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Optimal waveform design for range-Doppler processing in colored noise

机译:彩色噪声中距离多普勒处理的最佳波形设计

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The problem of radar waveform design for moving target detection in the presence of radio frequency interference (RFI) is considered. The transmit waveform is assumed to be a coherent train of uniform pulses, and the RFI is modeled as a wide-sense stationary random process with a known power spectral density. Both pulse-Doppler processing and matched filter bank processing are considered. For each case, it is shown that a constant modulus pulse can be found that locally maximizes the signal-to-noise ratio while respecting user-specified ambiguity function constraints. It is also shown that under certain conditions approximations can be made that result in identical waveform design problems for both processing schemes. The modulus and ambiguity function constraints render the waveform design problem analytically intractable, but numeric techniques can be employed. Simulation results are provided to demonstrate the efficacy of the approach.
机译:考虑了在存在射频干扰(RFI)的情况下用于运动目标检测的雷达波形设计问题。假设发射波形是一致的一致脉冲序列,并且将RFI建模为具有已知功率谱密度的广义平稳随机过程。同时考虑了脉冲多普勒处理和匹配滤波器组处理。对于每种情况,显示出可以发现恒定模量脉冲,该脉冲在遵守用户指定的歧义函数约束的同时局部最大化信噪比。还表明,在某些条件下,可以对两种处理方案进行近似,从而导致相同的波形设计问题。模量和模糊函数约束使波形设计问题在分析上难以解决,但是可以采用数字技术。提供仿真结果以证明该方法的有效性。

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