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;8;-QAM: A parametric quadrature amplitude modulation family and its performance in AWGN and fading channels

机译:; 8; -QAM:参数正交调幅系列及其在AWGN和衰落信道中的性能

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摘要

We study a parametric quadrature amplitude modulation (QAM) family, called ;8;-QAM, which includes other known constellations, such as square QAM (SQAM) and triangular QAM (TQAM), as special cases. The versatile structure of the ;8;-QAM signal constellation, which occurs from the varying angle between the signal points, results in achieving the minimum symbol error rate (SER) or bit error rate (BER), under an average power constraint. The theoretical study aims at providing insight into the trade-off between error performance and complexity of this parametric modulation scheme. Exact analytical expressions are obtained for the SER in additive white Gaussian Noise (AWGN) and Nakagami-m fading channels, while highly accurate BER approximations are presented. Finally, we find the optimum angles, in a minimal SER or BER sense, for a specific signal-to-noise ratio (SNR) and modulation order, M. This serves as an indicator for the appropriate constellation with respect to channel conditions and SER or BER requirements. The presented theoretical analysis is validated via extensive computer simulations.
机译:我们研究一个称为; 8; -QAM的参数正交幅度调制(QAM)系列,作为特殊情况,它包括其他已知的星座,例如方形QAM(SQAM)和三角形QAM(TQAM)。从信号点之间的变化角度出现的; 8; -QAM信号星座图的通用结构导致在平均功率约束下实现最小符号错误率(SER)或比特错误率(BER)。理论研究旨在提供有关此参数调制方案的错误性能和复杂性之间权衡的见解。在加性高斯白噪声(AWGN)和Nakagami-m衰落信道中获得了SER的精确解析表达式,同时给出了高精度的BER近似值。最后,我们针对特定的信噪比(SNR)和调制阶数M找到了最小SER或BER感的最佳角度。这是关于信道条件和SER的适当星座的指标或BER要求。所提出的理论分析已通过广泛的计算机仿真得到了验证。

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