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储能系统技术 ★ 5.0

释放热泵灵活性:一种面向自给率与能源成本的多目标优化方法

Unlocking heat pump flexibility: A multi-objective optimisation approach for self sufficiency and energy costs

作者 Christopher Gradwohl · Dan Cornelius Maxim · Shama Islam · Thomas Kienberger
期刊 Energy Conversion and Management
出版日期 2025年1月
卷/期 第 334 卷
技术分类 储能系统技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Multi-objective optimisation for local demand-side management.
语言:

中文摘要

摘要 全球能源格局正在经历一场向更清洁、更可持续以及可再生能源转型的深刻变革。然而,可再生能源固有的间歇性、储能能力有限以及电网输电约束,导致电力供需出现显著波动。为维持电网的稳定性与韧性,亟需先进的灵活性调节措施,尤其是在中低压配电网中。热泵结合热能储存系统时,能够提供一种可控且适应性强的负荷形式,可根据电网运行状况进行调节,因而展现出良好的应用前景。本研究探讨了在分布式能源系统中,通过灵活调控热泵运行以满足供热需求的理论潜力,旨在提升可再生能源的消纳水平并降低局部电网负荷。与以往侧重于系统设计与容量配置的研究不同,本文聚焦于通过多目标优化框架实现最优运行策略。为此,构建了一个基于混合整数线性规划的多目标优化模型,旨在通过优化自给率水平,同步最小化家庭能源成本并缓解低压电网的压力。该框架综合考虑了多种电气与热力合成负荷曲线、建筑类型、居住场景、光伏系统规模、预设热泵型号及储能容量。研究结果表明,利用日前电价作为需求响应策略,可有效应对价格波动,避免电网峰值负荷与用电高峰,同时提高自给率并降低能源成本。进一步结果表明,当将热能储存与热泵作为主要灵活性调节手段时,所能获得的效益最为显著。

English Abstract

Abstract The global energy landscape is undergoing a transformative shift towards cleaner, more sustainable, and renewable energy sources. However, the intermittent nature of renewable energy sources, limited storage capacity, and grid transport constraints introduce significant fluctuations in electricity supply and demand. To maintain grid stability and resilience, advanced flexibility measures are required, particularly in medium- to low-voltage networks. Heat pumps, when combined with thermal energy storage, present a promising solution by providing a controllable and adaptive load that aligns with grid conditions. This study explores the theoretical potential of flexible heat pump operation for heating in decentralised energy systems as a strategy for enhancing renewable energy integration and reducing local grid loads. In contrast to previous research that focuses on system design and sizing, this work emphasises optimal operational strategies through a multi-objective optimisation framework. A mixed-integer linear programming based multi-objective optimisation model is developed to simultaneously minimise household energy costs and alleviate strain on the low-voltage grid by optimising the degree of self-sufficiency. The framework incorporates various electrical and thermal synthetic load profiles, building types, living scenarios, photovoltaic system sizes, predefined heat pumps and energy storage capacities. Findings show that leveraging day-ahead energy prices as a demand-response strategy effectively manages price volatility, prevents grid peak loads and consumption, and increases degree of self-sufficiency while reducing energy costs. Results further indicate that the most significant benefits were achieved when using thermal energy storage and heat pumps as primary flexibility measures.
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SunView 深度解读

该研究的热泵-储能协同优化策略对阳光电源ST系列储能变流器和PowerTitan系统具有重要应用价值。通过多目标优化框架实现自发自用率提升与成本降低的平衡,可直接应用于iSolarCloud平台的智能调度算法。研究验证的日前电价需求响应策略,可增强阳光电源储能系统在中低压配电网的削峰填谷能力,为热泵负荷与光储系统的协同控制提供优化思路,助力构建更灵活的分布式能源管理解决方案。