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LDPC Coded Non-Recursive GMSK System with Quasi-Coherent Demodulation

机译:具有准相干解调的LDPC编码非递归GMSK系统

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A novel low-density parity-check (LDPC) coded Gaussian minimum shift keying (GMSK) scheme is proposed for wireless communications subject to low SNRs, limited power and spectrum resources. We first design a non-recursive GMSK modulator to alleviate the impact of error propagation. Then, a pilot-aided quasi-coherent demodulation algorithm (PA-QCDA) is derived, where a modified BCJR-based detection is used to produce the soft-output with initial and ending trellis-states being determined using the overhead-limited pilot. We choose proper parameters for the non-recursive GMSK signaling according to the trade-off of the power and spectral efficiency. Simulation results show that the proposed non-recursive GMSK system with the PA-QCDA can achieve performance similar to the LDPC coded BPSK system and can also work well in the presence of large frequency and phase offsets or burst errors.
机译:针对低信噪比,有限功率和频谱资源的无线通信,提出了一种新颖的低密度奇偶校验(LDPC)编码的高斯最小频移键控(GMSK)方案。我们首先设计了一种非递归GMSK调制器,以减轻误差传播的影响。然后,导出导频辅助准相干解调算法(PA-QCDA),其中使用基于BCJR的改进检测来产生软输出,并使用开销受限的导频确定初始和结束格状状态。我们根据功率和频谱效率的权衡取舍,为非递归GMSK信号选择合适的参数。仿真结果表明,所提出的带有PA-QCDA的非递归GMSK系统可以实现与LDPC编码的BPSK系统相似的性能,并且在存在较大的频率和相位偏移或突发错误的情况下也可以很好地工作。

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