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Methods to assess the stability of a bicycle rider system

机译:评估自行车骑手系统稳定性的方法

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摘要

The SOFIE (Intelligent Assisted Bicycles) project wishes to create performance and design guidelines for mechatronic appliances which improve the stability of electric bicycles, so-called intelligent stability assist devices (IAD). To achieve this goal, a stability hypothesis, an advanced rider/bicycle model and bicycle stability test bench, will be created. This paper describes the development of these components and its goal is to present the project design. The stability hypothesis is based on the concept that the Centre of Mass (CoM) of the bicycle/rider system stays within certain lateral margins from the heading of a bicycle. The rider/bicycle model is created in Adams for multi-body dynamic simulations. The bicycle stability test bench is designed to be interchangeable between bicycles. The model, the test bench and the stability hypothesis will be used to validate the effectiveness of the IAD’s and assist in their design.
机译:SOFIE(智能辅助自行车)项目希望为机电产品创建性能和设计指南,以改善电动自行车的稳定性,即所谓的智能稳定辅助设备(IAD)。为了实现这一目标,将创建稳定性假设,高级骑手/自行车模型和自行车稳定性测试台。本文描述了这些组件的开发,其目标是提出项目设计。稳定性假设基于以下概念:自行车/车手系统的质心(CoM)保持在距自行车行驶方向一定的横向边界内。骑手/自行车模型是在Adams中创建的,用于多体动力学仿真。自行车稳定性测试台设计为可在自行车之间互换。该模型,测试平台和稳定性假设将用于验证IAD的有效性并协助其设计。

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