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Time slotted based cognitive MAC protocols for multi-channel wireless ad hoc networks

机译:用于多信道无线ad hoc网络的基于时隙的认知MAC协议

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In wireless ad hoc networks, all nodes have equal right to access the medium. Hence, the performance of this mode is mostly limited by traffic congestion. To alleviate such a problem, Cognitive Radio (CR) technology can be used. Recent researches show that a large amount of licensed spectrum remains unused at a specific time. The contribution of this paper is to investigate a CR-based Medium Access Control (MAC) layer for wireless ad hoc networks. We aim to focus on a Cognitive MAC protocols for a unlicensed user which can be enabled to access the large amount of unused spectrum allocated for a licensed user, in an intelligent way, without causing any harmful interference. We propose a cognitive MAC protocols based on the theory of the Partially Observed Markov Decision Process (POMDP), which sense the radio spectrum, detect the occupancy state of different primary channels, and then opportunistically communicate over unused channels (spectrum holes). The objective is to make efficient decisions on which channels to sense and access, that ensure maximization of the throughput of the secondary user.
机译:在无线自组织网络中,所有节点都具有访问媒体的平等权利。因此,此模式的性能主要受流量拥塞限制。为了减轻这种问题,可以使用认知无线电(CR)技术。最近的研究表明,在特定时间仍未使用大量许可频谱。本文的贡献是研究无线自组织网络的基于CR的媒体访问控制(MAC)层。我们的目标是针对非许可用户专注于认知MAC协议,该协议可以使用户以智能方式访问分配给许可用户的大量未使用频谱,而不会造成任何有害干扰。我们基于部分观测的马尔可夫决策过程(POMDP)的理论提出了一种认知MAC协议,该协议感知无线电频谱,检测不同主要信道的占用状态,然后在未使用的信道(频谱孔)上进行机会通信。目的是对要感测和访问的信道进行有效的决策,以确保最大程度地提高次要用户的吞吐量。

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