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An overhearing based routing scheme for Wireless Sensor Networks

机译:基于偷听的无线传感器网络路由方案

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Congestion control in Wireless Sensor Networks (WSN) has always been a major challenge as contention for medium and limited storage space in nodes lead to loss of packets through collisions and buffer overflows. The congestion problem is tougher for multi-hop mesh networks, required when the deployment area is large compared to the communication range of individual nodes and the network is Ad-Hoc in nature. The objective is to design a routing scheme that minimizes congestion in such type of networks without increasing communication overheads. Often these networks use medium access control protocols like Carrier Sense Multiple Access with Collision Avoidance (CSMA/CA) that require sensor nodes to listen to the medium using an overhearing technique. This paper proposes an energy efficient routing scheme for multi-hop WSNs having mesh topologies. Here, a sensor node takes advantage of overhearing to predict the onset of congestion in the neighbouring nodes by estimating their respective buffer occupancies (number of messages queued in the buffer). This information is utilized directly in routing. The advantage of this approach is a significant reduction in congestion in the medium leading to reduction in number of packets being dropped and consequently minimization of average transmission delay. Also there is no additional communication overhead to implement the scheme. Software simulation demonstrates its effectiveness.
机译:无线传感器网络(WSN)中的拥塞控制一直是一个主要挑战,因为对节点中有限的存储空间的争用会导致冲突和缓冲区溢出导致数据包丢失。对于多跳网状网络,拥塞问题更加棘手,与单个节点的通信范围相比,当部署区域较大且网络本质上是Ad-Hoc时,就会出现拥塞问题。目的是设计一种路由方案,以在不增加通信开销的情况下最大程度地减少此类网络中的拥塞。通常,这些网络使用媒体访问控制协议,例如带冲突避免的载波侦听多路访问(CSMA / CA),要求传感器节点使用监听技术来监听媒体。本文提出了一种具有网状拓扑的多跳WSN的节能路由方案。在这里,传感器节点利用偷听的优势,通过估计相邻节点各自的缓冲区占用率(在缓冲区中排队的消息数)来预测相邻节点的拥塞情况。此信息直接用于路由。这种方法的优点是大大减少了介质中的拥塞,从而减少了丢弃的数据包数量,从而使平均传输延迟最小化。同样,没有额外的通信开销来实现该方案。软件仿真证明了其有效性。

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