Performance Degradation Due to MAI in OFDMA-Based Cognitive Radio

Liwen Yu, L. Milstein, J. Proakis, B. Rao
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引用次数: 4

Abstract

We consider a convolutionally coded orthogonal frequency-division multiple access (OFDMA) based cognitive radio system where each user achieves perfect synchronization for its own signal, while different users are asynchronized due to random timing offsets. The presence of asynchronous secondary users introduces potential multiple access interference (MAI) to each primary user's receiver. The strength of the MAI is determined by the secondary users' transmission powers, and their distances and frequency separations to the primary user. Expressions for the primary user's pairwise error probability and average probability of error are derived, and an error floor prediction method is presented. Finally, the trade-off between the MAI to the primary user and the secondary users' performances are investigated through numerical examples and simulations.
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基于ofdma的认知无线电中MAI导致的性能下降
我们考虑了一种基于卷积编码的正交频分多址(OFDMA)认知无线电系统,其中每个用户对自己的信号实现完美同步,而不同用户由于随机时序偏移而异步。异步辅助用户的存在给每个主用户的接收器引入了潜在的多址干扰(MAI)。辅助用户的传输功率、与主用户的距离和频率间隔决定了辅助用户的传输强度。推导了主用户的两两误差概率和平均误差概率表达式,并提出了误差层预测方法。最后,通过数值算例和仿真研究了MAI对主用户和次用户性能的权衡。
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