PSO-Based Rendezvous Point Selection for Delay Efficient Trajectory Formation for Mobile Sink in Wireless Sensor Networks

Anjula Mehto, S. Tapaswi, K. K. Pattanaik
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引用次数: 12

Abstract

Data acquisition using mobile sink (MS) provides an effective solution to the energy-hole problem in wireless sensor network (WSN), caused during multi-hop data forwarding of sensor nodes towards the static sink. Rendezvous point (RP) selection to form the trajectory of MS is a very effective and popular way applied in this regard. In RP based methods, a set of designated sensor nodes act as RPs, and non-RP nodes transmit data towards the closest RPs. MS follows the trajectory formed using RPs to acquire sensory data from WSN. Traditional RPs selection methods neglect the data delivery delay, and the traffic rate constraints of the sensor nodes, which can affect the delay efficiency of the formed trajectory. This paper overcomes the challenge and considers data delivery delay, and the traffic rate constraints of sensor nodes during RPs selection to design the delay-efficient trajectory of MS. The trajectory formation problem is an NP-hard problem. A meta-heuristic like a particle swarm optimization (PSO) has already been proven to provide a feasible and promising way to solve this problem. This paper proposes a novel PSO-based RPs selection (PSO-RPS) method under the data delivery delay and the traffic rate constraints of the sensor nodes for delay-efficient data acquisition. Simulation results depict that the proposed PSO- RPS outperforms against the existing state-of-the-art methods in terms of various performance metrics, such as the number of RPs, trajectory length, and data acquisition latency.
基于pso的无线传感器网络移动汇聚节点选择延迟有效轨迹形成
利用移动sink (mobile sink, MS)进行数据采集,有效地解决了无线传感器网络(WSN)中传感器节点向静态sink转发多跳数据时产生的能量洞问题。选择交会点(RP)形成MS轨迹是一种非常有效和普遍的方法。在基于RP的方法中,一组指定的传感器节点充当RP,非RP节点向最近的RP传输数据。MS遵循使用rp从WSN获取感官数据形成的轨迹。传统的rp选择方法忽略了数据传输延迟和传感器节点的流量速率约束,从而影响形成的轨迹的延迟效率。本文克服了这一挑战,在rp选择过程中考虑了数据传输延迟和传感器节点的流量速率约束,设计了具有延迟效率的ms轨迹。粒子群优化(PSO)等元启发式算法已经被证明为解决这一问题提供了一种可行的、有前景的方法。本文提出了一种新的基于pso的RPs选择方法(PSO-RPS),在数据传输延迟和传感器节点流量速率约束下实现延迟高效的数据采集。仿真结果表明,所提出的PSO- RPS在各种性能指标(如RPS数量、轨迹长度和数据采集延迟)方面优于现有的最先进的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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