首页> 外文会议>Proceedings of the 15th IFAC World Congress: International Federation of Automatic Control >MODELLING AND CONTROL OF CO-GENERATION POWER PLANTS UNDER CONSIDERATION OF LIFETIME CONSUMPTION: A HYBRID SYSTEM APPROACH
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MODELLING AND CONTROL OF CO-GENERATION POWER PLANTS UNDER CONSIDERATION OF LIFETIME CONSUMPTION: A HYBRID SYSTEM APPROACH

机译:考虑寿命消耗的热电联产电厂的建模与控制:一种混合系统方法

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In this paper the load optimization of a combined cycle power plant under consideration of the real cost of lifetime usage is accomplished by exploiting hybrid systems, i.e.. systems evolving according to continuous dynamics, discrete dynamics, and logic rules. The possibility of turning on/off the gas and steam turbines, the operating constraints (minimum up and down times) and the different types of start up of the turbines characterize the hybrid behavior of a combined cycle power plant. In order to model both the continuous/discrete dynamics and the switching between different operating conditions we use the framework of Mixed Logic Dynamical systems. Next, we recast the economic optimization problem as a Model Predictive Control (MPC) problem, that allows us to optimize the plant operations by taking into account the time variability of both prices and electricity/steam demands. Because of the presence of integer variables, the MPC scheme is formulated as a mixed integer linear program that can be solved in an efficient way by using commercial solvers.
机译:在本文中,通过利用混合系统,即根据持续动态,离散动态和逻辑规则,通过利用混合系统来实现正在考虑的终身用途实际成本的组合循环发电厂的负荷优化。开启/关闭气体和蒸汽涡轮机的可能性,操作约束(最小上下时间)和涡轮机的不同类型的启动表征组合循环发电厂的混合行为。为了模拟连续/离散动态和不同操作条件之间的切换,我们使用混合逻辑动力系统的框架。接下来,我们将经济优化问题作为模型预测控制(MPC)问题,使我们能够考虑到价格和电力/蒸汽需求的时间可变性来优化工厂操作。由于存在整数变量,MPC方案被配制为混合整数线性程序,可以通过使用商业求解器以有效的方式解决。

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