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Coherent integration loss due to pulses loss and phase modulation in passive bistatic radar

机译:无源双基地雷达中由于脉冲损耗和相位调制导致的相干积分损耗

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The purpose of this paper is to analyze the amplitude and phase modulation effect incurred by the rotating transmit antenna in passive bistatic radar, which result in pulses loss and phase reversals within the direct-path pulse train. The processing loss mechanisms of signal to noise ratio (SNR) and offsets in target Doppler measurements caused by the pulses loss and phase reversals are described. The expressions of the peak output of cross-ambiguity function are derived to evaluate SNR loss in the presence of pulses loss or/and phase reversals. Simulation results show that the maximum SNR loss is about 3.5 dB, and the SNR loss curves for various Doppler frequencies and different number of lost pulses are conformed to the theoretical analysis. The SNR loss gets progressively worse with increasing target Doppler frequency. The frequency estimation error increases with target Doppler frequency and lost pulse number, up to a worst case of about 0.75 of a Doppler cell.
机译:本文的目的是分析无源双基地雷达中旋转发射天线引起的幅度和相位调制效应,这些效应会导致直接路径脉冲序列内的脉冲损耗和相位反转。描述了信噪比(SNR)和目标多普勒测量中由脉冲损耗和相位反转引起的偏移的处理损耗机制。推导了交叉歧义函数的峰值输出的表达式,以评估在存在脉冲损耗或/和相位反转的情况下的SNR损耗。仿真结果表明,最大信噪比损失约为3.5 dB,各种多普勒频率和不同丢失脉冲数下的信噪比损失曲线符合理论分析。随着目标多普勒频率的增加,SNR损耗会逐渐恶化。频率估计误差随目标多普勒频率和丢失的脉冲数而增加,最坏情况约为多普勒单元的0.75。

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