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DPSK-QAM Combination as a Signal Set for Spectrally Efficient Noncoherent Communication

机译:DPSK-QAM组合作为信号集,可实现频谱高效的非相干通信

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A modulation scheme is presented that combines Differential Phase Shift Keying (DPSK) and Quadrature Amplitude Modulation (QAM). One or several QAM symbols are inserted between DPSK symbols, and the phase offset of QAM symbols is determined by the preceding DPSK symbol. Such signal can be treated as a transmission of overlapping signal blocks suitable for noncoherent reception. Along with Generalized Likelihood Ratio Test (GLRT) algorithm, simplified reception method is presented that is based on the use of demodulated DPSK symbols as pilot signals for demodulation of QAM symbols. Also, the technique is proposed for approximate theoretical calculation of the bit error probability for this scheme in the case of uncoded transmission. The simulation results show that, at the same spectral efficiency, proposed scheme provides significant power gain compared to DPSK (about 2.4 dB for spectral efficiency of 4 bits per symbol and about 6 dB for spectral efficiency of 6 bits per symbol). Theoretical approximation demonstrates reasonable agreement with computer simulation results.
机译:提出了一种组合差分相移键控(DPSK)和正交幅度调制(QAM)的调制方案。一个或几个QAM符号插入DPSK符号之间,并且QAM符号的相位偏移由前面的DPSK符号确定。可以将这种信号视为适合于非相干接收的重叠信号块的传输。连同广义似然比测试(GLRT)算法一起,提出了一种简化的接收方法,该方法基于将解调后的DPSK符号用作对QAM符号进行解调的导频信号。此外,提出了用于在未编码传输的情况下对该方案的误码概率进行近似理论计算的技术。仿真结果表明,与DPSK相比,在相同频谱效率下,该方案可提供显着的功率增益(对于每个符号4位的频谱效率约为2.4 dB,对于每个符号6位的频谱效率约为6 dB)。理论逼近表明与计算机仿真结果具有合理的一致性。

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