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Design Considerations of Sub-mW Indoor Light Energy Harvesting for Wireless Sensor Systems

机译:无线传感器系统的低于mW室内光能收集的设计注意事项

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For most wireless sensor networks, one common and major bottleneck is the limited battery lifetime. The frequent maintenance efforts associated with battery replacement significantly increase the system operational and logistics cost. Unnoticed power failures on nodes will degrade the system reliability and may lead to system failure. In building management applications, to solve this problem, small energy sources such as indoor light energy are promising to provide long-term power to these distributed wireless sensor nodes. This article provides comprehensive design considerations for an indoor light energy harvesting system for building management applications. Photovoltaic cells characteristics, energy storage units, power management circuit design, and power consumption pattern of the target mote are presented. Maximum power point tracking circuits are proposed which significantly increase the power obtained from the solar cells. The novel fast charge circuit reduces the charging time. A prototype was then successfully built and tested in various indoor light conditions to discover the practical issues of the design. The evaluation results show that the proposed prototype increases the power harvested from the PV cells by 30% and also accelerates the charging rate by 34% in a typical indoor lighting condition. By entirely eliminating the rechargeable battery as energy storage, the proposed system would expect an operational lifetime 10-20 years instead of the current less than 6 months battery lifetime.
机译:对于大多数无线传感器网络而言,一个普遍且主要的瓶颈是电池寿命有限。与电池更换相关的频繁维护工作显着增加了系统的运营和物流成本。节点上未注意到的电源故障会降低系统可靠性,并可能导致系统故障。在建筑物管理应用中,为解决此问题,诸如室内光能之类的小能源有望为这些分布式无线传感器节点提供长期电力。本文提供了用于建筑物管理应用的室内光能收集系统的综合设计注意事项。介绍了光伏电池的特性,能量存储单元,电源管理电路设计以及目标微粒的功耗模式。提出了最大功率点跟踪电路,该电路可显着增加从太阳能电池获得的功率。新颖的快速充电电路可减少充电时间。然后成功构建了原型并在各种室内光线条件下进行了测试,以发现设计的实际问题。评估结果表明,在典型的室内照明条件下,所提出的原型可将PV电池收集的功率提高30%,并将充电率提高34%。通过完全取消可再充电电池作为储能设备,拟议的系统可预期的使用寿命为10-20年,而不是目前的不到6个月的电池寿命。

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