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Efficient Location Service for a Mobile Sink in Solar-Powered Wireless Sensor Networks

机译:在太阳能无线传感器网络中的移动水槽的高效位置服务

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By utilizing mobile sinks in wireless sensor networks (WSNs), WSNs can be deployed in more challenging environments that cannot connect with the Internet, such as those that are isolated or dangerous, and can also achieve a balanced energy consumption among sensors which leads to prolonging the network lifetime. However, an additional overhead is required to check the current location of the sink in order for a node to transmit data to the mobile sink, and the size of the overhead is proportional to that of the network. Meanwhile, WSNs composed of solar-powered nodes have recently been actively studied for the perpetual operation of a network. This study addresses both of these research topics simultaneously, and proposes a method to support an efficient location service for a mobile sink utilizing the surplus energy of a solar-powered WSN. In this scheme, nodes that have a sufficient energy budget can constitute rings, and the nodes belonging to these rings (which are called ring nodes) maintain up-to-date location information on the mobile sink node and serve this information to the other sensor nodes. Because each ring node only uses surplus energy to serve location information, this does not affect the performance of a node's general operations (e.g., sensing, processing, and data delivery). Moreover, because multiple rings can exist simultaneously in the proposed scheme, the overhead for acquiring the position information of the sink can be significantly reduced, and also hardly increases even if the network size becomes larger.
机译:通过利用无线传感器网络(WSN)中的移动汇,可以在无法与Internet连接的更具挑战性环境中部署WSN,例如隔离或危险,并且还可以在导致延长的传感器之间实现平衡的能量消耗网络生命周期。然而,需要额外的开销来检查接收器的当前位置以使节点将数据传输到移动接收器,并且开销的大小与网络成比例。同时,最近已经积极研究了由太阳能节点组成的WSN,用于网络的永久运行。本研究同时解决了这两个研究主题,并提出了一种利用太阳能WSN的剩余能量来支持移动宿的有效位置服务的方法。在该方案中,具有足够的能量预算的节点可以构成环,并且属于这些环(称为环节点)的节点在移动宿节点上维持最新的位置信息,并将该信息用于另一个传感器节点。因为每个环节节点仅使用剩余能量来服务位置信息,所以这不会影响节点的一般操作的性能(例如,感测,处理和数据传送)。此外,由于在所提出的方案中可以同时存在多个环,所以可以显着降低用于获取宿的位置信息的开销,并且即使网络尺寸变大,也几乎没有增加。

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