Mokhtari Fatemeh, Cheng Zhenxiang, Wang Chun H, Foroughi Javad
Carbon Nexus Institute for Frontier Materials Deakin University Geelong Victoria 3216 Australia.
Faculty of Engineering and Information Sciences University of Wollongong Wollongong NSW 2500 Australia.
Glob Chall. 2023 Apr 7;7(6):2300019. doi: 10.1002/gch2.202300019. eCollection 2023 Jun.
Recent advances in wearable energy harvesting technology as solutions to occupational health and safety programs are presented. Workers are often exposed to harmful conditions-especially in the mining and construction industries-where chronic health issues can emerge over time. While wearable sensors technology can aid in early detection and long-term exposure tracking, powering them and the associated risks are often an impediment for their widespread use, such as the need for frequent charging and battery safety. Repetitive vibration exposure is one such hazard, e.g., whole body vibration, yet it can also provide parasitic energy that can be harvested to power wearable sensors and overcome the battery limitations. This review can critically analyze the vibration effect on workers' health, the limitations of currently available devices, explore new options for powering different personal protective equipment devices, and discuss opportunities and directions for future research. The recent progress in self-powered vibration sensors and systems from the perspective of the underlying materials, applications, and fabrication techniques is reviewed. Lastly, the challenges and perspectives are discussed for reference to the researchers who are interested in self-powered vibration sensors.
本文介绍了可穿戴能量收集技术作为职业健康与安全计划解决方案的最新进展。工人经常暴露于有害环境中,尤其是在采矿和建筑行业,随着时间的推移可能会出现慢性健康问题。虽然可穿戴传感器技术有助于早期检测和长期暴露跟踪,但为其供电以及相关风险往往阻碍了它们的广泛使用,例如需要频繁充电和电池安全问题。重复性振动暴露就是这样一种危害,例如全身振动,但它也可以提供可收集的寄生能量,为可穿戴传感器供电并克服电池限制。本综述可以批判性地分析振动对工人健康的影响、现有设备的局限性,探索为不同个人防护设备供电的新选择,并讨论未来研究的机会和方向。从基础材料、应用和制造技术的角度综述了自供电振动传感器和系统的最新进展。最后,讨论了挑战和前景,以供对自供电振动传感器感兴趣的研究人员参考。