论文标题
基于方案的分支机构方法,用于城市建筑中的MES调度
A Scenario-based Branch-and-Bound Approach for MES Scheduling in Urban Buildings
论文作者
论文摘要
本文提出了一种新颖的解决方案技术,用于在商业城市建筑中安排多能系统(MES),以执行基于价格的需求响应并降低能源成本。 MES调度问题被提出为混合整数非线性程序(MINLP),这是由于可再生生成和需求而导致不确定性的非凸面NPHARD问题。模型预测控制方法用于处理不确定性和价格变化。这需要在每个时间段期间求解时间耦合的多时间步长MINLP,这是计算密集型的。这项调查提出了一种称为基于方案的分支机构(SB3)的方法,该方法是一种轻巧的求解器,以降低计算复杂性。它结合了凸程序的简单性与元数据技术解决复杂非线性问题的能力。 SB3求解器的性能在新加坡的清洁技术大楼中得到了验证,结果表明,所提出的算法将能源成本降低了约17.26%和22.46%,而不是解决多次步骤启发式优化模型。
This paper presents a novel solution technique for scheduling multi-energy system (MES) in a commercial urban building to perform price-based demand response and reduce energy costs. The MES scheduling problem is formulated as a mixed integer nonlinear program (MINLP), a non-convex NPhard problem with uncertainties due to renewable generation and demand. A model predictive control approach is used to handle the uncertainties and price variations. This in-turn requires solving a time-coupled multi-time step MINLP during each time-epoch which is computationally intensive. This investigation proposes an approach called the Scenario-Based Branch-and-Bound (SB3), a light-weight solver to reduce the computational complexity. It combines the simplicity of convex programs with the ability of meta-heuristic techniques to handle complex nonlinear problems. The performance of the SB3 solver is validated in the Cleantech building, Singapore and the results demonstrate that the proposed algorithm reduces energy cost by about 17.26% and 22.46% as against solving a multi-time step heuristic optimization model.