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Integrated demand response in district electricity-heating network considering double auction retail energy market based on demand-side energy stations

机译:地区电力加热网络综合需求响应考虑基于需求侧能量站的双拍卖零售能源市场

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摘要

Integrated demand response (IDR) is an important approach to promote renewable energy consumption and improve energy efficiency in integrated energy systems. In IDR, not only multi-energy users, but also demand side energy stations, can become demand response resources. Hence, making full use of the flexibility of energy supply and the elasticity of electricity and heat demand is vital to the development of IDR. In this paper, based on the background of the electricity-heat integrated energy system, the precise models of typical controllable electric and heat load are constructed considering the user's requirements for comfort. Based on the model, the electricity-heat coordinated retail market framework is proposed to achieve the coordinated clearing of electric and heat load, managing the district energy generation and consumption through transactive control methods. The bidding strategies for electric and heat load are established for customers to participate in the market. The market clearing rules are defined with the aim of maximizing the net revenue of integrated energy service agency to realize the optimal energy allocation of energy station devices. Finally, the case study demonstrates that the proposed method can optimize both the resource allocation of demand-side energy stations and the energy use of customers through economic means. About 80-90% of wind power can be absorbed through participation in market bidding, and the specific consumption rate depends on the type of energy stations and users' demand. By guiding customers to consume energy reasonably during different market clearing periods, the energy expenditure can be reduced by 18.76% on average under the premise that the users' comfort is guaranteed.
机译:综合需求响应(IDR)是促进可再生能源消耗的重要方法,提高集成能源系统中的能效。在IDR中,不仅多能量用户,而且还需要侧能量站,可以成为需求响应资源。因此,充分利用能量供应的灵活性和电力和热需求的弹性对IDR的发展至关重要。本文基于电力 - 热集成能源系统的背景,考虑到用户对舒适性要求,构建了典型可控电气和热负荷的精确模型。基于该模型,提出了电力 - 热协调零售市场框架,实现了电热负荷的协调清除,通过过度传动控制方法管理地区能量产生和消耗。为客户参与市场,建立了电气和热负荷的竞标策略。市场清算规则是旨在最大限度地提高综合能源服务机构净收入来实现能源站设备的最佳能源分配的目标。最后,案例研究表明,所提出的方法可以通过经济手段优化需求侧能量站的资源分配和客户的能源使用。大约80-90%的风力电力可以通过参与市场竞标来吸收,具体的消费率取决于能源站和用户需求的类型。通过引导客户在不同市场清算期间合理地消耗能量,在用户舒适的前提下,能源支出可以平均减少18.76%。

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