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A Novel Method for the Bi-directional Transformation between Human Living Activities and Appliance Power Consumption Patterns

机译:人类生活活动与设备用电方式双向转换的新方法

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This paper describes a novel method for the bi-directional transformation between the power consumption patterns of appliances and human living activities. We have been proposing a demand-side energy management system that aims to cut down the peak power consumption and save the electric energy in a household while keeping user's quality of life based on the plan of electricity use and the dynamic priorities of the appliances. The plan of electricity use could be established in advance by predicting appliance power consumption. Regarding the priority of each appliance, it changes according to user's daily living activities, such as cooking, bathing, or entertainment. To evaluate real-time appliance priorities, real-time living activity estimation is needed. In this paper, we address the problem of the bi-directional transformation between personal living activities and power consumption patterns of appliances. We assume that personal living activities and appliance power consumption patterns are related via the following two elements: personal appliance usage patterns, and the location of people. We first propose a Living Activity - Power Consumption Model as a generative model to represent the relationship between living activities and appliance power consumption patterns, via the two elements. We then propose a method for the bidirectional transformation between living activities and appliance power consumption patterns on the model, including the estimation of personal living activities from measured appliance power consumption patterns, and the generation of appliance power consumption patterns from given living activities. Experiments conducted on real daily life demonstrate that our method can estimate living activities that are almost consistent with the real ones. We also confirm through case study that our method is applicable for simulating appliance power consumption patterns. Our contributions in this paper would be effective in saving electric energy, and may be applied to remotely monitor the daily living of older people.
机译:本文介绍了一种在电器的功耗模式和人类生活活动之间进行双向转换的新方法。我们一直在提出一种需求侧能源管理系统,该系统旨在根据用电计划和设备的动态优先级来降低峰值能耗并节省家庭的电能,同时保持用户的生活质量。可以通过预测设备用电量来预先建立用电计划。关于每种设备的优先级,它会根据用户的日常活动(例如烹饪,洗澡或娱乐)而变化。为了评估实时设备优先级,需要实时生活活动估计。在本文中,我们解决了个人生活活动和家用电器的功耗模式之间的双向转换问题。我们假设个人生活活动和设备功耗模式通过以下两个元素相关:个人设备使用模式和人员位置。我们首先提出一个“生活活动-功耗模型”作为生成模型,通过这两个要素来表示生活活动与电器功耗模式之间的关系。然后,我们提出了一种在模型上的生活活动和设备用电模式之间进行双向转换的方法,包括根据测得的设备用电模式估算个人生活活动,以及根据给定的生活用活动生成设备用电模式。在现实生活中进行的实验表明,我们的方法可以估算出与真实生活几乎一致的生活活动。通过案例研究,我们还确认了我们的方法适用于模拟设备功耗模式。我们在本文中所做的贡献将有效地节省电能,并可应用于远程监控老年人的日常生活。

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