一种新型无人驾驶车辆实时健康监测系统

David Zhang, Lien Ouyang, Peter X. Qing, I. Li
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引用次数: 5

摘要

实时监测在役结构(如无人驾驶车辆)的状态可以为及时发现结构的损伤提供宝贵的信息。如果发现此类损坏,可以及时对无人驾驶车辆进行维护和维修。无人驾驶车辆损坏的一个典型原因是由于撞到一些障碍物或被一些物体(如敌对火力)击中而造成的冲击。本文介绍了一种新型的撞击事件感知系统,该系统可以检测撞击事件的位置和撞击事件的力-时历史。该系统由压电传感器网络、硬件平台和分析软件三部分组成。新的定制电池供电的碰撞事件传感系统支持多达64通道并行数据采集。它具有创新的低功耗硬件触发电路,可同时监控64个通道。系统大部分时间处于休眠状态。当撞击事件发生时,系统将在微秒内唤醒,并检测撞击位置和相应的力-时间历史。该系统可与SMART传感系统相结合,进一步评估冲击损伤的严重程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel real-time health monitoring system for unmanned vehicles
Real-time monitoring the status of in-service structures such as unmanned vehicles can provide invaluable information to detect the damages to the structures on time. The unmanned vehicles can be maintained and repaired in time if such damages are found. One typical cause of damages of unmanned vehicles is from impacts caused by bumping into some obstacles or being hit by some objects such as hostile fire. This paper introduces a novel impact event sensing system that can detect the location of the impact events and the force-time history of the impact events. The system consists of the Piezo-electric sensor network, the hardware platform and the analysis software. The new customized battery-powered impact event sensing system supports up to 64-channel parallel data acquisition. It features an innovative low-power hardware trigger circuit that monitors 64 channels simultaneously. The system is in the sleep mode most of the time. When an impact event happens, the system will wake up in micro-seconds and detect the impact location and corresponding force-time history. The system can be combined with the SMART sensing system to further evaluate the impact damage severity.
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