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MPC approaches for modulating air-to-water heat pumps in radiant-floor buildings

机译:MPC方法用于调节辐射式建筑物中的空气-水热泵

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摘要

A modulating heat pump and water tank result in a nonlinear model due to the load dependency of the heat pump performance, and variable water flows. Nonlinear model predictive control is an effective way to deal with many physical constraints and nonlinear formulations. Alternatively, linear time-varying MPC can be used, based on successive linearizations around a reference trajectory. The goal of the paper is to analyze the advantages and disadvantages of those MPC techniques for temperature control in radiant-floor buildings. The results show that nonlinear on-line optimization is real-time feasible for the application considered here, as the slow dynamics allows for a fairly long sampling time. Alternatively, the linear time-varying MPC approach shows a significantly better performance compared to the Standard MPC scheme if a feasible reference trajectory is provided. Nonlinear MPC can save up to 6% energy and improve the comfort by 4% with respect to Standard MPC for the given application, while its difference with LTV-MPC is negligible. Moreover, a robustness analysis has been conducted, showing the impact of the heat pump efficiency on the control performance.
机译:由于热泵性能的负载依赖性以及可变的水流量,调节的热泵和水箱会导致非线性模型。非线性模型预测控制是处理许多物理约束和非线性公式的有效方法。可替代地,基于围绕参考轨迹的连续线性化,可以使用线性时变MPC。本文的目的是分析那些MPC技术在辐射地板建筑物中进行温度控制的优缺点。结果表明,非线性在线优化对于此处考虑的应用是实时可行的,因为缓慢的动态特性允许相当长的采样时间。或者,如果提供了可行的参考轨迹,则与标准MPC方案相比,线性时变MPC方法表现出明显更好的性能。对于给定的应用,非线性MPC相对于标准MPC可以节省多达6%的能量,并提高4%的舒适度,而与LTV-MPC的差异可以忽略不计。此外,已经进行了鲁棒性分析,显示了热泵效率对控制性能的影响。

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