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Aerodynamic optical effect correction and identification integrated real-time processing system and method

机译:气动光学效应校正与识别集成实时处理系统及方法

摘要

An aerodynamic optical effect correction and identification integrated real-time processing system, comprising an FPGA module, a multi-core main processor DSP, a plurality of auxiliary processors ASICs and an infrared image non-uniformity correction system-on-chip (SoC). By means of the system, full-image thermal radiation correction, denoising, transmission effect correction and target detection processes of an aerodynamic optical effect degradation image are achieved. Correspondingly, provided is the corresponding method. The system effectively solves the problem of aerodynamic optical effect and the problem of the requirement for a short detection time interval of the processor in an aircraft flying at a high speed; due to the adoption of the independently researched and developed ASIC, the real-time property of the whole system is greatly improved; all tasks are rationally distributed and a multi-core parallel mode is adopted, so the image processing time is greatly shortened; and meanwhile, the FPGA module connects all units to form a closed-loop system, so that the system stability is further improved.
机译:一种空气动力学光学效应校正与识别集成实时处理系统,包括FPGA模块,多核主处理器DSP,多个辅助处理器ASIC和红外图像不均匀校正片上系统。通过该系统,实现了空气动力学光学效果退化图像的全图像热辐射校正,降噪,透射效果校正和目标检测过程。相应地,提供了相应的方法。该系统有效地解决了空气动力学光学效果问题以及高速飞行的飞机中处理器的检测时间间隔要求短的问题。由于采用了自主研发的ASIC,大大提高了整个系统的实时性。所有任务合理分配,采用多核并行模式,大大缩短了图像处理时间。同时,FPGA模块将所有单元连接成一个闭环系统,从而进一步提高了系统稳定性。

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