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A workload-based adaptive load-balancing technique for mobile ad hoc networks

机译:用于移动临时网络的基于工作负载的自适应负载平衡技术

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A novel load-balancing technique for ad hoc on-demand routing protocols is presented. Currently, ad hoc routing protocols lack load-balancing capabilities, and thus, they often fail to provide good performance especially in the presence of a large volume of traffic. We present a simple but very effective method to achieve load balance and congestion alleviation. The new scheme is motivated by the observation that ad hoc on-demand routing protocols flood route request (RREQ) messages to acquire routes, and only nodes that respond to those messages have a potential to serve as intermediate forwarding nodes. If a node ignores RREQ messages within a specific period, it can completely be excluded from the additional communications that might have occurred for that period otherwise. Thus, a node can decide not to serve a traffic flow by dropping the RREQ for that flow. In the new scheme, RREQ messages are forwarded selectively according to the load status of each node so that overloaded nodes can be excluded from the requested paths. Each node begins to allow additional traffic flows again whenever its overloaded status is dissolved. The new scheme utilizes interface queue occupancy and workload to control RREQ messages adaptively. The enhanced versions of protocols with this scheme are compared to the base protocols. Simulation results reveal that the new scheme greatly reduces packet latency as well as routing overhead without adversely affecting the network throughput, and it successfully balances the network load among nodes.
机译:提出了一种用于临时按需路由协议的新型负载平衡技术。目前,临时路由协议缺乏负载平衡功能,因此,它们通常不能提供良好的性能,尤其是在大量交通的情况下。我们提出了一种简单但非常有效的方法来实现负荷平衡和拥塞缓解。新方案是通过观察到临时按需路由协议洪水路由请求(RREQ)消息来获取路由的洪水路由,以及响应这些消息的节点具有作为中间转发节点的可能性。如果节点忽略特定时段内的RREQ消息,则可以完全排除在该时段可能发生的附加通信之外。因此,节点可以决定不通过丢弃该流程的RREQ来服务流量。在新方案中,RREQ消息根据每个节点的负载状态选择性地转发,以便可以从所请求的路径中排除过载的节点。每当溶解的超载状态时,每个节点开始允许额外的流量流动。新方案利用接口队列占用和工作负载自适应控制RREQ消息。将具有此方案的增强版本的协议版本与基本协议进行比较。仿真结果表明,新方案大大减少了数据包延迟以及路由开销,而不会对网络吞吐量产生不利影响,并且成功余额节点之间的网络负载。

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