On the Bit Error Rate of OFDMA Employing Short Cyclic Prefix and Maximal Ratio Combining

H. Mora, Nathaly Orozco Garzón, F. García, C. de Almeida
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引用次数: 2

Abstract

Orthogonal frequency division multiple access (OFDMA) has been chosen as the fourth generation (4G) standard and also in the first releases of fifth generation (5G) mobile systems. Unfortunately, OFDMA uses a cyclic prefix that requires an increase in bandwidth and transmission power. In practical systems, there is no need to maintain a bit error rate (BER) lower than that required by a service. Hence, it is possible to reduce the cyclic prefix duration and maintaining an adequate performance. In this sense, in this work, the BER of OFDMA systems that employ a cyclic prefix shorter than the channel delay spread is evaluated. In addition, an antenna array at reception is considered. Diversity signals are combined employing maximal-ratio-combining (MRC). Assuming that noise plus intersymbol interference plus intercarrier interference can be modeled as a zero-mean Gaussian random variable, a closed form expression to calculate the BER for M-QAM modulations is derived. Simulation results show that our theoretical expression behaves as a lower bound, which becomes more accurate as the cyclic prefix duration tends to the channel delay spread.
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基于短循环前缀和最大比组合的OFDMA误码率研究
正交频分多址(OFDMA)已被选为第四代(4G)标准,也是第五代(5G)移动系统的首批版本。不幸的是,OFDMA使用循环前缀,需要增加带宽和传输功率。在实际系统中,不需要将误码率(BER)保持在低于业务所需的水平。因此,可以减少循环前缀持续时间并保持适当的性能。从这个意义上说,在这项工作中,对使用比信道延迟扩展短的循环前缀的OFDMA系统的误码率进行了评估。此外,还考虑了接收处的天线阵列。分集信号采用最大比组合(MRC)进行组合。假设噪声+码间干扰+载波间干扰可以建模为零均值高斯随机变量,推导出M-QAM调制误码率的封闭表达式。仿真结果表明,该理论表达式表现为一个下界,当循环前缀持续时间趋向于信道延迟扩展时,该表达式更加精确。
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