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Modelica-based modelling and simulation to support research and development in building energy and control systems

机译:基于Modelica的建模和仿真,以支持建筑能源和控制系统的研发

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Traditional building simulation programs possess attributes that make them difficult to use for the design and analysis of building energy and control systems and for the support of model-based research and development of systems that may not already be implemented in these programs. This article presents characteristic features of such applications, and it shows how equation-based object-oriented modelling can meet requirements that arise in such applications. Next, the implementation of an open-source component model library for building energy systems is presented. The library has been developed using the equation-based object-oriented Modelica modelling language. Technical challenges of modelling and simulating such systems are discussed. Research needs are presented to make this technology accessible to user groups that have more stringent requirements with respect to the numerical robustness of simulation than a research community may have. Two examples are presented in which models from the here described library were used. The first example describes the design of a controller for a nonlinear model of a heating coil using model reduction and frequency domain analysis. The second example describes the tuning of control parameters for a static pressure reset controller of a variable air volume flow system. The tuning has been done by solving a non-convex optimization problem that minimizes fan energy subject to state constraints.
机译:传统的建筑仿真程序具有使其难以用于建筑能源和控制系统的设计和分析以及难以在这些程序中实施的基于模型的系统研究和开发的支持的属性。本文介绍了此类应用程序的特征,并说明了基于方程的面向对象的建模如何满足此类应用程序中出现的要求。接下来,介绍了用于建筑能源系统的开源组件模型库的实现。该库是使用基于方程式的面向对象的Modelica建模语言开发的。讨论了建模和仿真此类系统的技术挑战。提出了研究需求,以使对模拟的数值鲁棒性要求比研究社区更高的用户组可以使用此技术。给出了两个示例,其中使用了此处描述的库中的模型。第一个示例描述了使用模型归约和频域分析的加热线圈非线性模型控制器的设计。第二个示例描述了可变风量流量系统的静压复位控制器的控制参数的调整。通过解决非凸优化问题来完成调整,该问题使受状态约束的风扇能量最小化。

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