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Nonredundant error correction analysis and evaluation of differentially detected pi /4-shift DQPSK systems in a combined CCI and AWGN environment

机译:CCI和AWGN组合环境中差异检测的pi / 4-shift DQPSK系统的非冗余纠错分析和评估

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摘要

The application of the nonredundant error correction (NEC) technique to the North American and Japanese digital cellular modulation standard, pi /4-shift differential quadrature phase shift keying (DQPSK), in a combined additive white Gaussian noise (AWGN) and cochannel interference (CCI) environment is proposed, analyzed, and theoretically evaluated. The performance for NEC receivers with single, double, and triple error correction capability is theoretically analyzed and evaluated. For the CCI, the general model, which includes M statistical independent interferers also employing the pi /4-shift DQPSK modulation format, is adopted. The theoretical symbol error probability versus carrier-to-noise ratio have been obtained with M and the carrier-to-interference ratio (C/I) as parameters. The results indicate significant performance improvements over conventional differentially detected systems. Some of the results have been verified by computer simulation. The gains offered by the NEC receivers increase as C/I decreases and/or M increases. Significant error floor reductions have been observed.
机译:非冗余纠错(NEC)技术在北美和日本数字蜂窝调制标准pi / 4位移差分正交相移键控(DQPSK)中的应用,在加性高斯白噪声(AWGN)和同信道干扰的组合中(提出,分析和理论评估了CCI)环境。从理论上分析和评估了具有单,双和三重纠错能力的NEC接收机的性能。对于CCI,采用包括M个统计独立干扰源的通用模型,该干扰源也采用π/ 4移位DQPSK调制格式。使用M和载波干扰比(C / I)作为参数,已获得理论符号错误概率与载波噪声比的关系。结果表明,与传统的差分检测系统相比,性能有了显着提高。一些结果已经通过计算机仿真得到了验证。 NEC接收器提供的增益随着C / I减小和/或M增大而增加。已经观察到错误底限的显着减少。

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