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Generalized quadratic receivers for orthogonal signals over the Gaussian channel with unknown phase/fading

机译:相位/衰落未知的高斯信道上正交信号的广义二次接收机

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The orthogonal signal structure has been shown to be the superposition of an antipodal signal set and an unmodulated (pilot tone) component which can be used for channel measurement. Starting from this point of view, the quadratic receiver for orthogonal signals over the Gaussian channel with unknown phase/fading has been shown to be equivalent to a detector-estimator receiver. The estimator makes an optimum estimate of the unknown complex channel gain based on the channel measurement provided by the unmodulated component of the received signal. This channel estimate then forms a (partially) coherent reference for the detector in detecting the data carried by the antipodal signaling component of the received signal. This paper exploits this detector-estimator structure of the quadratic receiver, and generalizes it to a receiver in which the estimator makes an estimate of the channel gain in each signaling interval based on the totality of signals received over all the signaling intervals or a subset of these intervals. The generalized quadratic receiver is just as simple to implement as the conventional quadratic receiver, and theoretical and simulation results show that it can achieve substantial performance gains over the conventional receiver. A theory is presented to show that the generalized quadratic receiver is an implementable approximation to the optimum symbol-by-symbol receiver for uncoded orthogonal signals over the Gaussian channel with unknown phase/fading. The theory shows that the structure provides a unified and systematic approach to the design of coherent symbol-by-symbol receivers, and shows that the conventional carrier-loop-type receivers are ad hoc.
机译:正交信号结构已显示为对等信号集和可用于信道测量的未调制(导频)分量的叠加。从这个角度出发,用于高斯信道上具有未知相位/衰落的正交信号的二次接收机已被证明等效于检波器接收机。估计器基于由接收信号的未调制分量提供的信道测量,对未知复数信道增益进行最佳估计。然后,此信道估计值将为检测器形成一个(部分)相干参考,以检测接收信号的对立信令组件所携带的数据。本文利用了二次接收机的这种检波器-估计器结构,并将其推广到一个接收器中,其中,估计器根据在所有信令间隔内或所有子帧内接收到的信号总数,对每个信令间隔内的信道增益进行估计。这些间隔。通用二次接收机的实现与常规二次接收机一样简单,理论和仿真结果表明,与常规接收机相比,它可以显着提高性能。提出了一种理论,表明对于具有未知相位/衰落的高斯信道上的未编码正交信号,广义二次接收机是一种最佳的逐符号接收机的近似实现。该理论表明,该结构为相干的逐个符号接收机的设计提供了统一而系统的方法,并表明传统的载波环路型接收机是临时的。

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