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SIMULATION OF PRODUCT PERFORMANCE BASED ON REAL PRODUCT-USAGE INFORMATION: FIRST RESULTS OF PRACTICAL APPLICATION TO DOMESTIC REFRIGERATORS

机译:基于实际产品使用信息的产品性能模拟:在国内冰箱的首先结果

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Today's connected products increasingly allow us to collect and analyze information on how they are actually used. An engineering activity where usage data can prove particularly useful, and be converted to actionable engineering knowledge, is simulation: user behavior is often hard to model, and collected data representing real user interactions as simulation input can increase realism of simulations. This is especially useful for (i) investigating use-related phenomena that influence the product's performance and (ii) evaluating design variations on how they succeed in coping with real users and their behaviors. In this paper we explored time-stamped usage data from connected refrigerators, investigating the influence of door openings on energy consumption and evaluating control-related design variations envisaged to mitigate negative effects of door openings. We used a fast-executing simulation setup that allowed us to simulate much faster than real time and investigate usage over a longer time. According to our first outcomes, door openings do not affect energy consumption as much as some literature suggests. Through what-if studies we could evaluate three design variations and nevertheless point out that particular solution elements resulted in better ways of dealing with door openings in terms of energy consumption.
机译:当今的互联产品越来越多地让我们收集和分析他们到底是如何使用的信息。一个工程活动,其中使用数据可以证明是特别有用的,并且被转换为可操作的工程知识,是模拟:用户的行为是常常难以模型,和表示真正的用户交互作为模拟输入可以增加模拟的真实感收集的数据。这是特别有用的(一)调查那些影响他们与真正的用户和他们的行为如何应对成功产品的性能及(ii)评价设计变更使用相关的现象。在本文中,我们探讨了从连接冰箱时间标记的使用数据,调查门开口对能源消耗的影响,并评估控制相关的设计变化设想,以减轻门洞的负面影响。我们使用了快速执行模拟设置,使我们能够比实时更快的模拟和调查使用较长的时间。根据我们的第一个成果,开门不影响能源消耗不亚于一些文献表明。通过假设的研究,我们可以评估三个设计变化和仍然指出,特定的解决方案的元素导致与门开口在能耗方面处理的更好的方法。

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