Ultraviolet Index-based Solar Aware Low Energy Adaptive Clustering Hierarchy Protocol

Chaudhari Monali, A. Bhaskar
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Abstract

Vitality reaping assumes an essential job in expanding the lifetime of the remote sensor organization. Different conventions are enveloped with reaping vitality to build the vitality proficiency of the system. Low Energy Adaptive Clustering Hierarchical (LEACH) protocol is one of the conventions that has been utilized with the vitality reaping reason. The purpose of this study is to utilize real-time information from solar energy in the LEACH algorithm to improve the framework execution. We considered an alternative way of utilizing real-time solar power from the UV-index data available on the weather forecasting site. The UV-index is converted to solar power by considering the relation between the UV-index and solar power. Solar power is then utilized to power some of the sensor nodes in the network and they get maximum chance to become a cluster head. The performance parameters like network stability, network reliability, and network lifetime are considered and compared with LEACH and solar aware LEACH protocol. There is an improvement in the lifetime, stability, and reliability of UV index-based solar aware LEACH protocol. The work presented shall be extended for larger networks and with incorporation of actual implementation of sun oriented hubs powered by harvesting vitality.
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基于紫外指数的太阳感知低能量自适应聚类层次协议
在扩展遥感器组织的寿命方面,生命力收获承担着重要的工作。不同的约定被收获活力所包裹,构建系统的活力熟练度。低能量自适应聚类分层(LEACH)协议是目前被广泛应用的协议之一,其生命力也在不断增强。本研究的目的是在LEACH算法中利用太阳能的实时信息来改善框架的执行。我们考虑了另一种利用天气预报网站上紫外线指数数据的实时太阳能的方法。考虑到紫外线指数与太阳能的关系,将紫外线指数转换为太阳能。然后利用太阳能为网络中的一些传感器节点供电,它们有最大的机会成为簇头。考虑了网络稳定性、网络可靠性和网络寿命等性能参数,并与LEACH协议和solar - aware LEACH协议进行了比较。基于UV指数的太阳能感知LEACH协议的寿命,稳定性和可靠性有所提高。所提出的工作将扩展到更大的网络,并结合以收获活力为动力的面向太阳的中心的实际实施。
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