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An efficient HWSW design of H.264 video compression, storage and playback on FPGA devices for hand-held thermal imaging systems

机译:在手持式热成像系统的FPGA器件上进行H.264视频压缩,存储和回放的高效HW&SW设计

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Video recording is an essential property of new generation military imaging systems. Playback of the stored video on the same device is also desirable as it provides several operational benefits to end users. Two very important constraints for many military imaging systems, especially for hand-held devices and thermal weapon sights, are power consumption and size. To meet these constraints, it is essential to perform most of the processing applied to the video signal, such as preprocessing, compression, storing, decoding, playback and other system functions on a single programmable chip, such as FPGA, DSP, GPU or ASIC. In this work, H.264/AVC (Advanced Video Coding) compatible video compression, storage, decoding and playback blocks are efficiently designed and implemented on FPGA platforms using FPGA fabric and Altera NIOS Ⅱ soft processor. Many subblocks that are used in video encoding are also used during video decoding in order to save FPGA resources and power. Computationally complex blocks are designed using FPGA fabric, while blocks such as SD card write/read, H.264 syntax decoding and CAVLC decoding are done using NIOS processor to benefit from software flexibility. In addition, to keep power consumption low, the system was designed to require limited external memory access. The design was tested using 640×480 25 fps thermal camera on CYCLONE V FPGA, which is the ALTERA's lowest power FPGA family, and consumes lower than %40 of CYCLONE V 5CEFA7 FPGA resources on average.
机译:录像是新一代军事成像系统的基本属性。还希望在同一设备上播放存储的视频,因为它为最终用户提供了一些操作上的好处。对于许多军事成像系统,特别是对于手持设备和热武器瞄准具,两个非常重要的限制是功耗和尺寸。为了满足这些约束,至关重要的是在单个可编程芯片(例如FPGA,DSP,GPU或ASIC)上执行应用于视频信号的大多数处理,例如预处理,压缩,存储,解码,回放和其他系统功能。 。在这项工作中,使用FPGA架构和Altera NIOSⅡ软处理器在FPGA平台上有效地设计和实现了与H.264 / AVC(高级视频编码)兼容的视频压缩,存储,解码和回放模块。视频解码中还使用了许多视频编码中使用的子块,以节省FPGA资源和功耗。计算复杂的模块是使用FPGA架构设计的,而SD卡的读/写,H.264语法解码和CAVLC解码等模块是使用NIOS处理器完成的,以从软件灵活性中受益。此外,为了保持较低的功耗,系统设计为要求有限的外部存储器访问。该设计在CYCLONE V FPGA上使用640×480 25 fps热像仪进行了测试,这是ALTERA最低功耗的FPGA系列,平均消耗的资源不到CYCLONE V 5CEFA7 FPGA的40%。

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