A Discrete Distributed Topology-control Algorithm of Wireless Sensor Network
Xuyong Huang, Pei Liu
Abstract
Xuyong Huang, Pei Liu
Abstract
The problem of topology configuration and its control of a wireless sensor network (WSN) are dealt with in this paper. Topology algorithm of a wireless sensor network aims to minimize the energy consumption and increase the lifecycle of the WSN. A localized discrete distributed topology-control algorithm (DDTCA) of WSN is presented. The DDTCA strongly decreases the redundancy links of WSN. Firstly, the topology links of WSN is discreted and formed a number of isolated network island topologies. These network island topologies have the bounded degree and the best link qualities for each node. Then, all isolated network islands are linked by intersubgraph algorithm which minimizes the power energy consumption between the isolated network islands. Simulation results show advantages of the algorithm
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The problem of topology configuration and its control of a wireless sensor network (WSN) are dealt with in this paper. Topology algorithm of a wireless sensor network aims to minimize the energy consumption and increase the lifecycle of the WSN. A localized discrete distributed topology-control algorithm (DDTCA) of WSN is presented. The DDTCA strongly decreases the redundancy links of WSN. Firstly, the topology links of WSN is discreted and formed a number of isolated network island topologies. These network island topologies have the bounded degree and the best link qualities for each node. Then, all isolated network islands are linked by intersubgraph algorithm which minimizes the power energy consumption between the isolated network islands. Simulation results show advantages of the algorithm
Key concepts: Topology control, Wireless sensor network, Network topology, Topology (electrical circuits), Redundancy (engineering), Computer science, Brooks–Iyengar algorithm, Logical topology