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A novel Smart Home Energy Management system: Cooperative neighbourhood and adaptive renewable energy usage

机译:一种新颖的智能家居能源管理系统:合作社区和自适应可再生能源的使用

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Energy usage optimization in Smart Homes is a critical problem: over 30% of the energy consumption of the world resides in the residential sector. Usage awareness and manual appliance control alone are able to reduce consumption by 15%. This result could be improved if appliance control is automatic, especially if renewable sources are present locally. In this paper, a Smart Home Energy Management system that aims at automatically controlling appliances in groups of smart homes belonging to the same neighborhood is proposed. Not only is electric power distribution considered, but also renewable energy sources such as wind micro-turbines and solar panels. The proposed strategy relies on two algorithms. The Cost Saving Task Scheduling algorithm is aimed at scheduling high-power controllable loads during off-peak hours, taking into account the expected usage of the non-controllable appliances such as fridge, oven, etc. This algorithm is run whenever a new need of energy from a controllable load is detected. The Renewable Source Power Allocation algorithm re-allocated the starting time of controllable loads whenever surplus of renewable source power is detected making use of a distributed max-consensus negotiation. Performance evaluation of the algorithms tested proves that the proposed approach provides an energy cost saving that goes between 35% and 65% with reference to the case where no automatic control is used.
机译:智能家庭中的能源使用优化是一个关键问题:超过30%的世界能源消耗居住在住宅部门。单独使用意识和手动设备可以减少15%的消耗。如果设备控制是自动的,则可以提高此结果,特别是如果在本地存在可再生源。本文提出了一种智能家居能源管理系统,其旨在自动控制属于同一社区的智能房屋组的电器。不仅考虑了电力分布,而且还有可再生能源,如风力微型涡轮机和太阳能电池板。拟议的策略依赖于两种算法。节省成本节省任务调度算法旨在调度在非高峰时段的高功率可控负载,考虑到冰箱,烤箱等不可控制设备等的预期使用。每当新的需求,运行该算法检测来自可控负载的能量。可再生源功率分配算法重新分配可控制负载的启动时间,只要检测到使用分布式最大共识协商协商的可再生源功率。测试所测试的算法的性能评估证明,该方法提供了在没有使用自动控制的情况下的35%和65%之间的能量成本节省。

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