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Performance bounds for two-channel delay-doppler estimation using unknown waveforms

机译:使用未知波形的双通道延迟 - 多普勒估计的性能界限

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In this paper, we derive Cramer-Rao Lower Bound (CRLB) expressions for two-channel radar target delay-Doppler estimation with unknown transmit waveforms. We have access to these unknown waveforms only via the noisy reference measurements. Further, we assume that the waveform source transmits periodic pulses as is common for most pulsed radar illuminators. Recent CRLB literature for radar has fo-cussed on specific types of illuminators and derived the CRLB assuming these specific transmitted waveforms are known and incorporating them directly into the measurement model. Further, some papers while assuming the waveform itself to be unknown, make simplifying statistical assumptions on the waveforms or the waveform structure. Contrary to this, we compute a more general result that is not restricted to any specific waveform and we also include the noisy reference channel measurements in our derivation of the CRLB to obtain a more accurate performance analysis. The only assumption we make is on the periodicity of the transmit signal, which is true in practice. We demonstrate the CRLB using extensive numerical simulations both in the presence and absence of phase synchronization between the transmitter and receiver.
机译:在本文中,我们通过未知的发射波形获得了用于双通道雷达目标延迟多普勒估计的Cramer-Rao下限(CRLB)表达式。我们只能通过嘈杂的参考测量来访问这些未知波形。此外,我们假设波形源向大多数脉冲雷达照明器发送周期性脉冲,这对于大多数脉冲雷达照明器而言。最近用于雷达的CRLB文献在特定类型的照明器上探讨了特定类型的照明器,并且假设这些特定的透射波形是已知的并且将它们直接结合到测量模型中的CRLB。此外,在假设波形本身未知的情况下,一些论文使得简化波形或波形结构上的统计假设。与此相反,我们计算不限于任何特定波形的更一般结果,我们还包括我们在CRLB的推导下的噪声参考通道测量,以获得更准确的性能分析。我们唯一的假设是在发射信号的周期性上,在实践中是真的。我们在发射器和接收器之间存在和不存在相位同步的存在和不存在的广泛数值模拟中,我们演示了CRLB。

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