to help steady your shot. Along those same lines, gently press the shutter button instead of sharply pushing down, which can lead to the camera jerking.

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Elbows tucked, solid grip and lens support.

Bonus tip:

Be mindful of a handy little formula called the “Reciprocal Rule.” This rule will help you approximate the slowest shutter speed based on your focal length to avoid moderate camera shake. The Reciprocal Rule is incredibly simple:

Three Mistakes That Kill Image Quality (and How to Avoid Them)

So, if you’re shooting with a 50mm lens, the slowest shutter speed you should use would be 1/50th of a second. Shooting at 100mm? Your slowest shutter speed should be 1/100th of a second and so on and so forth. This is not an ironclad rule but it is a highly practical one.

For more ways to obtain sharper images be sure to check out my other article 4 Simple Ways to Get Sharper Photos

Neglecting your settings

As simple as it sounds, not being cognizant of your camera’s settings is one of the most frustratingly preventable image quality killers that you will ever encounter. Consistently out of focus images? Check that your viewfinder diopter is adjusted to your eyesight – especially if you wear corrective lenses. Are your photos suddenly pixelated at high magnification? Make sure you haven’t accidentally changed your camera’s resolution (happens more than you might think) to a lesser megapixel count.

Three Mistakes That Kill Image Quality (and How to Avoid Them)

These are just a couple of points to consider, but there are many more. The bottom line is that if you aren’t continuously aware of what your gear is doing, not only are being a sloppy photographer, but you are also limiting yourself and your work for virtually no reason at all.

The solution:

Brace yourself for a huge surprise! Just kidding.

The easiest way to fix a neglectful mindset towards your shooting is to force yourself to remain vigilant. This means constant checks of your deep camera settings such as image and video resolution/format, camera firmware, and micro AF lens adjustments. Sure, keeping track of all these things isn’t an immersively fun experience, but neither are bad photographs.

Do yourself and your photos a favor and never fall into the trap of complacency when it comes to your camera’s settings.

Summing up…

We all could be better at doing the things we love. Each one of us, no matter how experienced or accomplished, will always make mistakes with our photography. The only way we can prevent those image quality mistakes from constantly occurring, and improve the quality of our photos is to make sure we are aware that anything is wrong in the first place. If you do not see the quality of images you would like, the first step towards finding out the problem is realizing that there is one. From there it’s just a matter of working the problem until you resolve it or significantly mediate it.

Put the tips we’ve listed here to work, and you’ll see your image quality improving immediately.

Oh and remember, we’re all in this together! Feel free to share any other tips for image sharpness, or if you have a sticky little issue with your picture quality, feel free to let us know in the comment section, and hopefully, the community can help!

image-quality-mistakes

The post Three Mistakes That Kill Image Quality (and How to Avoid Them) appeared first on Digital Photography School. It was authored by Adam Welch.


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