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首页> 外文期刊>Simulation modelling practice and theory: International journal of the Federation of European Simulation Societies >An efficient load balancing and performance optimization scheme for constraint oriented networks
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An efficient load balancing and performance optimization scheme for constraint oriented networks

机译:用于约束网络的有效负载平衡和性能优化方案

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A constraint oriented wireless sensor network (WSN) faces a challenging task of handling different issues i.e., routing mechanism, coverage of the underlined sensing fields for as long as possible, energy efficiency, reliable transmission of packets, congestion controls etc. Load balancing or routing protocols, which are specifically designed for the resource limited sensor networks, resolve some of these issues. However, most of these mechanisms were either applications specific or overlay complex. Moreover, these techniques underestimated an important aspect of WSNs i.e., sensor nodes criticality or vulnerability factor that is defined as the importance of a node from the network connectivity perspective. In this paper, an efficient load balancing and performance optimization scheme (LBS) is presented to address these issues such as throughput, long term connectivity, end to end delay and energy efficiency in resource limited WSNs. The proposed LBS technique conflates a sensor node criticality factor, residual energy and hop-count to form an optimized load balancing strategy. Initially, the proposed LBS routes most of the load or traffic on the shortest paths by assigning a highest weight-age factor, 80%, to the hop count metric and lower weight-age to both criticality and residual energy metrics i.e., 20%. Load balancing strategy is revised if one or more nodes deplete 50% of their on-board batteries. Simulation results verify that the proposed LBS scheme outperforms the existing field proven approaches i.e., shortest path, vulnerability aware routing, energy based spreading and multiple path based load balancing schemes.
机译:面向约束的无线传感器网络(WSN)面临处理不同问题的具有挑战性的任务,即,长时间的路由机制,带下划线的感测场的覆盖范围,只要可能,能量效率,数据包的可靠传输,拥塞控制等负载平衡或路由专门为资源有限的传感器网络设计的协议解决这些问题。然而,大多数这些机制是特定于或覆盖复合物的应用。此外,这些技术被低估了WSN的一个重要方面,传感器节点临界或漏洞因子被定义为来自网络连接透视的节点的重要性。在本文中,提出了一种有效的负载平衡和性能优化方案(LBS)以解决这些问题,例如资源限制WSN中的吞吐量,长期连接,结束到最终延迟和能效。所提出的LBS技术与传感器节点临界因子,剩余能量和跳数混合以形成优化的负载平衡策略。最初,所提出的LBS通过将最高重量年龄因子(80%)分配给跳数度量和较低的重量年龄,以临界和残留能量度量的跳数度量和较低的重量时代路径在最短路径上路由到最短路径上的大部分负载或流量。如果一个或多个节点耗尽50%的板载电池,则会修改负载平衡策略。仿真结果验证所提出的LBS方案优于现有的现场经过验证的方法I.,最短路径,漏洞意识的路由,基于能量的扩展和基于多路径的负载平衡方案。

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