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Instantaneous Self-Powered Sensing System Based on Planar-Structured Rotary Triboelectric Nanogenerator

机译:基于平面结构旋转摩擦纳米电磁体的瞬时自动传感系统

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摘要

Self-powering electronics by harvesting mechanical energy has been widely studied, but most self-powering processes require a long time in the energy harvesting procedure, resulting in low efficiency or even system failure in some specific applications such as instantaneous sensor signal acquisition and transmission. In order to achieve efficient self-powered sensing, we design and construct an instantaneous self-powered sensing system, which puts heavy requirements on generator’s power and power management circuit. Theoretical analysis and experimental results over two types of generators prove that the planar-structured rotary triboelectric nanogenerator possesses many advantages over electromagnetic generator for the circumstances of instantaneous self-powering. In addition, an instantaneous driving mode power management circuit is also introduced showing advanced performance for the instantaneous self-powering sensing system. As a proof-of-concept, an integrated instantaneous self-powered sensing system is demonstrated based on Radio-Frequency transmission. This work demonstrates the potential of instantaneous self-powered sensing systems to be used in a wide range of applications such as smart home, environment monitoring, and security surveillance.
机译:通过收获机械能的自动电子设备已经广泛研究,但大多数自动过程需要长时间在能量收集过程中,导致一些特定应用的效率低甚至系统故障,例如瞬时传感器信号采集和传输。为了实现高效的自动传感,我们设计并构建瞬时自动传感系统,对发电机的电源和电源管理电路进行了重大要求。对两种类型的发电机的理论分析和实验结果证明了平面结构的旋转摩擦纳米能器对电磁发生器具有许多优点,用于瞬时自动的情况。此外,还引入了瞬时驱动模式电源管理电路,显示了瞬时自供电感测系统的高级性能。作为概念验证,基于射频传输来证明集成的瞬时自动传感系统。这项工作展示了瞬时自动传感系统的潜力,用于广泛的应用,如智能家庭,环境监测和安全监控。

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