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Optimal scheduling of combined heat and power plants using mixed-integer nonlinear programming

机译:混合整数非线性规划的热电厂联合优化调度

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This paper presents the application of MINLP (mixed-integer nonlinear programming) approach for scheduling of a CHP (combined heat and power) plant in the day-ahead wholesale energy markets. This work employs first principles models to describe the nonlinear dynamics of a CHP plant and its individual components. The MINLP framework includes practical constraints such as minimum/maximum power output and steam flow restrictions, minimum up/down times, start-up and shut-down procedures, and fuel limits. Special care is given to the explicit modeling of the unit start-up types (hot, warm, and cold), which depend on the component's prior reservation time, resulting in the differences in the time-dependent start-up costs of generating units. The model also accounts for the different operating modes (synchronization, soak, dispatch, and desynchronization) during start-up and shut-down of each unit. We provide case studies involving the Hal C. Weaver power plant complex at the University of Texas at Austin to demonstrate the effectiveness of the proposed methodology. The results show that the optimized operating strategies can yield substantial net incomes from electricity sales.
机译:本文介绍了在日前批发能源市场中,MINLP(混合整数非线性规划)方法在CHP(热电联产)电厂调度中的应用。这项工作采用第一原理模型来描述热电联产厂及其各个组成部分的非线性动力学。 MINLP框架包括实际限制,例如最小/最大功率输出和蒸汽流量限制,最小上/下时间,启动和关闭程序以及燃料限制。单元启动类型(热,暖和冷)的显式建模要特别注意,这取决于组件的先前保留时间,从而导致发电机组的时间相关启动成本有所不同。该模型还考虑了每个单元启动和关闭期间的不同操作模式(同步,均等,调度和不同步)。我们提供了涉及德克萨斯大学奥斯汀分校Hal C. Weaver发电厂综合设施的案例研究,以证明所提出方法的有效性。结果表明,优化的运营策略可以从电力销售中获得可观的净收入。

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