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Research on bistatic ISAR coherent imaging of space high speed moving target

机译:空间高速运动目标的双基地ISAR相干成像研究

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The echo of high speed moving target is modulated by pulse Doppler, which may lead to mainlobe extension and location distortion of one-dimensional range profile. The modulation also affects the imaging quality and the implement of coherent imaging algorithm. A bistatic inverse synthetic aperture radar (ISAR) coherent imaging method of space high speed moving target is proposed. Firstly, the delay time of target to transmitting and receiving station is derived according to the geometry relationship of bistatic radar, and the echo model of bistatic ISAR is built. Then, the compensation phase item is created and the speed compensation is finished. Finally, the coherent imaging simulation is carried out and the result shows the excellence of the method in this paper. The algorithm provides the compensation basis for the implementation of coherent Range-Doppler (RD) imaging method and back projection (BP) algorithm which have high demand to target position accuracy. Equation Chapter 1 Section 1
机译:高速移动目标的回波由脉冲多普勒调制,这可能导致主瓣扩展和一维范围轮廓的位置失真。调制还影响成像质量和相干成像算法的实现。提出了一种空间高速运动目标的双基地逆合成孔径雷达(ISAR)相干成像方法。首先根据双基地雷达的几何关系推导目标到发射台和接收台的延迟时间,建立双基地ISAR的回波模型。然后,创建补偿阶段项目,并完成速度补偿。最后,进行了相干成像仿真,结果表明了该方法的优越性。该算法为实现对目标位置精度有较高要求的相干距离多普勒(RD)成像方法和反投影(BP)算法提供了补偿基础。公式第1章第1节

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