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Robust control of net-zero offices with integrated hybrid supply system and energy storage

机译:带有混合动力供应系统和能量存储的零净办公室的鲁棒控制

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摘要

Commercial office buildings are a key target for energy reduction measures. One method of reducing commercial buildings' energy consumption is to make them more autonomous – creating more of their own energy, disposing of their own waste, collecting their own water; ultimately being as sustainable as possible (i.e. self-sustaining). A move towards these energy autonomous systems could be accomplished by the use of renewable and co-generation energy sources. However, there are a multitude of these energy sources available, such as combined heat and power (CHP), thermal energy storage and electrical energy storage plants, heat pumps, photovoltaics, etc. Making these systems work together presents a control challenge for their efficient use, especially since they can have a simultaneous effect on both the thermal and electrical energy networks. This paper describes a robust multi-input multioutput (MIMO) controller applicable to any configuration of the aforementioned systems, with the control goal of minimising the electrical grid utilisation of an office building while maintaining the thermal comfort of the occupants. The controller employs the inverse dynamics of the building, mechanical/servicing systems, and energy storage with a robust control methodology. This inverse dynamics provides the controller 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 process uncertainty and unknown disturbances. Results indicate that the control strategy is effective in minimising the electrical grid use and maximising the utilisation of the available renewable energy – towards net-zero office buildings – and shows the potential for deployment in future energy-autonomous office buildings.
机译:商业办公楼是节能措施的主要目标。减少商业建筑能耗的一种方法是使它们更具自主性–创造更多自己的能源,处置自己的废物,收集自己的水;最终尽可能地保持可持续性(即自我维持)。向这些能源自治系统的转变可以通过使用可再生和热电联产能源来实现。但是,有许多可用的能源,例如热电联产(CHP),热能存储和电能存储工厂,热泵,光伏发电等。使这些系统协同工作对它们的高效性提出了控制挑战。尤其是因为它们可以同时对热能和电能网络产生影响。本文介绍了一种适用于上述系统的任何配置的鲁棒多输入多输出(MIMO)控制器,其控制目标是在保持居住者的热舒适性的同时,最大限度地减少办公楼的电网利用率。控制器采用强大的控制方法,利用建筑物,机械/维修系统和能量存储的逆动态。这种逆动力学为控制器提供了系统,受控输入和外部干扰之间复杂的因果关系知识,而外环控制则可在过程不确定性和未知干扰存在的情况下确保鲁棒,稳定的控制。结果表明,该控制策略可有效减少电网使用并最大程度地提高可再生能源的利用率(朝着净零办公楼的方向发展),并显示出在未来的节能型办公楼中的部署潜力。

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  • 作者

    Allison John;

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  • 年度 2015
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