Economic MPC based on LPV model for thermostatically controlled loads

N. Zemtsov, J. Hlava, G. Frantsuzova, H. Madsen, R. Junker, John Bagterp J⊘rgensen
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引用次数: 5

Abstract

Rapid increase of the renewable energy share in electricity production requires optimization and flexibility of the power consumption side. Thermostatically controlled loads (TCLs) have a large potential for regulation service provision. Economic model predictive control (MPC) is an advanced control method which can be used to syncronize the power consumption with undispatchable renewable electricity production. Thermal behavior of TCLs can be described by linear models based on energy balance of the system. In some cases, parameters of the model may be time-varying. In this work, we present a modified economic MPC based on linear parameter-varying model. In particular, we provide an exact transformation from a standard economic MPC formulation to a linear program. We assume that the variables influencing the model parameters are known (predictable) for the prediction horizon of the controller. As a case study, we present control system that minimizes operational cost of swimming pool heating system, where parameters of the model depend on the weather forecast. Simulation results demonstrate that the proposed method is able to deal with this kind of systems.
基于LPV模型的热控负荷经济MPC
可再生能源在电力生产中所占份额的快速增加,要求电力消费侧的优化和灵活性。恒温控制负载(tcl)在提供调节服务方面具有很大的潜力。经济模型预测控制(MPC)是一种先进的控制方法,可以用于同步电力消耗和不可调度的可再生能源发电。tcl的热行为可以用基于系统能量平衡的线性模型来描述。在某些情况下,模型的参数可能是时变的。本文提出了一种基于线性参数变化模型的修正经济MPC。特别地,我们提供了从标准经济MPC公式到线性规划的精确转换。我们假设影响模型参数的变量对于控制器的预测范围是已知的(可预测的)。作为一个案例研究,我们提出了一个控制系统,使游泳池供暖系统的运行成本最小化,其中模型的参数取决于天气预报。仿真结果表明,所提出的方法能够处理这类系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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