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Comparison of four rule-based demand response control algorithms in an electrically and heat pump-heated residential building

机译:电力和热泵供暖住宅中四种基于规则的需求响应控制算法的比较

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摘要

This study aims to investigate the effect of demand response (DR) actions on energy consumption and energy cost with two alternative heat generation systems in a detached house in a cold climate. The heat generation systems are a ground source heat pump coupled with a two-storage tank system (GSHP heating system) and a water-based electric heating system coupled with a similar storage tank system (storing electric heating system). Four rule-based DR control algorithms were applied and studied for two alternative heat generation systems. Two rule-based DR control algorithms from previous study were applied and investigated for these heat generation systems based on real-time hourly electricity price and future hourly electricity prices based on the blocking-maximum subarray method. Two new rule-based DR control algorithms based on future hourly electricity prices were developed and investigated for these heat generation systems based on the sliding-maximum subarray method and moving average method. This research was implemented with the validated dynamic building simulation tool IDA ICE. The obtained results show that the maximum annual savings in the heating energy and cost take place using the rule-based DR control algorithm based on the sliding-maximum subarray method. As well, these savings are about 10% and 15%, respectively, for the GSHP heating system; and about 1% and 8%, respectively, for the storing electric heating system.
机译:这项研究旨在调查在寒冷气候中独立式住宅中两个替代供热系统对需求响应(DR)行为对能源消耗和能源成本的影响。发热系统是与两储罐系统(GSHP加热系统)耦合的地源热泵,以及与类似的储罐系统(存储电加热系统)耦合的水基电加热系统。应用了四种基于规则的DR控制算法,并研究了两种替代生热系统。在以前的研究中,基于实时小时电价和基于阻塞最大子数组法的未来小时电价,对这些热发电系统应用和研究了两种基于规则的DR控制算法。基于滑动最大子数组法和移动平均法,针对这些热发电系统开发并研究了两种基于未来小时电价的基于规则的DR控制算法。这项研究是通过经过验证的动态建筑模拟工具IDA ICE实施的。获得的结果表明,使用基于滑动最大子数组方法的基于规则的DR控制算法,可以最大程度地每年节省加热能量和成本。同样,对于GSHP加热系统,这些节省分别约为10%和15%。蓄电加热系统分别约为1%和8%。

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