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Application and Analysis of Reduced State Techniques on HybridCPM Demodulation

机译:降低状态技术对Hybridcpm解调的应用与分析

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Hybrid Continuous Phase Modulation (HCPM) is a variant of Continuous Phase Modulation that is optimized for low-power, wireless communications applications. Hybrid CPM uses either additional Amplitude or Phase pulses to create a higher order modulation without the increase in trellis complexity that normally accompanies higher order CPM modulation schemes. For standard CPM, an increase in the modulation order results in the increase of the symbol alphabet and a corresponding increase in the transmit bandwidth and exponential increase in the complexity of the decoder trellis structure. Hybrid CPM however achieves higher order modulation by adding parallel branches to the base CPM trellis structure thus reducing the receiver complexity. The novelty of this paper is the application of the techniques devised to reduce the demodulator complexity of standard modulation types like PSK and CPM and apply them to Hybrid CPM using a method that would not result in the loss of performance or require any sort of compromise. As an example, this paper provides an analysis of the power and spectral efficiency of the two hybrid CPM waveforms and gives specific examples of the application of reduced state techniques. Both set-partitioning and reduced-state sequence estimation with decision feedback techniques are analyzed and compared. The results will demonstrate that reduced-state sequence estimation can be coupled with Hybrid CPM demodulation without any loss in bit error rate performance.
机译:混合连续相位调制(HCPM)是连续相位调制的变型,可针对低功耗,无线通信应用进行优化。混合CPM使用额外的幅度或相位脉冲来创建更高阶的调制,而不会增加通常伴随高阶CPM调制方案的格子复杂性。对于标准CPM,调制顺序的增加导致符号字母表的增加和解码器格栅结构的复杂性的发射带宽和指数增加的相应增加。然而,混合CPM通过将平行分支添加到基础CPM格子结构来实现更高的顺序调制,从而降低了接收器复杂性。本文的新颖性是应用设计的技术,以减少标准调制类型的解调器复杂性,如PSK和CPM,并使用不会导致性能丢失的方法应用于混合CPM或需要任何妥协。作为示例,本文提供了两个混合CPM波形的功率和光谱效率的分析,并提供了降低状态技术的应用的具体示例。分析并比较了具有判定反馈技术的设定分区和降低状态序列估计。结果将证明,降低状态序列估计可以与混合CPM解调耦合,而不误差误差率性能。

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