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首页> 外文期刊>Aerospace and Electronic Systems, IEEE Transactions on >Decision-Directed Symbol Timing Recovery for SOQPSK
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Decision-Directed Symbol Timing Recovery for SOQPSK

机译:SOQPSK的决策导向符号定时恢复

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摘要

Shaped-offset quadrature phase shift keying (SOQPSK) is a highly bandwidth efficient modulation technique used widely in military and aeronautical telemetry standards. It can be classified as a form of continuous phase modulation (CPM), but its major distinction from other CPMs is that it has a constrained (correlated) ternary data alphabet. CPM-based detection models for SOQPSK have been developed only recently. While these detectors offer an appreciable performance gain over current detection schemes, one roadblock standing in the way of their being adopted is the lack of a CPM-based symbol timing recovery scheme that will work with SOQPSK. We show how an existing CPM-based timing error detector (TED) can be adapted to the unique characteristics of SOQPSK. The TED is formulated for a coherent detector but can be extended to the noncoherent case. We apply this timing recovery method to the versions of SOQPSK used in military (MIL-STD SOQPSK) and telemetry group (SOQPSK-TG) standards. We derive the theoretical performance limits on the accuracy of timing recovery for SOQPSK, as given by the modified Cramer-Rao bound (MCRB), and show that the proposed decision-directed TED (DD-TED) performs close to these bounds in computer simulations and is free of false-lock points. We also show that the proposed scheme outperforms a non-data-aided TED (NDA-TED) that was recently developed for SOQPSK. These results show that the proposed scheme has great promise in a wide range of applications due to its low complexity, strong performance, and lack of false-lock points.
机译:整形偏移正交相移键控(SOQPSK)是一种带宽高效的调制技术,广泛用于军事和航空遥测标准中。它可以归类为连续相位调制(CPM)的一种形式,但它与其他CPM的主要区别在于它具有受约束的(相关的)三元数据字母。 SOQPSK的基于CPM的检测模型是最近才开发的。尽管这些检测器比当前的检测方案提供了可观的性能提升,但阻碍采用它们的一个障碍是缺乏适用于SOQPSK的基于CPM的符号定时恢复方案。我们展示了如何将现有的基于CPM的定时误差检测器(TED)适应SOQPSK的独特特性。 TED适用于相干探测器,但可以扩展到非相干情况。我们将此时序恢复方法应用于军事(MIL-STD SOQPSK)和遥测组(SOQPSK-TG)标准中使用的SOQPSK版本。我们得出了改进的Cramer-Rao界限(MCRB)给出的SOQPSK定时恢复精度的理论性能极限,并表明,在计算机仿真中,拟议的决策TED(DD-TED)的表现接近于这些界限。并且没有假锁点。我们还表明,提出的方案优于最近为SOQPSK开发的非数据辅助TED(NDA-TED)。这些结果表明,由于该方案复杂度低,性能强和没有虚假锁定点,因此在广泛的应用中具有广阔的前景。

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