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Optimum pilot-to-data power ratio for partial RAKE receiver in Nakagami-m fading channels

机译:Nakagami-m衰落信道中部分RAKE接收机的最佳导频与数据功率比

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In this paper, we study the problem of optimizing the pilot-to-data power ratio (PDR) for uplink code-division multiple access (CDMA) systems with partial RAKE (PRAKE) receivers. Both code-division multiplex (CDM) and time-division multiplex (TDM) reference-assisted schemes are considered. We assume Nakagami-m fading channel with two types of power delay profile (PDP): uniform and exponential PDPs. The optimum PDR is derived via minimizing the upper bound of the probability of bit error. A closed-form expression for the optimum PDR is obtained for both CDM and TDM schemes with uniform PDP. For exponential PDP, we derive the condition satisfied by the optimum PDR and obtain it numerically. It is observed that the optimum PDR is noticeably affected by the decay factor, but not by the m-parameter. For exponential PDP, unlike for uniform PDP, the optimum PDR depends on the number of combined paths. We also show that the optimum PDR derived from the block-fading channel model performs favorably in the Jakes' model.
机译:在本文中,我们研究了针对具有部分RAKE(PRAKE)接收器的上行链路码分多址(CDMA)系统优化导频与数据功率比(PDR)的问题。同时考虑了码分复用(CDM)和时分复用(TDM)参考辅助方案。我们假设Nakagami-m衰落信道具有两种类型的功率延迟曲线(PDP):均匀和指数PDP。通过最小化误码率的上限来得出最佳PDR。对于具有统一PDP的CDM和TDM方案,均获得了最佳PDR的闭式表达式。对于指数PDP,我们推导了最佳PDR满足的条件,并通过数值获得了它。可以看到,最佳PDR明显受衰减因子的影响,但不受m参数的影响。对于指数PDP,与均匀PDP不同,最佳PDR取决于组合路径的数量。我们还表明,从块衰落信道模型得出的最佳PDR在Jakes模型中表现良好。

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