Cramer-Rao Lower Bound for Non-coherent TOA Estimation with Impulse Signal

Jie Liu, Xiaoji Liu, Lin Zheng
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Abstract

The non-coherent time-of-arrival (TOA) estimations are applied in impulse location for its simplicity. However, the multipath propagation of the narrow pulse results in complicated performance analysis. By fitting the output envelope of energy detection into a exponential decay, we approximately deduce the closed-form Cramer-Rao low bound (CRLB) of TOA estimation. Simulations with non-coherent TOA algorithms, such as threshold crossing (TC) and maximum energy selection (MES), validate the analysis. Furthermore, the integration window and multipath delay spread in ultra-wideband channel are considered to obtain a referable bound.
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脉冲信号下非相干TOA估计的Cramer-Rao下界
非相干到达时间(TOA)估计由于其简单性被应用于脉冲定位。然而,窄脉冲的多径传播导致了复杂的性能分析。通过将能量检测的输出包络拟合成指数衰减,我们近似地推导出TOA估计的闭型Cramer-Rao下界(CRLB)。非相干TOA算法的仿真,如阈值交叉(TC)和最大能量选择(MES),验证了分析。此外,还考虑了超宽带信道中的积分窗口和多径延迟扩展,从而得到了一个可参考的边界。
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