无线传感器网络的高能效多路径路由

S. S. Dubal, Achala Deshmukh
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引用次数: 6

摘要

无线传感器网络中的传感器节点是能量受限的。因此,WSN的主要设计挑战之一是最小化传感器节点消耗的能量。因此,设计了许多路由方案,以有效利用传感器节点有限的能量。这些方案通常使用最低能量路径进行数据传输。据观察,考虑到网络生命周期,同一路径的利用率并不是最优的。为此,我们提出了一种通过多条路由进行传输的均衡路由方案。所提出的路由方案根据其权重保留一组多条路径。然而,路径的权重是由其利用率决定的。本文的主要目的是在NS-2模拟器中实现均衡路由。此外,根据最贪婪传感器节点的能量消耗,将均衡路由的性能与基本路由方案、期望传输计数(ETX)方案进行比较。结果表明,与ETX路由方案相比,均衡路由方案通过最小化节点消耗的能量来提高网络的生存时间。
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Energy efficient multipath routing for wireless sensor networks
Sensor nodes in wireless sensor networks (WSNs) are energy constrained. So, one of the major design challenges in WSN is minimizing consumed energy at the sensor nodes. Therefore, a number of routing schemes are designed that make efficient use of limited energy of the sensor nodes. These schemes typically use lowest energy path for data transmission. It has been observed that utilization of same path is not optimal as considered for network lifetime. Therefore, we propose a new scheme called balanced routing scheme, which transmit through multiple routes. The proposed routing scheme keeps a set of multiple paths depending on its weightage. However, weightage of the paths are decided from its proportion of utilization. The main objective of this paper is to implement balanced routing in simulator NS-2. In addition to this, performance of balanced routing is compared with the basic routing scheme, expected transmission count (ETX) scheme on the basis of energy consumption at the greediest sensor nodes. The result shows that, compared with ETX routing scheme, balanced routing scheme improves network lifetime by minimizing consumed energy at the nodes.
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