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Error probability bounds for SCMA signals

机译:SCMA信号的错误概率范围

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摘要

In this paper, we investigated error probability bounds for sparse code multiple access (SCMA) signals. SCMA is one of proposed non-orthogonal multiple access schemes for Fifth generation (5G) wireless communication standard. This scheme allows to increase the number of active users inside a given time-frequency resource. For AWGN and Rayleigh (without diversity) channels, we calculated union bounds for symbol and bit error probability. Asymptotic bound based on minimal distance between signals is also calculated. Analytical bounds are compared with simulations results (Maximum Likelihood (ML) Algorithm and Message Passing Algorithm (MPA) were used for signal reception). For AWGN channel, the results show that analytical bounds (symbol and bit error probabilities) are tight in the high-SNR region. For Rayleigh channel, analytical bound for symbol error probability are pessimistic with the gap of approximately 0.7 dB in the medium- and high-SNR regions.
机译:在本文中,我们研究了稀疏代码多路访问(SCMA)信号的错误概率边界。 SCMA是提出的用于第五代(5G)无线通信标准的非正交多址接入方案之一。该方案允许在给定的时频资源内增加活动用户的数量。对于AWGN和Rayleigh(无分集)信道,我们计算了符号和误比特率的并集边界。还基于信号之间的最小距离来计算渐近边界。将分析范围与模拟结果进行比较(最大似然(ML)算法和消息传递算法(MPA)用于信号接收)。对于AWGN信道,结果表明,在高SNR区域中,分析范围(符号和误码率)是紧密的。对于瑞利信道,符号错误概率的解析边界是悲观的,在中,高SNR区域的间隙约为0.7 dB。

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