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Development of Bicycle Carrier for Bicyclist Pre-Collision System Evaluation

机译:骑自行车架的自行车载体的开发碰撞系统评价

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According to the U.S. National Highway Traffic Safety Administration, 743 pedal cyclists were killed and 48,000 were injured in motor vehicle crashes in 2013. As a novel active safety equipment to mitigate bicyclist crashes, bicyclist Pre-Collision Systems (PCSs) are being developed by many vehicle manufacturers. Therefore, developing equipment for evaluating bicyclist PCS is essential. This paper describes the development of a bicycle carrier for carrying the surrogate bicyclist in bicyclist PCS testing. An analysis on the United States national crash databases and videos from TASI 110 car naturalistic driving database was conducted to determine a set of most common crash scenarios, the motion speed and profile of bicycles. The bicycle carrier was designed to carry or pull the surrogate bicyclist for bicycle PCS evaluation. The carrier is a platform with a 4 wheel differential driving system. Each wheel is attached to an independent suspension system to protect motors, gears and reduce the vibrations. The height of carrier was minimized to 78mm for reducing the interference to PCS sensors. To ensure it can be run over by the test vehicle during bicyclist PCS testing without being damaged, the size of the carrier is designed as 160x160cm with a protection mechanism. A finite element analysis (FEA) was conducted to verify the strength of the carrier. Moreover, a carrier control system was developed, which includes ZigBee based communication, safety sensor, and, vibration monitoring. A series of motion testing with different speed and trajectory profiles were successfully conducted. The safety and effectiveness of the bicyclist carrier was tested on a test track in various test scenarios.
机译:根据美国国家公路交通安全管理局,743名踏板骑自行车者被杀死,2013年机动车撞车撞击48,000人受伤。作为减轻自行车船崩溃的新型活跃安全设备,许多人正在开发自行车运动碰撞系统(PCS)。车辆制造商。因此,用于评估自行车PC的开发设备至关重要。本文介绍了携带替代骑自行车的骑自行车的PCS测试的自行车载体的开发。对来自Tasi 110汽车自然驾驶数据库的美国国家崩溃数据库和视频进行了分析,以确定一系列最常见的碰撞场景,自行车的运动速度和轮廓。自行车载体旨在携带或拉动替代自行车骑自行车的骑自行车的PCS评估。载体是具有4轮差分驱动系统的平台。每个车轮连接到独立的悬架系统,以保护电动机,齿轮和减少振动。载体的高度最小化至78mm,以减少对PCS传感器的干扰。为了确保在自行车型PCS测试期间可以通过测试车辆运行而不会损坏,载体的尺寸设计为160x160cm,具有保护机制。进行有限元分析(FEA)以验证载体的强度。此外,开发了一种载波控制系统,包括基于ZigBee的通信,安全传感器和振动监测。成功进行了一系列具有不同速度和轨迹轮廓的运动测试。在各种测试场景中测试了自行车载体的安全性和有效性在测试轨道上进行了测试。

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