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Energy Storage System For Dual Energy Harvester For Wearable Or Portable Devices

机译:用于可穿戴设备或便携式设备的双能收割机的能量存储系统

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In this new age of technological advancement, the usage of vibration for harvesters to provide electrical power for devices can be optimized with the implementation of an energy storing system. This research investigates how a dual-energy harvester that consists of piezoelectric and electromagnetic assembly could store the energy it produced so it can be used whenever necessary. The energy storage system is simulated using Simulink MATLAB that uses a half rectifier to rectify the input voltages that also work as a switching circuit using diodes for each output. The output voltage obtained from energy harvester simulations is 7.55 V and 2.92 V for piezoelectric and electromagnetic respectively. Two types of input with various levels of input (high and/or low) were tested for this energy storage system. It takes 52 minutes for the designed energy storage system to be fully charged from the dual-energy harvester. This outcome from this project provides a possibility for the dual-energy harvester to optimally store a power supply that can be used daily in portable or wearable devices.
机译:在这一新的技术进步时代,可以利用能量存储系统的实现优化收割机对收割机振动提供电力的使用。本研究调查了由压电和电磁组件组成的双能收割机如何存储它所产生的能量,使其可以在必要时使用。使用Simulink MATLAB模拟能量存储系统,该MATLAB使用半流器来纠正作为每个输出二极管作为开关电路的输入电压。为压电和电磁器的能量收割机模拟获得的输出电压分别为7.55 V和2.92 V.测试该储能系统的两种类型的输入(高和/或低)的输入(高和/或低)。设计的储能系统需要52分钟,从双能收割机完全充电。该项目的这一结果提供了双能收割机的可能性,以最佳地存储可在便携式或可穿戴设备中使用的电源。

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