Performance Analysis of Grid Configuration Wireless Sensor Network using Different Packet Frequency for Oil and Gas Downstream Pipeline

Thinesh Vijayakumaran, Sivakumar Subramaniam, Farah Shahnaz Feroz, R. Sujatha
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Abstract

Over the most recent few years, there has been a shift away from utilizing costly links to communicate information from different sensors, including those estimating wind, vibration, temperature, and stickiness, to observing locales. This progress has been worked with by the reception of Wireless sensor networks (WSNs), which proposition expanded adaptability and more extensive inclusion capacities. In different businesses, these organizations have acquired ubiquity because of their flexibility. In particular, with regards to observing oil and gas offices, framework-based WSNs demonstrate profoundly appropriate for covering broad regions, especially inside the downstream period of the oil and gas handling chain. The essential point of this examination is to research how different bundle frequencies, the quantity of nodes, and directing conventions influence a lattice-based WSN. The review presents two sorts of steering conventions: responsive (AODV) and proactive (OLSR), utilizing a lattice hub plan and trying different things with different bundle frequencies. The reenactment results uncover that as the bundle recurrence builds, there is a perceptible decrease in execution, no matter what the organization's size. This presentation decline is clear in measurements like the conveyance proportion, network reasonableness, and the presence of aloof nodes inside the organization, particularly while sending 80 nodes or more. Moreover, it's significant that the AODV steering convention outflanks the OLSR partner concerning throughput, conveyance proportion, and the presence of passive nodes.
使用不同数据包频率的网格配置无线传感器网络在油气下游管道中的性能分析
最近几年,从利用昂贵的链路将不同传感器(包括估算风力、振动、温度和粘度的传感器)的信息传递到观测地点,已经发生了转变。这一进步得益于无线传感器网络(WSN)的出现,它具有更强的适应性和更广泛的包容能力。在不同的行业中,这些组织因其灵活性而无处不在。特别是在观察石油和天然气办公室方面,基于框架的 WSN 非常适合覆盖广泛的区域,尤其是在石油和天然气处理链的下游阶段。本研究的重点是研究不同的捆绑频率、节点数量和指导规则如何影响基于网格的 WSN。该研究提出了两种指导规则:响应式(AODV)和主动式(OLSR),利用网格枢纽计划并尝试不同的束频率。重演结果表明,随着捆绑频率的增加,无论组织规模如何,执行力都会明显下降。这种执行力的下降在传送比例、网络合理性以及组织内部是否存在孤立节点等测量结果中都很明显,尤其是在发送 80 个节点或更多节点时。此外,值得注意的是,在吞吐量、传输比例和被动节点的存在方面,AODV转向协议优于OLSR合作伙伴。
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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