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Approximate MLSE Equalization of SOQPSK-TG in Aeronautical Telemetry

机译:航空遥测中SOQPSK-TG的近似MLSE均衡

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摘要

An approximate maximum likelihood sequence estimator (MLSE) equalizer for shaped offset QPSK, version TG (SOQPSK-TG) is derived based on the pulse amplitude modulation (PAM) approximation of SOQPSK-TG using the two principal PAM pulses. The resulting equalizer is a generalization of the equalizer based on the Ungerboeck observation model, where the generalization is to two parallel, cross-correlated symbol streams over parallel intersymbol interference channels. The bit error rate (BER) performance and computational complexity of the approximate MLSE equalizer operating over three example channels, motivated by multipath propagation in aeronautical telemetry and with increasing selectivity, are presented. The BER performance was evaluated using computer simulations and shown to be approximately 5-8 dB better than the best frequency-domain minimum mean-squared error (MMSE) equalizers published in the open literature. The computational complexity, measured by the number of real-valued multiplications, is comparable to that of the frequency-domain MMSE equalizers.
机译:基于SOQPSK-TG的脉冲幅度调制(PAM)近似值,使用两个主要PAM脉冲,得出了TG形偏移QPSK的近似最大似然序列估计器(MLSE)均衡器(SOQPSK-TG)。所得的均衡器是基于Ungerboeck观测模型的均衡器的推广,其中推广是针对并行符号间干扰信道上的两个并行,互相关的符号流。提出了在三个示例信道上工作的近似MLSE均衡器的误码率(BER)性能和计算复杂性,这些误差是由航空遥测中的多径传播和选择性增加引起的。使用计算机仿真评估了BER性能,结果表明,它比公开文献中公布的最佳频域最小均方误差(MMSE)均衡器高约5-8 dB。用实数乘法的数量衡量的计算复杂度与频域MMSE均衡器的计算复杂度相当。

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