论文标题

使用基于模型的预测控制的不确定性的住宅分布式能源的能源调度

Energy Scheduling for Residential Distributed Energy Resources with Uncertainties Using Model-based Predictive Control

论文作者

Moradmand, Anahita, Dorostian, Mehrdad, Shafai, Bahram

论文摘要

本文提出了一个可靠的能源调度框架,用于住宅区的分布式能源(DER),以实现适当的每日电力消耗,并最大程度地响应。可再生能源和不可再生能源可以使用不同类别的方法来响应客户在当时管理能源的需求。最佳操作问题是使用基于模型的预测控制(MPC)研究的混合智能线性编程(MILP),以确定应在什么时间和在什么功率水平下在满足实际约束的情况下在什么功率水平下运行哪个可调度单元。最近的可再生能源(RES),尤其是太阳能和风能,最近扩大了它们在电力系统中的作用。尽管它们是环境友好且易于访问的,但在其性能方面存在挑战性的问题,例如处理与之关注的可变性和不确定性。这项研究在三种互补场景中调查了这些系统的能源管理。第一个和第二种情况分别适用于以恒定和不一致的价格的市场。此外,提出第三种情况来考虑不确定性在RES中的作用,旨在使用不可再生资源来补偿功率短缺。在住宅区域探索了方法的有效性24小时,结果彻底证明了拟议方法降低运营成本的能力。

This paper proposes a reliable energy scheduling framework for distributed energy resources (DER) of a residential area to achieve an appropriate daily electricity consumption with the maximum affordable demand response. Renewable and non-renewable energy resources are available to respond to customers' demands using different classes of methods to manage energy during the time. The optimal operation problem is a mixed-integer-linear-programming (MILP) investigated using model-based predictive control (MPC) to determine which dispatchable unit should be operated at what time and at what power level while satisfying practical constraints. Renewable energy sources (RES), particularly solar and wind energies recently have expanded their role in electric power systems. Although they are environment friendly and accessible, there are challenging issues regarding their performance such as dealing with the variability and uncertainties concerned with them. This research investigates the energy management of these systems in three complementary scenarios. The first and second scenarios are respectively suitable for a market with a constant and inconstant price. Additionally, the third scenario is proposed to consider the role of uncertainties in RES and it is designed to recompense the power shortage using non-renewable resources. The validity of methods is explored in a residential area for 24 hours and the results thoroughly demonstrate the competence of the proposed approach for decreasing the operation cost.

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