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Trilateral Planning Model for Integrated Community Energy Systems and PV-Based Prosumers-A Bilevel Stochastic Programming Approach

机译:三边规划模型为综合社区能源系统和基于光伏的制度 - 一种胆纤维随机编程方法

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摘要

This paper proposes a trilateral bilevel stochastic mixed integer bilevel linear programming (MIBLP) model to handle a joint master-slave operation-planning problem. This model considers the interactions among an integrated community energy system (ICES), prosumers, and the wholesale electricity market (WM). The ICES, in the upper level, makes a joint optimal photovoltaic (PV) and energy storage system plan taking into account the concurrent interactions with the WM and prosumers to maximize its profit. On the other hand, in the lower level, the prosumers aim at minimizing their bills via an optimal PV-package sizing while interacting with the ICES and the WM simultaneously. The strong duality theorem is used to recast this MIBLP model into an equivalent single-level model. Since the lower level is also an operation-planning problem, this recast results in a mixed integer nonlinear programming (MINLP) model that prevents finding a satisfactory solution. To remedy this issue, sensitivity analysis and a separation-based linearization technique are applied. Numerical results illustrate the effective performance of the proposed business model while providing valuable information for the ICES and consumers.
机译:本文提出了一款三边贝齐随机混合整数彼得线性编程(MIBLP)模型,用于处理联合主从操作计划问题。该模型考虑了综合社区能源系统(ICES),专业和批发电力市场(WM)之间的互动。在上层的冰中,通过与WM的并发相互作用以及制度来最大化其利润的并发相互作用,使得联合最佳光伏(PV)和能量存储系统计划进行联合最佳光伏(PV)和能量存储系统计划。另一方面,在较低的水平中,制度旨在通过同时与冰和WM的相互作用,通过最佳的PV封装尺寸最小化它们的票据。强大的二元定理用于将该MIBLP模型重新载入等效单级模型。由于较低的级别也是一个操作计划问题,因此该重用导致混合整数非线性编程(MINLP)模型,其防止找到令人满意的解决方案。为了解决这个问题,应用灵敏度分析和基于分离的线性化技术。数值结果说明了拟议的商业模式的有效性能,同时为冰和消费者提供有价值的信息。

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