A Small-World Routing Protocol for Wireless Sensor Networks
Chang Wu Yu, Rei-Heng Chen, Tung‐Kuang Wu, Fang-Wei Jin
Abstract
Chang Wu Yu, Rei-Heng Chen, Tung‐Kuang Wu, Fang-Wei Jin
Abstract
In this work, we propose a new routing protocol-the small-world routing protocol. With the idea originating from the small-world theory, the proposed protocol finds paths between the queries and events through recurrent propagations of weak and strong links. The operation of the protocol is simple and does not require much computational power. We evaluate the performance of the proposed protocol through extensive simulations. The results indicate that the proposed protocol, when compared to rumor routing protocol, can find much shorter paths (and thus lower power consumption during data delivery) with much higher successful rate.
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In this work, we propose a new routing protocol-the small-world routing protocol. With the idea originating from the small-world theory, the proposed protocol finds paths between the queries and events through recurrent propagations of weak and strong links. The operation of the protocol is simple and does not require much computational power. We evaluate the performance of the proposed protocol through extensive simulations. The results indicate that the proposed protocol, when compared to rumor routing protocol, can find much shorter paths (and thus lower power consumption during data delivery) with much higher successful rate.
Key concepts: Zone Routing Protocol, Wireless Routing Protocol, Enhanced Interior Gateway Routing Protocol, Computer science, Path vector protocol, Routing protocol, Computer network, Dynamic Source Routing