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An IoT Peripheral Sensor Integration to Assist Elderly Drivers

机译:IOT外围传感器集成,以帮助老年司机

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Due to gradually aging lifespan of elders in human society, a lot of new demands have been brought to facilitate their daily life. The elder driving assistive technology is one of the demands. The elder driving assistive technology is not only beneficial in increasing safety of the driver and the people around his vehicle, but also advantageous in decreasing the public cost of society safety. Thus, the study set a goal to pursue a driving assistive apparatus which can respond immediately to the elder a helpful warning or arrestment during a potential accident crisis. The apparatus dynamically monitors the vehicle movement and it corresponding diver operation mode, and detects the irregularity between the driver and his vehicle. Sensory devices for detecting the behaviors were installed in the vehicle, including imaging camera, inertial measurement unit, Lidar scanner, steering wheel angle sensor, depression sensors on accelerator pedal and brake pedal to form a sensory network for collecting the signals for irregularity identification. Together with an array of ultrasonic sensors installed surrounding the vehicle to scout the suspicious objects around, a sensor harness was integrated and formed to evaluate the irregularity level of the danger. Once the risk level is significant enough, the danger classification will be delivered to the processing center to activate a corresponding ensemble of sensory feedbacks to remind adaptively the driver. The signal interface which has been designed attempts to resist automatically or even stops immediately an inaccurate operation of the driver which might cease an accident disaster.
机译:由于人类社会中的长老寿命逐渐老化,因此已经提出了许多新的要求,以方便他们的日常生活。老年驾驶辅助技术是所需的要求。老年驾驶辅助技术不仅有利于越来越多的驾驶员安全和围绕他的车辆的人们,而且还有利于降低社会安全的公共成本。因此,该研究设定了追求驾驶辅助装置的目标,该驾驶辅助设备可以在潜在的事故危机中立即响应老年人的有用的警告或逮捕。该装置动态地监视车辆运动和IT相应的潜水员操作模式,并检测驾驶员和他的车辆之间的不规则性。用于检测行为的感官设备安装在车辆中,包括成像摄像机,惯性测量单元,LIDAR扫描仪,方向盘角度传感器,加速器踏板和制动踏板上的凹陷传感器,以形成用于收集信号的感官网络以进行不规则识别。与一系列超声波传感器一起安装在车辆上,以围绕可疑物体侦察可疑物体,集成并形成传感器线束,以评估危险的不规则程度。一旦风险等级足够略有,危险分类将被传送到加工中心以激活感觉反馈的相应集合,以便自适应地提醒驾驶员。已经设计的信号接口试图自动抵抗或甚至立即停止驾驶员的不准确操作,这可能停止发生事故灾难。

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