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Performance analysis of improved 64-ary triangular quadrature amplitude modulation in AWGN channel

机译:AWGN通道改进的64-ary三角形正交幅度调制的性能分析

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It's well known that the improved 64-ary triangular quadrature amplitude modulation (TQAM) who provides considerable power gain over square quadrature amplitude modulation (SQAM) at the expense of slight increase in detection complexity was proposed. In this paper, we derive the general formula calculating the average energy per symbol and exact analytical expression formula for the SER in additive white Guassian Noise (AWGN) of the improved 64-ary TQAM. We also analyze the symbol error rate (SER) and the bit error rate (BER) of the improved 64-ary TQAM and compare them with the error performance of the SQAM and TQAM by simulation. Theoretically, analysis and simulation results show that the improved 64-ary TQAM can provide advantages of 0.6dB and 0.2dB in signal to noise ratio over the SQAM and the TQAM at a target symbol error rate of 10-6.
机译:众所周知,提出了一种改进的64-ary三角形正交幅度调制(TQAM),其在牺牲检测复杂性的略微增加的方形正交幅度调制(SQAM)上提供相当大的功率增益。在本文中,我们推导出一般公式,计算改进的64-ary TQam的附加白沟噪声(AWGN中的SER的平均能量和精确分析式公式。我们还分析了改进的64-ary TQAM的符号错误率(SER)和误码率(BER),并通过模拟将它们与SQAM和TQAM的错误性能进行比较。从理论上讲,分析和仿真结果表明,改进的64-ary TQam可以通过10的目标符号误差率在SQAM和TQAM上提供0.6dB和0.2dB的优点。 -6

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