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Analysis of cognitive radio spectrum access based on fractional channel reservation

机译:基于分数信道预留的认知无线电频谱接入分析

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In cognitive radio networks, channel reservation is an effective measure to solve the trade-off problem between dropping probability and blocking probability. Because of the integer nature of channel, most of the current reservation schemes were based on integer. However, the number of reserved channels of integer reservation schemes can't be adequately adjusted as a result of optimizing the system performance. In this paper, we model the cognitive radio network as a two-dimensional Markov process, which overcomes the restriction of integer nature of channel. Then two fractional reservation schemes are realized. One is fractional channel reservation for primary user (FCRPU), the other is fractional channel reservation for handoff secondary user (FCRHSU), both of which can solve the trade-off problem above very well. The precision of analytical results is validated by Monte Carlo Simulations, on the strength of which we come to the conclusion that fractional channel reservation scheme and the FCRHSU scheme can achieve better performances than the integer one and the FCRPU one, respectively.
机译:在认知无线电网络中,信道预留是解决丢弃概率和阻塞概率之间的权衡问题的有效措施。由于通道的整数性质,大多数当前预测方案都基于整数。但是,由于优化系统性能,因此无法充分调整整数预留方案的保留通道数。在本文中,我们将认知无线电网络模拟为二维马尔可夫过程,这克服了信道的整数性质的限制。然后实现了两个分数预约方案。一个用于主用户(FCRPU)分数信道保留,另一种是用于越区切换次要用户(FCRHSU),这两者都可以解决上述很好的权衡问题分数信道预留。分析结果的精度是由Monte Carlo模拟验证的,因为我们得出结论,即分数信道预留方案和FCRHSU方案分别比整数和FCRPU一个更好的性能。

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