首页> 外文会议>Building simulation: International Building Performance Simulation Association conference and exhibition >THERMAL DYNAMIC MODELS USING Z-TRANSFORM COEFFICIENTS: AN ALGORITHM TO IMPROVE THE RELIABILITY OF SIMULATIONS
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THERMAL DYNAMIC MODELS USING Z-TRANSFORM COEFFICIENTS: AN ALGORITHM TO IMPROVE THE RELIABILITY OF SIMULATIONS

机译:使用Z变换系数的热动态模型:提高模拟可靠性的算法

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The Transfer Function Method (TFM) is a tool able to solve heat transfer problems in building envelopes and environments and it is recommended by the American Society of Heating, Refrigerating and Air- Conditioning Engineers (ASHRAE). Authors have investigated TFM mathematical features, especially concerning the reliability and the quality of the thermal dynamic simulations. Using some basilar control systems tools like Bode plots, step response, model validation, results show clearly that, for a very massive building, a simply application of TFM very often fails. We have developed a software, THELDA 2000, founded upon a new TFM algorithm, to determine the Z-transform coefficients able to perform a thermal building simulation. Target of our work is to identify an automatic procedure able to optimise the reliability of the simulation by selecting and using in a more correct way poles and the residuals of the transfer functions. Paper explains as applying to TFM some concepts coming from system theory, like choosing the only significant poles in the transfer function, it is possible to obtain a drastic improvement of the quality of the simulation. Some cases studies show that using a limited number of coefficients can give a faster and more reliable simulation and sometimes it is the only method to obtain some results. Furthermore, the analysis shows as the choice of the sampling period is crucial to carry out a reliable simulation.
机译:传递函数方法(TFM)是一种能够解决建筑包络和环境中的传热问题的工具,并且由美国加热,制冷和空调工程师(Ashrae)建议。作者已经调查了TFM数学特征,特别是关于热动态模拟的可靠性和质量。使用一些基底控制系统工具,如Bode Plotot,Step Response,Model验证,结果明确显示,对于非常大的建筑物,Simply应用TFM通常经常失败。我们开发了一个软件,2000年,创建于新的TFM算法,确定能够进行热建筑模拟的Z变换系数。我们的作品的目标是通过选择和使用更正确的方式和传递函数的残差来识别能够优化模拟可靠性的自动程序。论文解释为申请TFM来自系统理论的一些概念,例如选择传递函数中唯一的显着极点,可以获得模拟质量的急剧提高。一些病例研究表明,使用有限数量的系数可以提供更快,更可靠的模拟,有时它是获得一些结果的唯一方法。此外,分析显示作为采样时段的选择是至关重要的,以实现可靠的模拟。

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