Multi-agent System with an Optimized Heuristic Algorithm for Energy Management Solutions

B. Lin, I. Tlili, M. Baseer
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Abstract

A Smart Hybrid Home (SHH) system studies power concerns for individual clients with an off-grid electricity connection are studied in a Smart Hybrid Home (SHH) system. The creation of autonomous hybrid electricity systems has been regarded as a way to improve energy independence. The primary objective is to ensure efficient management of energy. Detailed modeling is proposed in which the solar energy component is regarded as the significant source to achieve this aim. A multi-agent energy management system (MA-EMS) is presented in this article. It also includes the storing devices for power (Fuel Cell/Capacitors) for safe power delivery. The technical performance of the decentralised solution is in line with the existing central solution, which offers improved financially and operationally for the implementation and operation of the autonomous method. Furthermore, an IT-management system is created and described to guarantee that the system functions correctly utilizing a multi-agent structure. The proposed electricity management system is meant to recognize multi-agent jobs and comprehend probable situations based on energy attributes and requirements. The findings showed that the method suggested meets the aims of an operational database taken from different climatic services using the Matlab/Simulink Application set for the Smart Electricity Management Method. By implementing the proposed technique the power consumption is increased to 410[Formula: see text]kw, and it improves the efficiency rate to 88.4%.
基于优化启发式算法的多智能体系统能源管理解决方案
在智能混合家庭(SHH)系统中,研究了具有离网电力连接的个人客户的电力问题。自主混合电力系统的创建被认为是提高能源独立性的一种方式。主要目标是确保能源的有效管理。为了实现这一目标,提出了以太阳能组件为重要来源的详细建模方法。提出了一种多智能体能源管理系统(MA-EMS)。它还包括用于安全供电的电力存储设备(燃料电池/电容器)。分散解决方案的技术性能与现有的中央解决方案一致,为自治方法的实施和操作提供了更好的财务和操作。此外,还创建了一个it管理系统,并对其进行了描述,以保证系统利用多代理结构正确运行。提出的电力管理系统旨在识别多智能体作业,并根据能源属性和需求理解可能的情况。研究结果表明,所建议的方法符合使用智能电力管理方法的Matlab/Simulink应用程序集从不同气候服务中获取的操作数据库的目标。采用该技术后,能耗提高到410 kw,效率提高到88.4%。
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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