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Node movement stability and congestion aware Anycast Routing in Mobile Ad hoc Networks

机译:移动自组织网络中的节点移动稳定性和拥塞感知Anycast路由

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Anycast is an important way of communication for Mobile Ad hoc Networks (MANETs) in terms of resources, robustness and efficiency for replicated service applications. Most of the anycast routing protocols for MANETs select unstable and congested intermediate nodes, thereby causing frequent path failures and packet losses. We propose Node movement Stability and Congestion aware Anycast Routing scheme in MANETs (NSCAR) that employs two models, namely (i) node movement stability model to identify stable nodes, and (ii) congestion model that considers congestion aware parameters like channel load and buffer occupancy. These models and Dynamic Source Routing (DSR) protocol are used in the route discovery process to select nearest k-servers that facilitate creation of stable paths from designated client to one of the nearest servers. A server among k-servers is selected based on route stability, channel load, hops, and server load. The simulation results indicate that proposed NSCAR demonstrates, reduction in control overheads, improvement in packet delivery ratio (PDR) and reduction in end-to-end delays compared to existing methods such as flooding and load balanced service discovery.
机译:就复制服务应用程序的资源,鲁棒性和效率而言,Anycast是移动自组织网络(MANET)的一种重要通信方式。用于MANET的大多数任播路由协议都选择不稳定且拥塞的中间节点,从而导致频繁的路径故障和数据包丢失。我们提出了采用两种模型的MANET(NSCAR)中的节点运动稳定性和拥塞感知任播路由方案,该方案采用两种模型,即(i)节点运动稳定性模型来标识稳定节点,以及(ii)考虑诸如信道负载和缓冲区之类的拥塞感知参数的拥塞模型。占用。这些模型和动态源路由(DSR)协议在路由发现过程中用于选择最近的k服务器,这些服务器有助于创建从指定客户端到最近服务器之一的稳定路径。根据路由稳定性,通道负载,跃点和服务器负载选择k台服务器中的一台服务器。仿真结果表明,与现有方法(例如洪泛和负载平衡服务发现)相比,拟议的NSCAR可以演示,控制开销的减少,数据包传送率(PDR)的改善以及端到端延迟的减少。

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