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Open-Loop Analysis of an Error Detector for Blind Symbol Timing Recovery Using Baud-Rate Samples

机译:使用波特率样本的盲符号定时恢复误差检测器的开环分析

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For symbol timing recovery with feedback loops, Mueller and Muller (MM) detectors can be an attractive solution in comparison to other algorithms. This is mainly due to the fact that they are operated at baud rate, thus avoiding any performance degradation in form of the jitter floor as it is the case with zero-crossing or Gardner synchronizers as most prominent examples in this respect. However, in order to guarantee reliable results, MM trackers require the carrier phase to be established. Motivated by this background, a timing error detector for carrier-independent and non-data-aided (blind) synchronization of the symbol timing is analyzed and discussed, which needs only one sample per symbol. Assuming linearly modulated signals, the detector characteristic (S-curve) is computed exactly and verified by simulation results, with the slope in the stable equilibrium point given in closed form such that the tracking loop can be specified accordingly.
机译:对于使用反馈环路的符号定时恢复,与其他算法相比,穆勒和Muller(MM)检测器可以是有吸引力的解决方案。这主要是由于它们以波特率运行的事实,从而避免了抖动楼层形式的任何性能下降,因为它是零交叉或加德纳同步器的情况,是这方面最突出的例子。但是,为了保证可靠的结果,MM跟踪器要求建立运营商阶段。通过该背景的动机,分析并讨论了用于符号定时的载波无关和非数据辅助(盲)同步的定时误差检测器,其仅需要每个符号的一个样本。假设线性调制的信号,通过模拟结果精确地并验证检测器特性(S曲线),在封闭形式给出的稳定平衡点中的斜率,使得可以相应地指定跟踪环路。

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