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首页> 外文期刊>Nature Communications >3D printed graphene-based self-powered strain sensors for smart tires in autonomous vehicles
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3D printed graphene-based self-powered strain sensors for smart tires in autonomous vehicles

机译:基于3D印刷石墨烯的自动应变传感器,用于自动车辆中的智能轮胎

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摘要

The transition of autonomous vehicles into fleets requires an advanced control system design that relies on continuous feedback from the tires. Smart tires enable continuous monitoring of dynamic parameters by combining strain sensing with traditional tire functions. Here, we provide breakthrough in this direction by demonstrating tire-integrated system that combines direct mask-less 3D printed strain gauges, flexible piezoelectric energy harvester for powering the sensors and secure wireless data transfer electronics, and machine learning for predictive data analysis. Ink of graphene based material was designed to directly print strain sensor for measuring tire-road interactions under varying driving speeds, normal load, and tire pressure. A secure wireless data transfer hardware powered by a piezoelectric patch is implemented to demonstrate self-powered sensing and wireless communication capability. Combined, this study significantly advances the design and fabrication of cost-effective smart tires by demonstrating practical self-powered wireless strain sensing capability. Designing efficient sensors for smart tires for autonomous vehicles remains a challenge. Here, the authors present a tire-integrated system that combines direct mask-less 3D printed strain gauges, flexible piezoelectric energy harvester for powering the sensors and secure wireless data transfer electronics, and machine learning for predictive data analysis.
机译:自动车辆到舰队的过渡需要先进的控制系统设计,依赖于轮胎的连续反馈。通过将应变感测与传统轮胎功能相结合,智能轮胎能够连续监测动态参数。在这里,我们通过演示连续掩模3D印刷应变仪,柔性压电能量收割机的轮胎集成系统来提供突破性,用于为传感器提供供电和安全无线数据传输电子设备,以及用于预测数据分析的机器学习。基于石墨烯材料的墨水设计为直接打印应变传感器,用于测量变化的驱动速度,正常负载和轮胎压力下的轮胎道路相互作用。实现由压电贴片供电的安全无线数据传输硬件以展示自供电的感测和无线通信能力。结合,本研究通过展示实用的自动无线应变感测能力,显着推进了成本高效的智能轮胎的设计和制造。为自治车辆设计智能轮胎的高效传感器仍然是一项挑战。在这里,作者介绍了一个轮胎集成系统,该系统结合了直接掩模3D印刷应变仪,柔性压电能量收割机,用于为传感器提供供电,并安全无线数据传输电子设备,以及用于预测数据分析的机器学习。

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