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An efficient linear model for optimal day ahead scheduling of CHP units in active distribution networks considering load commitment programs

机译:考虑负荷承诺计划的有效配电网中热电联产机组提前最佳日程调度的有效线性模型

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摘要

The Optimal day-ahead Scheduling of Combined Heat and Power (OSCHP) units is a crucial problem in the energy management of Active Distribution Networks (ADNs), especially in the presence of Electrical and Thermal Energy Storages considering Load Commitment (LC) programs. The ADN operator may use Combined Heat and Power (CHP) units to supply its Industrial Customers (ICs) and can transact electricity with the upstream wholesale electricity market. The OSCHP problem is a Mixed Integer Non Linear Programming (MINLP) problem with many variables and constraints. However, the optimal operation of CHP units, Electrical and Thermal Energy Storages considering LC programs and contingency scenarios, may highly complicate this problem. In this paper, linearization techniques are adopted to linearize equations and a two-stage Stochastic Mixed-Integer Linear Programming (SMILP) model is utilized to solve the problem. The first stage models the behavior of operation parameters and minimizes the operation costs, verifies the feasibility of the ICs' requested power exchanges and the second stage considers LC programs and the system's stochastic contingency scenarios. The effectiveness of the proposed algorithm has been demonstrated considering 18-bus, 33-bus and 123-bus IEEE test systems. (C) 2017 Elsevier Ltd. All rights reserved.
机译:热电联产(OSCHP)单元的最佳提前​​调度是主动配电网(ADN)能源管理中的一个关键问题,尤其是在考虑负荷承诺(LC)计划的电能和热能存储的情况下。 ADN运营商可以使用热电联产(CHP)单元为其工业客户(IC)供电,并可以与上游批发电力市场进行交易。 OSCHP问题是具有许多变量和约束的混合整数非线性规划(MINLP)问题。但是,考虑到LC程序和应急情况,CHP装置,电能和热能存储的最佳运行可能会使此问题变得更加复杂。本文采用线性化技术对方程式进行线性化,并采用两阶段随机混合整数线性规划(SMILP)模型来解决该问题。第一阶段对操作参数的行为进行建模,并最大程度地降低了操作成本,验证了IC要求的电源交换的可行性,第二阶段考虑了LC程序和系统的随机意外情况。考虑到18总线,33总线和123总线IEEE测试系统,该算法的有效性得到了证明。 (C)2017 Elsevier Ltd.保留所有权利。

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