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Embedded self-powered sensing systems for smart vehicles and intelligent transportation

机译:嵌入式自动传感系统,用于智能车辆和智能交通

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摘要

With the current changes in the automotive industry, vehicles need more and more advanced sensors for control, safety, monitoring, perception, and operation. With the current technological advancements, our cars are becoming more computers on wheels. There are more than one hundred sensors in a vehicle that many of them have the potential to be replaced with nanogenerators (NGs)-based self-powered sensors. In this article, we aim to investigate and propose self-powered sensors for different sensing applications in vehicles. Furthermore, we discuss how leveraging nanogenerators can be beneficial in bolstering intelligent transportation systems. Several conceptual ideas and designs for self-powered sensors in automotive-related systems are presented and discussed based on the current status of research in this area. The importance of self-powered sensors in vehicles are further elaborated and the energy harvesting potential of nanogenerators are shown for a few vehicle systems. Challenges, design concerns and the future impacts of self-powered sensing in automotive and traffic monitoring systems are fully discussed. It is delineated how the application of nanogenerators could accelerate the realization of fully smart vehicles and intelligent transportation.
机译:随着汽车行业的目前的变化,车辆需要越来越多的先进传感器,用于控制,安全,监测,感知和操作。随着目前的技术进步,我们的汽车正在成为车轮上的更多计算机。在车辆中有多百个传感器,其中许多传感器具有含有纳米机器(NGS)的自动传感器的可能性。在本文中,我们旨在调查和提出用于车辆中不同传感应用的自动传感器。此外,我们讨论如何利用纳米液体在玻璃间智能运输系统中有益。根据该地区的当前研究现状,提出并讨论了汽车相关系统中自给自足传感器的几种概念思想和设计。进一步详细阐述了车辆中自给自动力传感器的重要性,并且少量车辆系统示出了纳米液的能量收集电位。充分讨论了挑战,设计担忧和自给自足传感在汽车和交通监测系统中的未来影响。它逐出应用纳米液的应用如何加速完全智能车辆和智能运输的实现。

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