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Design and Construction of a Virtual Bicycle Simulator for Evaluating Sustainable Facilities Design

机译:用于评估可持续设施设计的虚拟自行车模拟器的设计与构建

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The rising interest in sustainable modes of transportation has increased demand for the design and implementation of bicycle facilities in the United States. However, as compared to the vehicular mode, bicycle facilities have relatively less development, research, and understanding. The availability of a bicycling simulator has the potential to contribute to the understanding of bicycle facility design and bicyclist behavior. The design and construction of a bicycling simulator differs from a driving simulator in many ways. A bicycling simulator requires interfaces for bicycle speed, braking, and steering angle as well as a visual interface. In addition, a representation of a real-world network, including pavement, buildings, the sky and background, and fixed and moving objects, needs to be modeled using a simulator engine. This paper presents the details of the ZouSim bicycling simulator development and the tradeoffs associated with various design decisions, such as the choice of a steering sensor and graphical display. A sample application of a way finding and detection markings study illustrates the use of ZouSim. The authors hope that this article will encourage other researchers who conduct research in sustainable cities to explore the use of bicycle simulators for improving bicycle facility design and operations.
机译:人们对可持续交通方式的兴趣日益浓厚,对美国自行车设施的设计和实施提出了更高的要求。但是,与车辆模式相比,自行车设施的开发,研究和了解相对较少。骑自行车模拟器的可用性可能有助于理解自行车设施的设计和骑自行车的人的行为。骑自行车模拟器的设计和构造在很多方面与驾驶模拟器不同。骑自行车的模拟器需要用于自行车速度,制动和转向角的界面以及可视界面。此外,还需要使用模拟器引擎对现实世界网络(包括人行道,建筑物,天空和背景以及固定和移动物体)的表示进行建模。本文介绍了ZouSim自行车模拟器开发的详细信息以及与各种设计决策(例如转向传感器的选择和图形显示)相关的权衡。查找和检测标记研究的示例应用程序说明了ZouSim的使用。作者希望本文能够鼓励其他在可持续城市中进行研究的研究人员探索使用自行车模拟器来改善自行车设施的设计和运营。

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