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Effects of frequency and phase errors in electronic warfare TDOA direction-finding systems

机译:频率和相位误差对电子战TDOA测向系统的影响

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Electronic warfare systems for use against military communication sources include direction-finding. The considered direction-finding electronic-warfare system uses two intercept receivers which are eavesdropping on the transmitted signal with no knowledge of the waveform used, or its origin. Down-conversion to baseband is required in order to digitize the received signal. This can be done using a superheterodyne receiver where an oscillator is used to mix the signal-of-interest to baseband. Errors in frequency and phase between the oscillators degrade the performance. Because of this error, the performance derived in previous work by the authors does not apply since the used model no longer is applicable. The extended model presented here considers the oscillator errors. The performance using the extended model is determined numerically and the result is compared to the Cramer-Rao lower bound for the ideal system using a typical signal waveform.
机译:针对军事通信源使用的电子战系统包括定向技术。所考虑的定向电子战系统使用两个拦截接收器,它们在不知道所使用的波形或其起源的情况下窃听所发射的信号。为了将接收到的信号数字化,需要下变频到基带。这可以使用超外差接收器完成,其中使用振荡器将感兴趣的信号混合到基带。振荡器之间的频率和相位误差会降低性能。由于该错误,由于使用的模型不再适用,因此作者先前工作中得出的性能不适用。这里介绍的扩展模型考虑了振荡器误差。使用扩展模型对性能进行数值确定,并将结果与​​使用典型信号波形的理想系统的Cramer-Rao下限进行比较。

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