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Ensuring Efficiency and Robustness in Manet

机译:确保MANET效率和稳健性

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This paper introduces a joint load balancing and hotspot mitigation protocol for Mobile Ad-hoc Network (MANET) termed by us as ’Load_Energy Balance + Hotspot Mitigation protocol (LEB+HM)’. We argue that although Ad-hoc Wireless Networks have limited network resources — Bandwidth and Power, prone to frequent link/node failures and have high security risk; existing ad hoc routing protocols do not put emphasis on maintaining robust link/node, efficient use of network resources and on maintaining the security of the network. Typical route selection metrics used by existing ad hoc routing protocols are shortest hop, shortest delay, and loop avoidance. These routing philosophy have the tendency to cause traffic concentration on certain regions or nodes, leading to heavy contention, congestion and resource exhaustion which in turn may result in increased end-to-end delay, packet loss and faster battery power depletion, degrading the overall performance of the network. Also in most existing on-demand ad hoc routing protocols intermediate nodes are allowed to send route reply RREP to source in response to a route request RREQ. In such situation a malicious node can send a false optimal route to the source so that data packets sent will be directed to or through it, and tamper with them as wish. It is therefore desirable to adopt routing schemes which can dynamically disperse traffic load, able to detect and remove any possible bottlenecks and provide some form of security to the network.
机译:本文介绍了由我们称为“Load_Energy余额+热点缓解协议(LEB + HM)”的移动ad-hoc网络(MANET)的联合负载平衡和热点缓解协议。我们认为,尽管ad-hoc无线网络具有有限的网络资源 - 带宽和电力,但容易频繁的链接/节点故障,具有高安全性风险;现有的ad hoc路由协议不会强调维护强大的链接/节点,有效地使用网络资源以及维护网络的安全性。现有ad hoc路由协议使用的典型路由选择度量是最短的跳跃,最短延迟和循环避免。这些路由理念具有导致某些地区或节点的交通浓度的趋势,导致繁琐的争用,拥塞和资源耗尽,这反过来可能导致端到端的端到端延迟,包丢失和更快的电池电量耗尽,降低整体网络性能。同样在大多数现有的按需按需ad Hoc路由协议中,允许中间节点发送路由回复Rrep响应路由请求RREQ。在这种情况下,恶意节点可以向源发送假最佳路由,以便发送的数据包将被引导或通过它,并用它们篡改。因此,希望采用可以动态分散业务负载的路由方案,能够检测和消除任何可能的瓶颈并为网络提供某种形式的安全性。

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