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Realistic modeling of a combined heat and power plant in the context of mixed integer linear programming

机译:混合整数线性规划中的热电厂联合建模

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In addition to renewable energy sources, the transition of the German energy system will increasingly involve the use of decentralized combined heat and power plants (CHP). In order to use this promising technology cost-optimally, modeling approaches must be developed that enable optimization of the systems. Mixed integer linear programming (MILP) is a powerful tool for solving mathematical optimization problems. However, to reduce the computing time the model formulation requires compelling simplifications in relation to reality. The aim of this paper is to present a modeling approach for a combined heat and power plant that depicts dynamic power changes more accurately than existing approaches. Power gradients are mapped by differentiating between the control signal of the CHP unit and the actually generated power output for thermal and electrical power. Finally, the accuracy of the modeling approach is examined in a field test and evaluated according to the accuracy achieved.
机译:除可再生能源外,德国能源系统的转型将越来越多地涉及分散式热电联产电厂(CHP)的使用。为了以成本优化的方式使用这一有前途的技术,必须开发能够优化系统的建模方法。混合整数线性规划(MILP)是解决数学优化问题的强大工具。但是,为了减少计算时间,模型公式需要相对于实际情况进行令人信服的简化。本文的目的是为热电联产电厂提供一种建模方法,该方法比现有方法更准确地描述动态功率变化。通过区分CHP单元的控制信号和热和电功率的实际生成功率输出来映射功率梯度。最后,在现场测试中检查建模方法的准确性,并根据所达到的准确性进行评估。

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