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Highly Redundant Actuation System Concept with Dual Stator Six Phases BLDC Motor Suitable for Automotive Industry Applications : Fault Tolerant System Actuation Design

机译:适用于汽车行业的双定子六相无刷直流电动机的高冗余驱动系统概念:容错系统驱动设计

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摘要

Current trends in the automotive industry are geared towards the development of partially or completely autonomous drive systems. The new regulations imply increasing the security level in operation and meeting minimum requirements for fault mode assistance. In this context, the provision of redundant solutions becomes imperative. Another critical requirement is to achieve a high degree of efficiency (minimum energy consumption). This involves the development of actuation systems and specific control algorithms that increase safety, efficiency and fault tolerance behavior. Based on the abovementioned aspects, this paper proposes a study on a redundant drive concept that can be successfully integrated into the steering or brake systems of current vehicles and also fulfils the basic requirements for autonomous driving. In order to validate the theoretical aspects contained in this study, two distinct ways of modelling and simulation were used: FEM (Finite Element Method) analysis and equivalent mathematical equations implemented in MATLAB / Simulink software environment.
机译:汽车工业的当前趋势是朝着部分或完全自动驾驶系统的发展方向发展。新法规意味着提高了操作的安全级别,并满足了故障模式帮助的最低要求。在这种情况下,提供冗余解决方案势在必行。另一个关键要求是实现高效率(最小能耗)。这涉及致动系统和特定控制算法的开发,以提高安全性,效率和容错性能。基于上述方面,本文提出了一种冗余驱动概念的研究,该概念可以成功地集成到当前车辆的转向或制动系统中,并且满足自动驾驶的基本要求。为了验证本研究中包含的理论方面,使用了两种不同的建模和仿真方法:FEM(有限元方法)分析和在MATLAB / Simulink软件环境中实现的等效数学方程式。

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