Later you can open this in the program to work on it and you will not have to realign and re-render it.īefore you can actually use the image, you need to tone map it so select the Tonemap the HDR option to open the image ready for tone mapping. This is the assembled image and, at this point, you can select Save HDR As and save the image as an HDR format file. When your sequence is aligned, click Next and then Finish to assemble the HDR image. From the Preview Mode dropdown list you can choose from various preview modes which can help you identify alignment problems. Continue to do this for all the images in the Editable list. Move the image until the haloing disappears or is minimized. If you see it, adjust the image using the arrows in the Shift Values for Editable Image area of the dialog. To do this, click each image in the editable images list and see if there is any haloing in that image. If you see white haloing around objects in your images you need to fix this. When your image appears, zoom out to see it all. If you have problems, bypass this and you can manually align them yourself shortly.Ĭlick Next and wait as the HDR sequence is assembled. My experience is that this fails spectacularly every time I try it – the program crashes and I have to start over, but your mileage may vary. You can set the program to auto align the images by selecting Auto align images and then select the option to use – HUGI’s Align Image Stack or Medium Threshold Bitmap. So, because my sequence was captured at 0.5, -1.5 and 2.5 I entered those values. If this isn’t correct – and it is seldom so in my experience, select each image and adjust the exposure compensation value manually by typing the value into the dialog. When they appear in the list you’ll see the program has guessed the exposure compensation used for each. Launch qtpfsgui and select New HDR > Load Images.
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