Simulink Model for LMV and Conceptualization of 2 Speed E-Axle

Rohan Sandeep Mahatekar, Ritwik Pulikkal Kizhakkeyil, Sohail Sarfraj Sayyed, Omkar Jeevanprakash Ankalkope, Dr. Virendra Bhojwani
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Abstract

Heavy-duty trucks are the primary contributor to the global emissions of greenhouse gases. Because of this, electric haulage has seen significant growth in popularity. Electric heavy-duty trucks aren't widely adopted because of their limited range, payload capacity, and high prices. Electric axle systems, sometimes known as "E-Axles," are capable of electrifying heavy-duty vehicles effectively. The motor, power electronics, and gearbox are all combined into one unit in an E-axle. E-axles that are devoid of motors and gearboxes have the potential to boost performance while also reducing weight and fuel consumption. Heavy-duty automobiles are similar to them. E-axles have the potential to increase the fuel efficiency, flexibility, and emissions of heavy-load trucks. The e-axles are being inspected. E-axles for heavy-duty trucks bring both issues and opportunities concerning finances, infrastructure, and costs. Examine the performance standards as well as the technology behind batteries. This paper provides an introduction to MATLAB Simulink, which focuses on engineering and science. Simulink facilitates the design, simulation, and evaluation of systems. This article demonstrates the fundamental principles, features, and benefits of Simulink through the application of system modeling, control design, and dynamic simulation. It presents Simulink methodologies, libraries, and blocks, as well as interactive simulations. Keywords: MATLAB, Simulink, EV Control systems, EV simulation, EV powertrain modeling, EV test and validation Simulink, WLTP drive cycle
LMV 的 Simulink 模型和双速 E-Axle 的概念设计
重型卡车是全球温室气体排放的主要来源。正因为如此,电动运输的普及率大幅提高。由于电动重型卡车的续驶里程、有效载荷能力有限,而且价格昂贵,因此并未得到广泛采用。电动车桥系统(有时也称为 "E-Axles")能够有效地实现重型车辆的电气化。在电动车桥中,电动机、电力电子设备和变速箱都是一个整体。没有电机和变速箱的电动车桥在提高性能的同时,还有可能减轻重量和降低油耗。重型汽车与之类似。电子轴有可能提高重型卡车的燃油效率、灵活性和排放。电子轴正在接受检查。重型卡车的电动车桥在财务、基础设施和成本方面既存在问题,也带来了机遇。研究性能标准以及电池背后的技术。本文介绍了以工程和科学为重点的 MATLAB Simulink。Simulink 有助于系统的设计、模拟和评估。本文通过系统建模、控制设计和动态仿真的应用,展示了 Simulink 的基本原理、功能和优势。文章介绍了 Simulink 方法、库和模块,以及交互式仿真。关键词MATLAB、Simulink、电动汽车控制系统、电动汽车仿真、电动汽车动力总成建模、电动汽车测试和验证 Simulink、WLTP 驱动周期
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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