热电联产用户日前能源管理的需求响应规划

M. Javidsharifi, Hamoun Pourroshanfekr Arabani, T. Kerekes, D. Sera, J. Guerrero
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引用次数: 1

摘要

由于需求响应计划(DRP)在电力系统需求侧管理中的重要性日益增加,以及热电联产(CHP)机组的使用越来越多,本文研究了基于日前电价的DRP存在下,配备CHP机组的大用户的能源管理问题。为了解决考虑的非凸非线性能量管理问题,采用粒子群优化算法。此外,考虑到不确定性对能源管理中机组规划和运行的影响的重要性,采用unscented变换(UT)方法对电价、电负荷和热负荷相关的不确定性进行建模。在应用的DRP中,用户可以将一定比例的负荷从高电价时段转移到低电价时段,以降低运营成本。在问题的表述中没有考虑负载的减少。用户能源系统由两个热电联产机组、一个电力机组、一个热力机组和一个用于储存剩余热能的热缓冲罐(HBT)组成。消费者也可以从主电网购买电力,根据电价供应所需负荷。仿真结果表明,所提出的DRP的应用降低了运行成本。
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Demand response planning for day-ahead energy management of CHP-equipped consumers
Due to the growing importance of demand response program (DRP) in demand side management in power systems as well as increasing employment of combined heat and power (CHP) units, the issue of energy management of large consumers equipped with CHP units in the presence of a DRP based on the day-ahead electricity price has been studied in this paper. To solve the considered non-convex and non-linear energy management problem, particle swarm optimization (PSO) algorithm has been used. Also, given the importance of the effect of uncertainties on the planning and operation of units in the energy management, the unscented transformation (UT) method is used for modeling uncertainties related to electricity prices and the amount of electric and thermal loads. In the applied DRP, the consumers can shift a percentage of their load from higher-price hours to lower-price hours to reduce operating costs. No load-shedding is considered in the problem formulation. The consumer energy system consists of two CHP units, one electrical unit, one thermal unit, and a heat buffer tank (HBT) for the storage of surplus thermal energy. The consumer can also buy electricity from the main electricity grid to supply the demanded load based on the price of electricity. The simulation results show that the application of the suggested DRP reduces the operational cost.
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