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A novel Cramer-Rao lower bound of time difference of arrival for frequence hopping signals

机译:跳频信号到达时间差的新型Cramer-Rao下界

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Frequency hopping signals have been widely used in military and civilian applications during the last few decades. It's of great value to locate emitters of frequency hopping signals, especially in military operations. Localization by time difference of arrival (TDOA) is a passive location method of good accuracy which utilizes the differences between the arrival times of signals received by multiple receivers at different sites. Many researches have been published on TDOA estimation algorithms for signals in passive location systems, but there have been few results in the literature about the TDOA estimation accuracy of frequency hopping signals. In this paper, a novel Cramer-Rao lower bound(CRLB) of TDOA estimation for frequency hopping signals is proposed and derived based on the given frequency hopping signal model. Theoretical analysis has revealed how frequency hopping signals' parameters, such as signal band, channel interval, hop duration and signal-to-noise ratio(SNR), affect the estimation performance. Simulation results have justified the theoretical derivation.
机译:在过去的几十年中,跳频信号已广泛用于军事和民用领域。定位跳频信号的发射器非常有价值,尤其是在军事行动中。通过到达时间差(TDOA)进行定位是一种精度很高的被动定位方法,它利用了多个接收器在不同站点接收的信号到达时间之间的差异。关于无源定位系统中信号的TDOA估计算法的许多研究已经发表,但是关于跳频信号的TDOA估计精度的文献很少。提出并基于给定的跳频信号模型推导了一种新颖的TDOA估计的Cromer-Rao下界(CRLB)。理论分析揭示了跳频信号的参数,如信号频带,信道间隔,跳时长和信噪比(SNR)如何影响估计性能。仿真结果证明了理论推导。

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