The Effects of Pilot-based Carrier Phase Estimation on Performance of Coherently Detected Signals Propagating in TWDP Channels

Pamela Njemcevic, Enio Kaljic, A. Maric
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Abstract

In this paper, the error performance of coherent systems in presence of imperfect carrier phase estimation is investigated for signals propagating over the two-ray with diffuse power (TWDP) fading channels, in case when synchronization is performed using pilot carrier located out of the signal’s band-width. In that sense, closed-form approximate average binary error probability (ABEP) expressions are derived for binary and quadrature phase shift keying (BPSK and QPSK) modulated signals, with the carrier extracted using phase-locked loop (PLL) and phase noise approximated by Tikhonov probability density function (PDF). Derived expressions are calculated for various combinations of channel and phase loop parameters, enabling us to observe their effects on overall system performance. The accu-racy of derived expressions is verified through their comparison with the exact ABEPs obtained by numerical integration of the appropriate expressions.
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基于导频的载波相位估计对TWDP信道中相干检测信号传播性能的影响
本文研究了不完全载波相位估计情况下,在双射线漫射功率(TWDP)衰落信道上传播的信号,在使用位于信号带宽之外的导频载波进行同步的情况下,相干系统的误差性能。在这种意义上,推导了二进制和正交相移键控(BPSK和QPSK)调制信号的封闭形式近似平均二进制误差概率(ABEP)表达式,其中载波使用锁相环(PLL)提取,相位噪声由Tikhonov概率密度函数(PDF)近似。我们计算了通道和相位环路参数的各种组合的推导表达式,使我们能够观察它们对整体系统性能的影响。通过与适当表达式的数值积分得到的精确ABEPs的比较,验证了推导表达式的准确性。
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