Nonlinear model predictive control for energy efficient housing with modern construction materials

B. Novoselnik, Josip Cesic, M. Baotic, I. Petrović
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引用次数: 4

Abstract

The reduction of energy consumption in residential buildings and houses represents a major societal and environmental challenge. A huge portion of energy consumption in houses and buildings goes towards comfort control - heating, ventilation and air conditioning. Modern architecture tackles these problems by considering (i) passive exploitation of solar energy and (ii) use of special construction materials that often have quite complex characteristics. Therefore, a smart energy management control system should be able to take both of these considerations into account. This paper proposes a model predictive control (MPC) strategy for energy efficient management of heating and cooling of a house that can cope with the nonlinearities in the system induced by the use of modern construction materials. Furthermore, the proposed controller takes into account the weather forecast information, in particular the prediction of solar irradiance and air temperature. The nonlinear behavior of the system is approximated by a piecewise affine model and further incorporated into the mixed logical dynamical framework. The performance of the proposed nonlinear MPC is demonstrated in simulation experiments, which show applicability and usefulness of the MPC algorithm for energy management.
现代建筑材料节能住宅的非线性模型预测控制
减少住宅建筑和房屋的能源消耗是一项重大的社会和环境挑战。房屋和建筑物的很大一部分能源消耗用于舒适控制——供暖、通风和空调。现代建筑通过考虑(1)被动利用太阳能和(2)使用通常具有相当复杂特性的特殊建筑材料来解决这些问题。因此,智能能源管理控制系统应该能够兼顾这两个方面。本文提出了一种模型预测控制(MPC)策略,用于住宅供暖和制冷的节能管理,该策略可以应对由于使用现代建筑材料而引起的系统非线性。此外,所提出的控制器考虑了天气预报信息,特别是太阳辐照度和空气温度的预测。系统的非线性行为由分段仿射模型近似,并进一步纳入混合逻辑动力框架。仿真实验验证了所提出的非线性MPC算法的性能,证明了该算法在能量管理中的适用性和实用性。
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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