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Vehicle design evaluation using the digital proving ground

机译:使用数字证明地面的车辆设计评估

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Recent advancements in three-dimensional digital terrain mapping and vehicle simulation technology present an opportunity to introduce "real-world feedback" early in the design process. Designers of suspension, braking, steering and safety systems can evaluate and optimize designs using computer simulation of a vehicle on the digital proving ground (DPG). A range of possible design behaviors can be identified and analyzed prior to expensive prototyping and testing. Even a series of specific test maneuvers may be evaluated prior to actual testing to ensure safety of the driver and prototype vehicle. As a result, the design process is more efficient and the use of the actual proving ground is more cost effective. This paper presents an overview of the use of the digital proving ground for vehicle design evaluation. Several examples of digital proving ground tests will be discussed. Digital 3-D models of a test track facility may be available from the construction of the grounds, or they can be created with laser measurement techniques, such as LIDAR. Tire-terrain contact patch simulation techniques provide for the use of validated physics models to study 3-D vehicle behavior undergoing simulated tests for handling, ride, braking compliance or other maneuvers.
机译:三维数字地形映射和车辆仿真技术的最新进步提供了在设计过程中提前引入“真实世界反馈”的机会。悬架,制动,转向和安全系统的设计者可以使用车辆在数字证明地面(DPG)上的计算机仿真来评估和优化设计。在昂贵的原型设计和测试之前,可以识别和分析一系列可能的设计行为。即使在实际测试之前也可以评估一系列特定的测试机动,以确保驱动器和原型车辆的安全性。结果,设计过程更有效,使用实际证明地面更具成本效益。本文概述了数字证明地面用于车辆设计评估的使用。将讨论数字证明地面测试的几个例子。测试轨道设施的数字3-D模型可从地面的结构获得,或者可以用激光测量技术(如LIDAR)创建。轮胎地形触点仿真技术提供了使用验证的物理模型,研究了正在进行模拟测试的三维车辆行为,用于处理,乘坐,制动合规或其他机动。

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