Analytical review of electronic and electrome-chanical systems of electric vehicles

O. Smyrnov, A. Borysenko
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Abstract

Problem. This article addresses the issue of developing environmentally friendly vehicles and their electronic and electromechanical components. It provides an analytical review of advanced electromechanical technologies utilized in the creation of Tesla electric cars. Specifically, the study analyzes the electronic stability control system, active pneumatic suspension, and electric power steering. The perspective of electric cars lies in their ability to meet the economic requirements of modernity and align with the "Zero Emission" paradigm. The obtained results can serve as recommendations for the development of electronic and electromechanical systems and complexes of electric vehicles, benefiting scientific and technical professionals engaged in the creation of environmentally friendly vehicles. Goal. This study aims to analyze the advanced technologies used in the development of electronic and electromechanical systems of Tesla electric cars. Methodology. The research employs an analytical study of the characteristics of the electronic and electromechanical systems of Tesla electric cars to achieve the set goal. It includes a detailed analysis of the electronic stability control system, active pneumatic suspension, and electric power steering. Results. An analysis of scientific publications reveals that the problem of creating environmentally friendly and energy-efficient vehicles is currently being solved through the use of electric drives powered by traction batteries. Modern electric cars have overcome drawbacks such as low dynamics, limited range, and low maximum speed, surpassing similar internal combustion engine vehicles in these aspects. Tesla electric cars are currently the most technologically advanced and promising in this field. The analysis focuses on the technical solutions and advanced technologies employed in Tesla Model S electric cars, specifically the electronic stability control system, active pneumatic suspension, and electric power steering. The conducted research allows for an assessment of the current state of electronic and electromechanical systems in electric cars and provides insights into their future development. Originality. The results of this research provide a comprehensive understanding of the present state of electronic and electromechanical systems in Tesla electric cars. It enables a detailed analysis and exploration of the advanced technologies used in the development of Tesla electric cars and their distinctive features. Practical Value. The research findings contribute to identifying promising directions for the development of contemporary electronic and electromechanical systems in electric vehicles. They serve as a basis for creating recommendations concerning electronic stability control systems, active pneumatic suspension, and electric power steering, which can be valuable to scientific and technical professionals involved in the development of environmentally friendly vehicles.
电动汽车电子与机电系统分析综述
问题。本文讨论了开发环境友好型车辆及其电子和机电部件的问题。它提供了先进的机电技术在创造特斯拉电动汽车的分析审查。具体来说,研究分析了电子稳定控制系统、主动气动悬架和电动助力转向。电动汽车的前景在于它们能够满足现代化的经济要求,并与“零排放”范式保持一致。所获得的结果可以作为电子和机电系统以及电动汽车综合体的发展建议,使从事创造环境友好型车辆的科学和技术专业人员受益。的目标。本研究旨在分析特斯拉电动汽车电子和机电系统开发中使用的先进技术。方法。本研究通过对特斯拉电动汽车电子机电系统特性的分析研究来实现既定目标。它包括对电子稳定控制系统、主动气动悬架和电动助力转向的详细分析。结果。一项对科学出版物的分析表明,制造环保和节能车辆的问题目前正在通过使用牵引电池供电的电力驱动来解决。现代电动汽车克服了动力低、行驶里程有限、最大速度低等缺点,在这些方面都超过了类似的内燃机汽车。特斯拉电动汽车是目前该领域技术最先进、最有前途的汽车。重点分析了特斯拉Model S电动汽车采用的技术解决方案和先进技术,特别是电子稳定控制系统、主动气动悬架和电动助力转向。所进行的研究允许对电动汽车的电子和机电系统的现状进行评估,并提供对其未来发展的见解。创意。本研究的结果为特斯拉电动汽车的电子和机电系统的现状提供了一个全面的了解。它可以详细分析和探索特斯拉电动汽车开发中使用的先进技术及其独特的特点。实用价值。研究结果有助于确定当代电动汽车电子机电系统的发展方向。它们可以作为创建有关电子稳定控制系统、主动气动悬架和电动助力转向的建议的基础,这对于参与环保车辆开发的科学和技术专业人员来说是有价值的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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