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A battery-free non-intrusive power meter for low-cost energy monitoring

机译:无电池非侵入式功率计,用于低成本能量监控

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As highlighted by the Intergovernmental Panel for Climate Change (IPCC), providing clean, reliable and affordable energy for people everywhere will require the reduction of gas emission in the energy domain by 90%, compared to 2010 emissions, between the years 2040 and 2070. In addition, to a change in choices, preferences and behavior of individuals and households in energy demand and consumption, to achieve a successful transition to a more sustainable energy system, the adoption of new metering solutions to foster a wide range of sustainable actions by diverse people across the globe will be required. In this paper, we discuss the development of an ultra-low-power energy meter exploiting a single current transformer (CT) sensor for harvesting energy from the same load under monitoring. Starting from the hypothesis that the node activation rate increases monotonically with the primary load draw, and assuming that the node consumes fixed energy quanta during each activation, it is possible to infer the load power from the interval between activations. With this approach, we can provide a device that lowers maintenance cost related to installation and battery replacement; does not need to deal with high main voltage; and does not introduce any additional energy consumption overhead as it draws zero-power under zero-load condition. Energy budget is guaranteed also thanks to the use of a LoRa radio for data transmission.
机译:正如政府间气候变化专门委员会(IPCC)所强调的那样,要为世界各地的人们提供清洁,可靠和负担得起的能源,将需要在2040到2006年之间,将能源领域的气体排放量与2010年的排放量相比减少90%。 2070.此外,为了改变个人和家庭在能源需求和消费方面的选择,偏好和行为,以成功向更可持续的能源系统过渡,采用了新的计量解决方案以促进广泛的可持续行动全球各地的人们都将需要它。在本文中,我们讨论了利用单电流互感器(CT)传感器在监视下从相同负载中收集能量的超低功耗电能表的开发。从节点激活速率随主要负载吸引单调增加的假设开始,并假设节点在每次激活期间消耗固定的能量量子,可以从激活之间的间隔推断负载功率。通过这种方法,我们可以提供一种可降低与安装和更换电池有关的维护成本的设备。不需要处理高主电压;并且不会引入任何额外的能耗开销,因为它在零负载条件下消耗零功率。由于使用了LoRa无线电进行数据传输,因此也保证了能源预算。

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