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Axxon PSIM software package components that are used for configuring video capture cards can give additional ADC resources to one or more cameras , and thus increase the frame rate of the video signal from these cameras. At the same time, the frame rate of the video signal from other cameras decreases.
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To do this, place the selected camera in the priority process queue.
An example of the reallocation of resources of one ADC between cameras is shown in the figure below.
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ADC operation mode is defined determined by the number of processed and digitized video signals. There are two modes:
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With default settings, you can receive digitized video signals with frame rates that are of 2 FPS in PAL format and 2.5 FPS in NTSC format.
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In most cases, 1 and 2 setting steps are sufficient to set the frame rate. 3 and 4 setting steps are necessary only with high frame rate requirements to for one or more cameras.
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To disable the Camera objects that correspond to the idle video channels in Axxon PSIM, do the following:
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We recommend defining determining the actual frame rate of video signal digitization and then setting up the frame rate for video signals from video surveillance system cameras.
You must perform frame rates rate setup if frame rates of video signals from one or more cameras don't meet the requirements.
Actual frame rates are defined determined for each camera individually.
To define specify the actual frame rate for a selected camera, do the following:
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Note that this information window displays initial data about the video stream from the camera or from the archive transmitted to the Video surveillance monitor. The actual displayed frame rate of the video stream can be different, see Displaying Display of information about a video stream on top of a video.
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For the Stretch video cards of standard compression (h264), the frame rate that is displayed on the Monitor in Axxon PSIM can be less than the frame rate that is indicated by the video card manufacturer. This is due to the fact that while displaying the frame rate of video signal digitization on the Monitor in Axxon PSIM blank frames that are distributed by the video card aren't taken into account. Blank frames don't contain the information about the image and are created by the video capture card when there are no changes in the video stream and a new video frame is the same as the previous one (for example, there is no motion in the frame). |
By default, Axxon PSIM digitizes video signals with the frame rate lower than the maximum allowed one. This is caused by the following:
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Before reallocating cameras beteen between ADCs of the video capture card, disable the the Camera objects corresponding to disabled cameras (see Configuring video subsystem with disabled video channels section).
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Allocation of the video capture card's resources is complete.
Example 2. Configuring video signal digitization from two cameras with an increased frame rate
Task. Video signal signals on Camera 1 and Camera 5 must be digitized with an increased frame rate.
Initial data. The card has four ADCs. They are matched to four Video capture devicesdevice objects in the objects object tree. The video capture card may have up to 16 cameras connected to it. 12 cameras are actually connected to the video capture card. The objects matched to the remaining four cameras are disabled. Each of the three ADCs, matched to the Video capture device 1, Video capture device 2, and Video capture device 4 objects, is configured to digitize the signals from four cameras. The ADC, matched to the Video capture device 3 object, isn't configured to digitize the signals from any camera. An example of the objects object tree is given in figure A.
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Allocation of the video capture card's resources is complete.
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Ways of resource allocation (given in examples) aren't used for the SC200Q4 (FS15)\SC200Q4 LOW PROFILE (FS115)\SC300Q16 (FX4)\SC300D16 (FX8) video capture cards because for these cards the numbers of PCI channels (specified in settings of the Video capture device objects) are connected with physical inputs (BNC connectors). |
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Example 1. The ADC is configured to digitize video signal signals from four cameras.
If all the cameras have a common queue, the ADC digitizes video signals in the following sequence:
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Example 2. The ADC is configured to digitize the video signal signals from three cameras.
If all the cameras have a common queue, the ADC digitizes video signals in the following sequence:
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Example 3. The ADC is configured to digitize video signal signals from four cameras.
If all the cameras have a common queue, the ADC digitizes video signals in the following sequence:
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Example 4. The ADC is configured to digitize video signal signals from four cameras.
If all the cameras have a common queue, the ADC digitizes video signals in the following sequence:
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