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Optimization of power-to-heat flexibility for residential buildings in response to day-ahead electricity price

机译:优化住宅建筑的电力热灵活性,以响应日前电价

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Increasing the penetration of renewable power in Denmark, demand-side flexibility is offered as a workable solution to hedge against the intermittency and volatility of renewable energy. In the residential sector, heat pumps are economic alternatives for district heating to unlock heat flexibility in response to renewable power availability. This paper proposes a novel economic approach to optimize the heat consumption of a single responsive building with multiple rooms. The suggested approach makes it possible to set different temperature zones for the rooms based on the occupancy patterns. To provide power system flexibility, an Economic Model Predictive Control (EMPC) is designed. The EMPC adjusts heat consumption in response to the electricity price. Integration of the heat flexibility into the power system, two types of heat flexibilities are investigated, including thermal inertia of rooms and thermal storage of buffer. To increase the applicability of the problem, real sensor data of a Danish residential building is used to estimate the constant parameters of the thermal dynamic. To achieve the aim, a model identification method is developed to estimate the constant factors based on the maximum likelihood function. Finally, the performance of the suggested approach is examined in response to the day-ahead electricity price of the Danish Electricity Market. The results showed that the suggested approach not only ensures power system flexibility but also decreases the energy consumption cost of the building up to 37% a week. (C) 2020 Elsevier B.V. All rights reserved.
机译:增加丹麦可再生能力的渗透,需求侧的灵活性被提供为对冲对冲间歇性和可再生能源的波动的可行解决方案。在住宅领域,热泵是区供暖的经济替代品,以响应可再生能源可用性而解锁热灵活性。本文提出了一种新颖的经济方法,优化多个房间的单一响应建筑的热量消耗。建议的方法可以根据占用模式设置房间的不同温度区域。为了提供电力系统灵活性,设计了经济模型预测控制(EMPC)。 EMPC根据电价调整热量消耗。对电力系统的热灵活性集成,研究了两种类型的热灵活性,包括房间的热惯性和缓冲液的热储存。为了提高问题的适用性,丹麦住宅建筑的实际传感器数据用于估计热动力量的恒定参数。为实现目的,开发了一种模型识别方法来估计基于最大似然函数的恒定因素。最后,审查了建议的方法的表现,以应对丹麦电力市场的一天前电力价格。结果表明,建议的方法不仅可以确保电力系统的灵活性,而且还将建筑物的能耗成本降低,每周高达37%。 (c)2020 Elsevier B.v.保留所有权利。

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