最大化传感器节点寿命的无线传感器网络能量收集方案详细研究

Hardeep Singh Dhillon, Kuldip Kumar, Paras Chawla
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摘要

多年来,能量收集无线传感器网络(EH- wsns)的开发和实现一直是发展技术中一个重要的新兴概念,考虑到各种EH技术。本文包括对EH-WSN方案的研究,并讨论了与不同能量收集方案相关的各种参数,如延迟、网络大小、网络密度、距离、吞吐量、寿命、功耗和效率。提出的模型演示了使用不同技术的EH-WSN方案。本文从节点功耗的角度对各种能量收集方案进行了比较。本文讨论了能量采集无线传感器网络(EH-WSNs)的特点和属性。EH-WSN有几种节能方法,但它们都是基于传感器节点的静态方法,因此我们采用动态方法来最小化无线传感器节点的能耗。我们的主要目标是通过最小化平均功耗来最大化传感器节点的使用寿命。我们的重点是最大限度地利用节点电池,有效地分配能量采集器的功率,以减少簇头和电源之间的距离。本文还重点介绍了EH-WSN面临的挑战和各种能量收集系统的技术规范。提出的EH-WSN模型能够有效地补充传感器节点电池失效后的充电。为此,我们将使用移动充电器,它移动到簇头并提供能量。本文总结了为提高系统效率应采用的兼容EH- wsns方案,并重点介绍了基于WSN的EH的实际应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Detailed Investigation of Wireless Sensor Network Energy Harvesting Schemes to Maximize Lifetime of Sensor Nodes
For many years, energy harvesting wireless sensor networks (EH-WSNs) development and implementation have been an important and emerging concept in developing technology, considering various EH techniques. This paper includes an investigation of EH-WSN schemes and discussion on various parameters like latency, network size, network density, distance, throughput, lifetime, power consumption, and efficiency related to different energy harvesting schemes. The proposed model demonstrates EH-WSN schemes using different techniques. This paper represents a comparison of various energy harvesting schemes in terms of nodes power consumption. This paper discusses the characteristics and attributes of energy harvesting wireless sensor networks (EH-WSNs). There are several methods to save energy in EH-WSN but they are based on static approach of sensor nodes so we use dynamic approach to minimize energy consumption of wireless sensor nodes. Our primary objective is to maximize lifetime of sensor nodes by minimize the average power consumption. We focus on maximum utilization of node battery, effective distribution of power from the energy harvester to reduce distance between cluster head and source of power. This paper is also highlights the challenges of EH-WSN and technical specifications of various energy harvesting systems. The proposed EH-WSN model replenished the sensor node battery recharging after they become out of service in an efficient way. For this purpose we will use mobile charger which travels to cluster head and provide energy. This article concludes on the compatible EH-WSNs scheme should be used to enhance system efficiency and focus on practical real-life applications of WSN based EH.
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