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Comparison of user performance when applying system identification for assessment of the energy performance of building components

机译:应用系统标识评估建筑组件的能源性能时的用户性能比较

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摘要

The application of system identification techniques to the energy performance assessment of buildings and building components requires a high level of knowledge of physical and mathematical processes. This factor, combined with the quality of the data, the description of the monitoring procedure and test environment, together with the experience of the user of the analysis software itself, can produce varying results from different users when applying different models and software packages. Past international system identification competitions (1994 and 1996) demonstrated the spread in results that can be expected regarding the application of different models and techniques to the same benchmark data. The PASLINK EEIG has attempted to consolidate and strengthen knowledge and expertise of system identification techniques within the grouping and also ensure that data analysis meets minimum quality levels. This paper compares the spread in results obtained during the previous competitions to that obtained during the workshops carried out by the PASLINK EEIG following 10 years of networking activities in the field. The objective is to identify the extent to which the networking activities have strengthened the position of the individual teams working in the field and to identify the areas where quality assurance is met and, furthermore, where further improvements can be made. A direct comparison of the quality of results obtained during data analysis from the previous decade is made with recent results after a significant period of collaboration and networking activities.
机译:将系统识别技术应用于建筑物和建筑物组件的能源性能评估需要对物理和数学过程有很高的了解。这个因素,再加上数据的质量,监视程序和测试环境的描述以及分析软件本身用户的经验,在应用不同的模型和软件包时,可能会产生来自不同用户的不同结果。过去的国际系统识别竞赛(1994年和1996年)证明了将不同的模型和技术应用于同一基准数据时可以预期的结果范围。 PASLINK EEIG试图巩固和加强分组中系统识别技术的知识和专长,并确保数据分析达到最低质量要求。本文将PASLINK EEIG经过10年的现场网络活动之后,在以前的比赛中获得的结果与在PASLINK EEIG举办的研讨会中获得的结果进行了比较。目的是确定联网活动在多大程度上增强了在实地工作的各个团队的地位,并确定了可以满足质量保证的领域,以及可以进一步改进的领域。经过大量协作和网络活动之后,将过去十年中数据分析过程中获得的结果质量与最近的结果进行了直接比较。

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