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Real-time emergency demand response strategy for optimal load dispatch of heat and power micro-grids

机译:热电电网最优载荷调度的实时应急需求响应策略

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Heat and power micro-grids are of great significance in improving the flexibility, efficiency, and reliability of the energy system. Load dispatch of micro-grids considering the emergency demand response (EDR) program is an important optimization problem, which requires the consumers to respond to the emergency load reduction signals in real-time. In this regard, an optimal load dispatch strategy of heat and power micro-grids is proposed to respond to the EDR signals without compromising customers' production process. The strategy encompasses two stages, the rolling optimization stage (ROS) and the real-time emergency demand response stage (REDRS). The tow-stage optimization model is proposed to address the coordination problems brought by the EDR events. The ROS integrated with the model predictive control (MPC) framework is to alleviate the negative effects due to the deviation between the forecasting and real-time data. REDRS is to generate a real-time load reduction plan in response to the EDR events. The proposed strategy makes the efforts to achieve the economic and environmental dispatch of micro-grids with both heat and power demand satisfied. In this study, four cases are discussed to verify the performance of the two-stage strategy. The simulation results show that the total cost and purchased electricity can be effectively reduced through participating EDR programs. It can also be seen from the numerical simulations that the large consumer could gain 23.51-41.83% of the electricity reduction which is purchased from the grid and decrease 11.04-13.28% of total cost in each EDR interval. Besides, the short and long term simulations reveal that the utility company could also achieve the reduction of peak load which could be seen as a "win-win" strategy.
机译:热量和电力微电网在提高能量系统的灵活性,效率和可靠性方面具有重要意义。考虑到紧急需求响应(EDR)程序的Micro-Grids的负载调度是一个重要的优化问题,这要求消费者实时响应紧急负载降低信号。在这方面,提出了一种热量和电力微电网的最佳载荷调度策略,以响应EDR信号而不会影响客户的生产过程。该策略包括两个阶段,滚动优化阶段(ROS)和实时紧急需求响应阶段(REDRS)。提出了牵引阶段优化模型来解决EDR事件带来的协调问题。与模型预测控制(MPC)框架集成的ROS是通过预测和实时数据之间的偏差来缓解负面影响。 REDRS是为了响应EDR事件而生成实时负载降低计划。拟议的战略使努力实现热量和电力需求的微观和电网的经济和环境调度。在这项研究中,讨论了四个案例以验证两级策略的性能。仿真结果表明,通过参与EDR计划可以有效地减少总成本和购买的电力。从数值模拟中也可以看出,大型消费者可以获得从电网购买的23.51-41.83%的电力减少,并在每个EDR间隔中降低总成本的11.04-13.28%。此外,短期和长期模拟表明,该公用事业公司还可以实现峰值负荷的减少,这可以被视为“双赢”战略。

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