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A System for Energy Conservation Through Personalized Learning Mechanism

机译:通过个性化学习机制节能的系统

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Several challenges exist in developing smart buildings such as the development of context aware algorithms and real-time control systems, the integration of numerous sensors to detect various parameters, integration changes in the existing electrical infrastructure, and high cost of deployment. Another major challenge is to optimize the energy usage in smart buildings without compromising the comfort level of individuals. However, the success of this task requires in depth knowledge of the individual and group behaviour inside the smart building. To solve the aforementioned challenges, we have designed and developed a Smart Personalised System for Energy Management (SPSE), a low cost context aware system integrated with personalized and collaborative learning capabilities to understand the real-time behaviour of individuals in a building for optimizing the energy usage in the building. The context aware system constitutes a wearable device and a wireless switchboard that can continuously monitor several functions such as the real-time monitoring and localization of the presence of the individual, real-time monitoring and detection of the usage of switch board and equipment, and their time of usage by each individual. Using the continuous data collected from the context aware system, personalized and group algorithms can be developed for optimizing the energy usage with minimum sensors. In this work, the context aware system was tested extensively for module performance and for complete integrated device performance. The study found the proposed system provides the opportunity to collect data necessary for developing a personalized system for smart buildings with minimum sensors.
机译:在开发智能建筑物中存在几种挑战,例如发展中下围知识算法和实时控制系统的发展,众多传感器的集成来检测各种参数,现有电气基础设施的集成变化,以及高成本的部署成本。另一个主要挑战是优化智能建筑中的能源用途,而不会影响个人的舒适程度。然而,这项任务的成功需要深入了解智能建筑内的个人和群体行为。为了解决上述挑战,我们设计并开发了一个智能个性化系统,用于能源管理(SPSE),一个低成本的环境意识系统,与个性化和协作学习能力集成,以了解建筑物中个人的实时行为以优化建筑物中的能源用途。上下文意识系统构成可穿戴设备和无线交换机,可以连续监控多个功能,例如各个,实时监控和检测的实时监控和定位,以及交换板和设备的使用情况,以及他们每个人的使用时间。使用从上下文感知系统中收集的连续数据,可以开发个性化和组算法以优化具有最小传感器的能量使用。在这项工作中,对上下文感知系统进行了广泛的测试模块性能和完整的集成设备性能。该研究发现,该拟议的系统提供了收集为开发个性化系统开发具有最小传感器所需数据所需的数据。

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