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Smart sensing to drive real-time loads scheduling algorithm in a domotic architecture

机译:智能感应以驱动domotic体系结构中的实时负载调度算法

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Nowadays the focus on power consumption represent a very important factor regarding the reduction of power consumption with correlated costs and the environmental sustainability problems. Automatic control load based on power consumption and use cycle represents the optimal solution to costs restraint. The purpose of these systems is to modulate the power request of electricity avoiding an unorganized work of the loads, using intelligent techniques to manage them based on real time scheduling algorithms. The goal is to coordinate a set of electrical loads to optimize energy costs and consumptions based on the stipulated contract terms. The proposed algorithm use two new main notions: priority driven loads and smart scheduling loads. The priority driven loads can be turned off (stand by) according to a priority policy established by the user if the consumption exceed a denned threshold, on the contrary smart scheduling loads are scheduled in a particular way to don't stop their Life-Cycle (LC) safeguarding the devices functions or allowing the user to freely use the devices without the risk of exceeding the power threshold. The algorithm , using these two kind of notions and taking into account user requirements, manages loads activation and deactivation allowing the completion their operation cycle without exceeding the consumption threshold in an off-peak time range according to the electricity fare. This kind of logic is inspired by industrial lean manufacturing which focus is to minimize any kind of power waste optimizing the available resources.
机译:如今,对功耗的关注已成为降低功耗,相关成本和环境可持续性问题的重要因素。基于功耗和使用周期的自动控制负载代表了控制成本的最佳解决方案。这些系统的目的是通过基于实时调度算法的智能技术来管理电力,从而避免负载的无序工作。目标是根据规定的合同条款协调一组电力负载,以优化能源成本和能耗。提出的算法使用两个新的主要概念:优先级驱动负载和智能调度负载。如果消耗量超过限定的阈值,则可以根据用户建立的优先级策略来关闭(待机)优先级驱动的负载,相反,以特定方式调度智能调度负载以不停止其生命周期(LC)保护设备功能或允许用户自由使用设备而不会超过功率阈值。该算法使用这两种概念并考虑了用户需求,根据电费来管理负载的激活和停用,从而在不超过非高峰时间范围内完成其运行周期而不会超过功耗阈值。这种逻辑受工业精益生产的启发,工业精益生产的重点是最大程度地减少任何形式的电能浪费,从而优化可用资源。

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