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Tradeoff between loop update rate and loop bandwidth for low data rate communications in the presence of phase noise

机译:在存在相位噪声的情况下,在低数据速率通信的环路更新速率和环路带宽之间进行权衡

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摘要

Low data rate communication links require less power to close the link; however as the data rate becomes very low given a fixed Eb/N0, phase cycle slips due to infrequent carrier loop updates in the presence of oscillator phase noise become problematic. Assuming coherent demodulation, a cycle slip will cause loss of sync which is unlikely to be recovered until a new frame header is received. This paper presents experimental results for the mean time to cycle slip (MTCS) given a data rate and phase noise combination. A decision directed carrier tracking loop is used for all experiments, while the loop bandwidth (BW) and Eb/N0 are varied. This paper also considers an alternative approach where the carrier loop BW is kept constant, but loop updates are made multiple times per symbol. The two methods, varying the carrier loop BW and sampling the carrier tracking loop more frequently are compared.
机译:低数据速率通信链路需要较少的功率来关闭链路。然而,由于在给定固定的E b / N 0 时数据速率变得非常低,在振荡器相位噪声存在的情况下,由于载波循环更新不频繁而导致的相位周期滑移成为问题。假设相干解调,则周期跳变将导致同步丢失,这在接收到新的帧头之前不太可能恢复。本文给出了给定数据速率和相位噪声组合的平均周转时间(MTCS)的实验结果。在所有实验中都使用决策导向的载波跟踪环路,而环路带宽(BW)和E b / N 0 有所不同。本文还考虑了另一种方法,其中载波环路带宽保持恒定,但每个符号多次进行环路更新。比较了两种方法:改变载波环路带宽和更频繁地采样载波跟踪环路。

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