Performance Analysis of 32-QAPM System with MRC Diversity in Rician Fading Channel

Jae-Young Chun, E. Kim
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引用次数: 1

Abstract

In this study, the performance of a 32-quadrature amplitude position modulation (QAPM) system is analyzed under a Rician fading channel condition when the maximal ratio combining (MRC) diversity technique is used in the receiver. The fading channel is modeled as a frequency non-selective slow Rician fading channel corrupted by additive white Gaussian noise (AWGN). QAPM is available to improve BER performance without amplifying transmit power, and MRC diversity makes the performance improvement of QAPM system even bigger by intentionally maximizing SNR. Error performances are shown for the 32-QAPM system and a 32-phase silence shift keying (PSSK) system in order to examine the effects of fading severity, for various values of the Rician parameter, K. The dependence of error rates on MRC diversity is also analyzed. The simulation results show that the BER performance of the 32-QAPM system is better than that of the 32-PSSK system under the above mentioned conditions.
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具有MRC分集的32-QAPM系统在衰落信道中的性能分析
本文分析了32正交幅度位置调制(QAPM)系统在完全衰落信道条件下,采用最大比组合(MRC)分集技术的性能。将衰落信道建模为受加性高斯白噪声(AWGN)破坏的频率非选择性慢速衰落信道。QAPM可以在不放大发射功率的情况下提高误码率性能,而MRC分集通过有意最大化信噪比,使QAPM系统的性能提升幅度更大。为了检验衰落严重程度对不同的r参数k值的影响,我们展示了32-QAPM系统和32相沉默移位键控(PSSK)系统的误差性能,并分析了错误率对MRC分集的依赖性。仿真结果表明,在上述条件下,32-QAPM系统的误码率性能优于32-PSSK系统。
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