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A Minimum Channel Switch Routing Protocol for Cognitive Radio Ad Hoc Networks

机译:认知无线电自组织网络的最小信道切换路由协议

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We propose a new local spectrum knowledge-based minimum channel switch routing (MCSR) protocol for cognitive radio ad hoc networks (CRAHNs). CRAHNs have a mix of primary users (PUs) who own a licensed spectrum and secondary users (SUs) who do not own a channel. SUs attempt to make use of the licensed channels owned by the PUs when the latter are not active. We model a network of SUs with links in whose neighborhood there exists at least one unused PU channel. Each SU chooses a preferred PU channel - the channel that is available for a majority of the nodes in its neighborhood. Nevertheless, nodes along an SU-SU path may have to undergo channel switches to complete transmission and reception. MCSR aims at minimizing the number of channel switches per hop along an SU-SU path, the protocol prefers to use paths that would incur fewer switches per hop. MCSR models the weight of an SU-SU edge as 0 if the two end nodes of the edge have the same preferred PU channel or as 1 otherwise, and chooses the SU-SU path whose sum of edge weights is the minimum. We compare the performance of MCSR with that of a minimum hop-based shortest path routing (SPR) protocol in a CRAHN environment. We observe MCSR to incur a relatively lower percentage of switches per hop, but the tradeoff is a slight increase in the average hop count per path.
机译:我们为认知无线电自组织网络(CRAHN)提出了一种新的基于本地频谱知识的最小信道切换路由(MCSR)协议。 CRAHN具有拥有许可频谱的主要用户(PU)和不拥有频道的次要用户(SU)的混合。当PU不活跃时,SU会尝试利用PU拥有的许可通道。我们对具有相邻链路的SU的网络进行建模,该链路附近至少存在一个未使用的PU通道。每个SU选择一个首选的PU通道-该通道可用于其附近的大多数节点。然而,沿着SU-SU路径的节点可能必须经过信道切换才能完成发送和接收。 MCSR旨在最大程度地减少沿着SU-SU路径的每跳的信道切换数量,该协议更喜欢使用会导致每跳更少的切换的路径。如果边缘的两个末端节点具有相同的首选PU通道,则MCSR将SU-SU边缘的权重建模为0,否则建模为1,并选择边缘权重之和最小的SU-SU路径。我们将MCSR的性能与CRAHN环境中基于最小跃点的最短路径路由(SPR)协议的性能进行了比较。我们观察到MCSR导致每跳的交换机百分比相对较低,但是折衷是每条路径的平均跳数略有增加。

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