基于线性决策规则的热电联产系统鲁棒管理

M. Zugno, J. Morales, H. Madsen
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引用次数: 28

摘要

热电联产机组的输出热量和输出功率受到共同约束。因此,包括热电联产机组在内的系统的最优管理是一个多商品优化问题。这种类型的问题是随机的,因为热需求和热电联产机组所有者在市场上出售电力所获得的电价都存在固有的不确定性。在这项工作中,我们对一个热电耦合系统的管理问题进行了建模,该系统包括热电联产电厂、单独产生热量的单元以及热量储存。我们提出了一个鲁棒优化模型,包括机组承诺,日前功率和热调度以及实时再调度(追索权)变量。该模型给出了在给定不确定性集内任何热需求实现情况下的可行解。通过线性决策规则逼近单元实时运行的最优追索权函数,以保证问题的可追溯性和动态方面的正确表示。算例的数值结果证实了该方法的有效性。
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Robust management of Combined Heat and Power systems via linear decision rules
The heat and power outputs of Combined Heat and Power (CHP) units are jointly constrained. Hence, the optimal management of systems including CHP units is a multi-commodity optimization problem. Problems of this type are stochastic, owing to the uncertainty inherent both in the demand for heat and in the electricity prices that owners of CHP units receive for the power they sell in the market. In this work, we model the management problem for a coupled heat-and-power system comprising CHP plants, units solely producing heat as well as heat storages. We propose a robust optimization model including unit commitment, day-ahead power and heat dispatch as well as real-time re-dispatch (recourse) variables. This model yields a solution that is feasible under any realization of the heat demand within a given uncertainty set. Optimal recourse functions for the real-time operation of the units are approximated via linear decision rules to guarantee both tractability and a correct representation of the dynamic aspects of the problem. Numerical results from an illustrative example confirm the value of the proposed approach.
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