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Load balancing techniques for lifetime maximizing in wireless sensor networks

机译:负载平衡技术可最大程度地延长无线传感器网络的使用寿命

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Energy consumption has been the focus of many studies on Wireless Sensor Networks (WSN). It is well recognized that energy is a strictly limited resource in WSNs. This limitation constrains the operation of the sensor nodes and somehow compromises the long term network performance as well as network activities. Indeed, the purpose of all application scenarios is to have sensor nodes deployed, unattended, for several months or years. This paper presents the lifetime maximization problem in "many-to-one" and "mostly-off" wireless sensor networks. In such network pattern, all sensor nodes generate and send packets to a single sink via multi-hop transmissions. We noticed, in our previous experimental studies, that since the entire sensor data has to be forwarded to a base station via multi-hop routing, the traffic pattern is highly non-uniform, putting a high burden on the sensor nodes close to the base station. In this paper, we propose some strategies that balance the energy consumption of these nodes and ensure maximum network lifetime by balancing the traffic load as equally as possible. First, we formalize the network lifetime maximization problem then we derive an optimal load balancing solution. Subsequently, we propose a heuristic to approximate the optimal solution and we compare both optimal and heuristic solutions with most common strategies such as shortest-path and equiproportional routing. We conclude that through the results of this work, combining load balancing with transmission power control outperforms the traditional routing schemes in terms of network lifetime maximization.
机译:能耗一直是无线传感器网络(WSN)上许多研究的重点。众所周知,能源是无线传感器网络中严格限制的资源。此限制限制了传感器节点的操作,并以某种方式损害了长期的网络性能以及网络活动。实际上,所有应用场景的目的都是要在几个月或几年内无人值守地部署传感器节点。本文提出了“多对一”和“最不活跃”的无线传感器网络中的寿命最大化问题。在这种网络模式下,所有传感器节点都通过多跳传输生成数据包并将其发送到单个接收器。我们在先前的实验研究中注意到,由于必须通过多跳路由将整个传感器数据转发到基站,因此流量模式高度不均匀,给靠近基站的传感器节点带来了沉重负担站。在本文中,我们提出了一些策略,这些策略可以平衡这些节点的能耗,并通过尽可能平均地平衡流量负载来确保最长的网络寿命。首先,我们将网络寿命最大化问题形式化,然后得出最优的负载平衡解决方案。随后,我们提出一种启发式方法来逼近最优解,并将最优解和启发式解法与最常见的策略(例如最短路径和等比例路由)进行比较。我们得出结论,通过这项工作的结果,在网络寿命最大化方面,将负载平衡与传输功率控制相结合的性能优于传统的路由方案。

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