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Optimal transmit-receiver design in the presence of signal-dependent interference and channel noise

机译:在存在信号相关干扰和信道噪声的情况下的最佳收发器设计

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Optimal detection of a target return contaminated by signal-dependent interference, as well as additive channel noise, requires the design of a transmit pulse f(t) and a receiver impulse response h(t) jointly maximizing the output signal to interference plus noise ratio (SINR). Despite the highly nonlinear nature of this problem, it has been possible to show that f(t) may always be chosen minimum-phase. A full analysis concludes with the construction of an effective numerical procedure for the determination of optimal pairs (f,h) that appears to converge satisfactorily for most values of input SINR. Extensive simulation reveals that the shape of f(t) can be a critical factor. In particular, the performance of a chirp-like pulse is often unacceptable, especially when clutter and channel noise are low-pass dominant and comparable.
机译:最佳检测受信号相关干扰以及附加信道噪声污染的目标返回信号,需要设计发射脉冲f(t)和接收器脉冲响应h(t),以共同最大化输出信号的干扰加噪声比(SINR)。尽管此问题具有高度非线性的性质,但有可能表明f(t)始终可以选择为最小相位。完整的分析以确定最佳对(f,h)的有效数值程序的构建结束,该最优对似乎对于大多数输入SINR值均令人满意地收敛。大量的仿真表明,f(t)的形状可能是一个关键因素。特别是,a声脉冲的性能通常是不可接受的,尤其是在杂波和通道噪声为低通主导且相当的情况下。

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