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Intelligent Multi-Agent System for Building Heat Distribution Control with Combined Gas Boilers and Ground Source Heat Pump

机译:燃气锅炉与地源热泵联合控制智能多智能体系统

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摘要

Intelligent energy system refers to the use of intelligent control strategies with the energy system, which can help minimise energy waste and loss, optimise load control, increase and improve energy efficiency and/or maximise the benefits of renewable energy. Renewable energy and intelligent controls are interlinked and correlated with each other. Without intelligent controls, the full benefits of renewable energy technologies may not be achievable, specifically the Ground Source Heat Pump (GSHP) technologies. This was observed, especially by the University of Central Lancashire (UCLan) that had incorporated a GSHP to one of its building. The GSHP is under performing due to the inefficient controls implemented with the GSHP. This paper proposes an intelligent multi-agent building management system (MAS BMS) that aims to tackle this issue. Intelligence is provided by an ARTMAP, a type of artificial neural network that provides incremental learning inspired by how human process memory. Simulation results show the proposed intelligent MAS BMS is able to maximise the use of the GSHP effectively by profiling, predicting and coordinating its usage with other energy resources. The proposed method has performed better than the existing control strategies for the GSHP.
机译:智能能源系统是指将智能控制策略与能源系统配合使用,可以帮助最大程度地减少能源浪费和损耗,优化负载控制,提高和提高能源效率和/或最大化可再生能源的利益。可再生能源和智能控制相互关联并相互关联。没有智能控制,可能无法实现可再生能源技术的全部收益,特别是地源热泵(GSHP)技术。中央兰开夏大学(UCLan)尤其注意到了这一点,该大学已将GSHP纳入其建筑物之一。由于GSHP实施的控制效率低下,GSHP的表现不佳。本文提出了一种智能的多主体建筑管理系统(MAS BMS),旨在解决这个问题。智能由ARTMAP提供,ARTMAP是一种人工神经网络,可根据人类过程记忆的方式提供增量学习。仿真结果表明,所提出的智能MAS BMS能够通过分析,预测和协调其与其他能源的使用,有效地最大化GSHP的使用。所提出的方法比GSHP的现有控制策略表现更好。

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