A POMDP-based optimal spectrum sensing and access scheme for cognitive radio networks with hardware limitation

Lingcen Wu, Wei Wang, Zhaoyang Zhang
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引用次数: 14

Abstract

In cognitive radio networks, multiple discontinuous spectrum opportunities are detected by spectrum sensing and utilized together to satisfy the service requirement by spectrum aggregation. In this paper, we develop an analytical framework for joint spectrum sensing and access scheme based on Partially Observable Markov Decision Process (POMDP). Considering the hardware limitations, the spectrum aggregation range is restricted and only a part of channels can be sensed. For obtaining the reward function of POMDP, the channel switch probability is estimated by theoretic deduction. Under this POMDP framework, an optimal spectrum sensing and access scheme is proposed to minimize the channel switch times. Simulation results show that our proposed optimal scheme reduces the times of channel switches significantly.
基于pomdp的认知无线网络最优频谱感知与接入方案
在认知无线电网络中,通过频谱感知检测到多个不连续的频谱机会,并通过频谱聚合共同利用以满足业务需求。本文提出了一种基于部分可观察马尔可夫决策过程(POMDP)的联合频谱感知和接入方案的分析框架。考虑到硬件的限制,频谱聚合范围受到限制,只能检测到部分信道。为了得到POMDP的奖励函数,通过理论推导估计了信道切换概率。在此POMDP框架下,提出了一种最优的频谱感知和接入方案,以减少信道切换次数。仿真结果表明,该优化方案显著减少了信道切换次数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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