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Robust multi-objective control of hybrid renewable microgeneration systems with energy storage

机译:具有能量存储的混合可再生微型发电系统的鲁棒多目标控制

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摘要

Microgeneration technologies are positioned to address future building energy efficiency requirements and facilitate the integration of renewables into buildings to ensure a sustainable, energy-secure future. This paper explores the development of a robust multi-input multi-output (MIMO) controller applicable to the control of hybrid renewable microgeneration systems with the objective of minimising the electrical grid utilisation of a building while fulfilling the thermal demands. The controller employs the inverse dynamics of the building, servicing systems, and energy storage with a robust control methodology. These inverse dynamics provides the control system with knowledge of the complex cause and effect relationships between the system, the controlled inputs, and the external disturbances, while an outer-loop control ensures robust, stable control in the presence of modelling deficiencies/uncertainty and unknown disturbances. Variable structure control compensates for the physical limitations of the systems whereby the control strategy employed switches depending on the current utilisation and availability of the energy supplies. Preliminary results presented for a system consisting of a micro-CHP unit, solar PV, and battery storage indicate that the control strategy is effective in minimising the interaction with the local electrical network and maximising the utilisation of the available renewable energy.
机译:微发电技术的定位是满足未来建筑对能源效率的要求,并促进可再生能源与建筑的融合,以确保可持续的,能源安全的未来。本文探索了一种鲁棒的多输入多输出(MIMO)控制器的开发,该控制器适用于混合可再生微型发电系统的控制,目的是在满足热需求的同时最大程度地降低建筑物的电网利用率。控制器采用强大的控制方法,利用建筑物,服务系统和能量存储的逆动态。这些逆动力学为控制系统提供了系统,受控输入和外部干扰之间复杂的因果关系知识,而外环控制可确保在存在建模缺陷/不确定性和未知性的情况下进行鲁棒,稳定的控制干扰。可变结构控制补偿了系统的物理局限性,由此所采用的控制策略根据能源的当前利用率和可用性进行切换。针对由微型CHP单元,太阳能PV和电池存储组成的系统提供的初步结果表明,该控制策略可有效减少与本地电网的相互作用,并最大程度地利用可再生能源。

著录项

  • 作者

    Allison John;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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