混合能源网络的仿真与控制框架

D. Geysen, P. Booij, C. Warmer
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引用次数: 6

摘要

在建筑环境方面,预计在未来几十年,每年的总能源需求,包括热能和电能,都可以由建筑环境中产生的可再生能源来满足。越来越多的热电元件,如热泵和储热装置,将使热能转化为电能,反之亦然。因此,在这种环境下的控制需要对热网和电网进行综合管理。在本文中,我们提出了一个模拟框架,它能够使用各种各样的设备模型在地区层面上模拟和协调多商品流,同时考虑到不同类型的业务目标(例如,使用时间关税,调峰等)。为了管理这些流动,开发了一种基于市场的多商品算法,用于综合协调电力和热流,并将其集成到仿真框架中。该算法是对PowerMatcher概念的增强,因此继承了其可伸缩性和用户自主性等优点。最后给出了仿真框架和综合控制算法的应用实例。
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A framework for simulation and control of hybrid energy networks
For the built environment it is envisaged that in the next decades the total annual energy demand, both thermal and electric, could be covered by renewable sources generated within the built environment. An increasing number of thermoelectric elements, such as heat pumps and thermal storage, will enable conversion from heat to electricity and vice versa. Control in this environment therefore requires an integral management of both the heat network and the electricity network. In this paper we present a simulation framework which is able to simulate and coordinate multi-commodity flows on a district level using a wide variety of appliance models, taking into account different types of business objectives (e.g. time of use tariffs, peak shaving, etc.). To manage these flows a market-based multi-commodity algorithm, for integrated coordination of electricity and heat flows, was developed and integrated in the simulation framework. The algorithm is an enhancement of the PowerMatcher concept and thus inherits its advantages such as scalability and user autonomy. An example is given to demonstrate the use of both the simulation framework and integrated control algorithm.
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