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Optimal cognitive radar transmit-receiver design for extended target with unknown target impulse response

机译:目标冲激响应未知的扩展目标的最优认知雷达收发信机设计

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In this paper, the problem of joint transmit waveform and receive filter design for cognitive radar (CR) is investigated. The problem is analyzed in signal-dependent interference, as well as additive channel noise for extended target with unknown target impulse response (TIR). An improved online waveform optimization design method is employed for target detection by maximizing the average signal to interference plus noise ratio (SINR) of the received echo on the premise of ensuring the TIR estimation precision. In the proposed method, the transmit waveform and receive filter are optimally determined at each step based on the observations in the previous steps. Simulation results demonstrate that CR with the proposed waveform achieve significantly higher rate of estimation accuracy and detection performance improvement compared to traditional radar system with fixed waveform, and offers more flexibility.
机译:本文研究了认知雷达(CR)的联合发射波形和接收滤波器设计问题。分析了与信号有关的干扰以及带有未知目标脉冲响应(TIR)的扩展目标的附加信道噪声中的问题。一种改进的在线波形优化设计方法,在保证TIR估计精度的前提下,通过最大化接收回波的平均信噪比(SINR)来进行目标检测。在提出的方法中,基于先前步骤中的观察结果,在每个步骤中最优地确定了发射波形和接收滤波器。仿真结果表明,与具有固定波形的传统雷达系统相比,具有建议波形的CR可以显着提高估计精度和检测性能,并具有更大的灵活性。

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