Smart grid Infrastructure for Efficient Power Consumption Using Real Time Pricing Algorithm and Distributed Algorithm

S. Jayasurya, S. Varun Kumar
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引用次数: 2

Abstract

Electricity supply do not always satisfy customers’ demand; which results in peak demand periods. When demand is at its peak, electricity providers have to react to meet the demand and avoid interruptions by boosting the capacity which is costly and not always possible. In addition to fluctuation in demand, price of electricity production changes continuously due to the variation in resources used for production over periods. Yet, the consumers pay the same price for the electricity unit both in on-peak and off-peak periods. A proposed solution would be the use of real time pricing (RTP) of electricity. The end-users will be involved in the electric grid and will have control on the consumption over different periods either by reducing or by shifting it to off-peak periods as a reaction to RTP. After a literature review and a study of previous work on RTP and demand response in smart homes, we will implement a RTP algorithm. The project will be with direct social and ethical implications since less energy consumption implies more energy efficiency, and thus more respect for environment. We implement the RTP algorithm in both a central and a distributed manner. The results obtained prove that not only the electric utility, but also, the subscribers will benefit. Comparing the results of RTP algorithm to a scenario where price is fixed, we notice that the aggregate utility of every user is higher using RTP algorithm. Along with RTP algorithm we would like to suggest Distributed algorithm that automatically manages the smart meter and the electricity provider interactions. The results from the simulation shows that the proposed RTP algorithm and distributed algorithm can potentially benefit both customer and the electricity providers.
基于实时定价算法和分布式算法的高效用电智能电网基础设施
电力供应并不总是满足用户的需求;这就导致了需求高峰期。当需求达到高峰时,电力供应商必须做出反应,以满足需求,并通过提高容量来避免中断,这是昂贵的,而且并不总是可行的。除了需求波动外,电力生产的价格也由于不同时期用于生产的资源的变化而不断变化。然而,消费者在高峰和非高峰时段支付相同的电价。一个被提议的解决方案是使用电力的实时定价(RTP)。最终用户将参与电网,并将通过减少或将其转移到非高峰时段来控制不同时期的消耗,作为对RTP的反应。通过文献综述和对智能家居中RTP和需求响应的研究,我们将实现一个RTP算法。该项目将具有直接的社会和伦理意义,因为更少的能源消耗意味着更高的能源效率,从而更尊重环境。我们以中心和分布式两种方式实现RTP算法。结果表明,这不仅对电力公司有利,对用户也有利。将RTP算法的结果与价格固定的情况进行比较,我们注意到使用RTP算法的每个用户的总效用更高。除了RTP算法外,我们还建议采用分布式算法自动管理智能电表和电力供应商之间的交互。仿真结果表明,本文提出的RTP算法和分布式算法对用户和电力供应商都有潜在的好处。
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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