基于可靠性框图的无线传感器网络链路由协议可靠性评估

Oruba Alfawaz, A. Khedr, B. Alwasel, Walid Osamy
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摘要

无线传感器网络(wsn)可用于许多不同的领域,如环境监测、医疗保健、军事和安全。由于无线传感器网络的脆弱性,其可靠性是一个关键问题。在设计过程和性能评估中,对传感器网络的可靠性进行评估是必不可少的。目前的研究采用可靠性方框图(RBD)技术,基于部件的功能或失效状态来评估可靠性。在这项研究中,提出了一种基于RBD的新方法来计算各种提出的WSNs链模型的能量可靠性。提出了一种新的方法D- chain,从离基站最近的节点(BS)开始形成链,根据最小距离D选择链头;提出了Q-Chain,从离基站最远的节点(BS)开始形成链,根据最大权重q选择链头。每条链有三种不同的排列方式:单链/单跳、多链/单跳、多链/多跳。此外,我们将动态领导节点应用于上述所有模型。仿真结果表明,在所有情况下,多Q-Chain/单跳的可靠性最好,而单D-Chain的可靠性最低。在网格场景下,多Q-Chain/单跳的平均可靠性比多D-Chain/单跳的平均可靠性高11.12倍。另一方面,在随机场景下,多Q-Chain/单跳的平均可靠性是多D-Chain/单跳的6.38倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability Evaluation for Chain Routing Protocols in Wireless Sensor Networks Using Reliability Block Diagram
There are many different fields in which wireless sensor networks (WSNs) can be used such as environmental monitoring, healthcare, military, and security. Due to the vulnerability of WSNs, reliability is a critical concern. Evaluation of a WSN’s reliability is essential during the design process and when evaluating WSNs’ performance. Current research uses the reliability block diagram (RBD) technique, based on component functioning or failure state, to evaluate reliability. In this study, a new methodology-based RBD, to calculate the energy reliability of various proposed chain models in WSNs, is presented. A new method called D-Chain is proposed, to form the chain starting from the nearest node to the base station (BS) and to choose the chain head based on the minimum distance D, and Q-Chain is proposed, to form the chain starting from the farthest node from the BS and select the head based on the maximum weight, Q. Each chain has three different arrangements: single chain/single-hop, multi-chain/single-hop, and multi-chain/multi-hop. Moreover, we applied dynamic leader nodes to all of the models mentioned. The simulation results indicate that the multi Q-Chain/single-hop has the best performance, while the single D-Chain has the least reliability in all situations. In the grid scenario, multi Q-Chain/single-hop achieved better average reliability, 11.12 times greater than multi D-Chain/single-hop. On the other hand, multi Q-Chain/single-hop achieved 6.38 times better average reliability than multi D-Chain/single-hop, in a random scenario.
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