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PV-TEG- WiFi Multiple Sources Design Energy Harvesting System for WSN Application

机译:用于WSN的PV-TEG- WiFi多源设计能量收集系统

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Ambient energy harvesting is becoming an essential factor for wireless sensor nodes applications. Harvested energy from ambient sources, such as solar, indoor light, thermal energy, vibration, and radio frequencies (RF) provide a potential power capability that may supplement batteries to provide longevity to the sensor nodes. In an indoor setting, the intermittent availability of these sources will likely lessen the energy densities. Using only a single ambient-energy harvested source may not sustain the power requirement for the design of a battery-less wireless sensor node. Thus, this work investigates and design a power combiner circuit of the indoor light, thermal. The design utilized a cross-coupled charge pump operation to combined the same DC ambient sources, the PV cell, and TEG energy transducers. The system design is simulated using the 65 nm CMOS process technology. The simulation shows that the system is able to supply peak power of 1.69 mW at 500 Ω load. Peak power efficiency is 69% with 919 μA ILOAD.
机译:环境能量收集已成为无线传感器节点应用程序的重要因素。从周围环境收集的能量,例如太阳能,室内光,热能,振动和射频(RF),提供了潜在的供电能力,可以补充电池以延长传感器节点的使用寿命。在室内环境中,这些资源的间歇可用性可能会降低能量密度。仅使用单个环境能量收集源可能无法满足无电池无线传感器节点设计的电源需求。因此,这项工作研究和设计了室内光,热的功率合成器电路。该设计利用交叉耦合电荷泵操作来组合相同的DC环境源,PV电池和TEG能量传感器。系统设计使用65 nm CMOS工艺技术进行仿真。仿真表明,该系统在500Ω负载下能够提供1.69 mW的峰值功率。 919μAI时的峰值功率效率为69% 加载

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