超低功耗传感器网络的节能频谱接入

Seokwon Lee, Sungsoo Park, Gosan Noh, Yosub Park, D. Hong
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引用次数: 4

摘要

研究了开放频谱中多系统共存且相互干扰的超低功耗传感器网络动态频谱接入(DSA)方案。低传输功率和简单的通信协议是ULPSN在开放频谱中运行的重要障碍。为了解决这一问题,研究人员假设共存系统可以完美地相互检测。然而,由于频谱感知的灵敏度限制,在共存系统中很难检测到ULPSN,因此这种假设在ULPSN中受到了限制。因此,与其他共存系统相比,ULP系统的可用频谱更为稀缺。由此,我们得到了一个新的开放频谱接入的马尔可夫链模型。基于马尔可夫链模式,设计了一种能量效率最大化的DSA方案,并在部分可观察马尔可夫决策过程(POMDP)框架下研究了该DSA的信道访问和切换策略。仿真结果表明,与ULPSN随机信道选择方案相比,所提出的DSA方案具有更高的能量效率和寿命。
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Energy-efficient spectram access for ultra low power sensor networks
This paper investigates a dynamic spectrum access (DSA) scheme for ultra low power sensor networks (ULPSN) in an open spectrum where multiple systems coexist and interfere with each other. Low transmission power and simple communication protocol are significant obstacles for ULPSN to operate in the open spectrum. The DSA has been researched to solve this problem by assuming that coexisting systems can perfectly detect each other. However, this assumption is limited for ULPSN because detection of ULPSN in coexisting system is difficult due to sensitivity limitation of spectrum sensing. As a result, available spectrum is more scarce for ULP system than other coexisting systems. Thus, we derive a new Markov chain model of open spectrum access. Based on the Markov chain mode, we design a DSA scheme to maximize the energy efficiency and investigate the channel access and switch policy of the proposed DSA within the framework of partially observable Markov decision process (POMDP). The simulation results demonstrate that the proposed DSA scheme yields improved energy efficiency and lifetime compared to a random channel selection for ULPSN.
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