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Using Marine Engine Control Units in the Investigation of Watercraft Collision Incidents - Mercury Verado Outboard Engine

机译:在船舶碰撞事件调查中使用海洋发动机控制单元 - Mercury Verado舷外发动机

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In the investigation of a collision involving recreational watercraft, analytical methods are generally limited when compared to incidents involving land-based vehicles. As is indicated in previous publications, investigators often rely on time/distance relationships, human factors, the matching of damage to determine vessel positioning at impact, and the recollections of witnesses. When applicable, speed estimates are generally based on the boat engine's revolutions. By considering the engine speed, the drive gear ratio, the propeller pitch, and the likely slip of the propeller, an estimation of the boat's travel speed can be made. In more recent publications, it has been recognized that Event Data Recorder (EDR) technology incorporated into various Electronic Control Units (ECUs) used in automotive applications can be beneficial to collision investigation and reconstruction. These devices record data surrounding diagnostic occurrences, airbag deployments, and, with respect to some heavy vehicles, "last stop" and/or "sudden deceleration" events. Formal testing of these devices has shown their accuracy and use in collision analysis. This research examines event data as recorded by specific Mercury Marine ECUs in combination with external data acquisition devices. Specifically, the study focused on validating engine speed data. In addition, recording parameters were researched, as were the effects of a powerloss condition on data files. The results of this research suggest that marine ECUs can be beneficial to accident investigation by recording specific engine parameters and operator inputs immediately prior to a collision incident.
机译:在调查涉及娱乐船只的碰撞中,与涉及陆地车辆的事件相比,分析方法通常有限。如先前出版物所示,调查人员通常依赖于时间/距离关系,人类因素,损坏的匹配,以确定血管定位在撞击时,以及证人的回忆。当适用时,速度估计通常基于船用发动机的转速。通过考虑发动机速度,驱动齿轮比,螺旋桨间距和螺旋桨的可能滑动,可以进行船的行进速度。在最近的出版物中,已经认识到,纳入汽车应用中使用的各种电子控制单元(ECU)的事件数据记录器(EDR)技术可以有利于碰撞调查和重建。这些设备记录围绕诊断事件,安全气囊部署以及一些重型车辆,“最后一站式”和/或“突然减速”事件的数据。正式测试这些设备已经显示了它们的准确性和在碰撞分析中使用。该研究将特定汞海洋ecur与外部数据采集设备的结合录制的事件数据检查。具体而言,该研究专注于验证发动机速度数据。此外,研究了录制参数,因为Powerloss条件对数据文件的影响。该研究的结果表明,海洋欧洲欧洲陆战队们可以通过在碰撞事件之前立即记录特定发动机参数和操作员输入来利用事故调查。

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