Four Speed Auto Transmission DC-DC Converter Control for E-Vehicle and Regenerative Braking Based on Simulation and Model Investigation

S. Saahithi, B. H. Kumar, K. J. Reddy, Ritesh Dash, V. Subburaj
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引用次数: 8

Abstract

A novel single input multioutput (SIMO) output DC-DC converter with circular capacitors is intended to function with a single independent source to create numerous transmissions to regulate the speed at the same switching intervals. A novel single input multi output (SIMO) output DC-DC converter employing circular capacitors is designed to work with a single independent source to create numerous transmissions. The proposed converter generates 7 outputs in total, with 4 outputs generated simultaneously for forward operation (speed transmission) using the preferred source (fuel cell/battery) and 3 other different outputs used for regenerative transmissions, with the battery being the preferred storage device. This converter can control the speed of an electric vehicle (EV) by using the SIMO is output voltage to regulate the vehicle is speed, allowing for higher accelerations and decelerations with minimal energy loss and degradation of the main battery pack. It can also be used to power electronic components such as LED lights, audio systems, and mobile charging etc. The energy recovered during regenerative braking is used to charge the battery via a buck/boost operation for varied speed transmission. In addition, simulation, modelling, and analysis are used to validate the proposed system. It is intended for a fixed voltage of 12 V and output voltages ranging from 12 to 48 V. The PSIM simulation tool is used to validate the system. The validation demonstrates the suggested converter is good evidence in both braking and regenerative braking operations.
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电动汽车四速自动变速器DC-DC变换器控制及再生制动仿真与模型研究
一种新颖的单输入多输出(SIMO)输出DC-DC变换器具有圆形电容器,旨在与一个独立的电源功能,以创建多个传输来调节速度在相同的开关间隔。设计了一种新型单输入多输出(SIMO)输出DC-DC变换器,采用圆形电容器与单个独立电源一起工作,以创建多个传输。所提出的变流器总共产生7个输出,其中4个输出同时产生用于使用优选源(燃料电池/电池)的正向操作(速度传输),3个其他不同的输出用于再生传输,其中电池是优选存储设备。该转换器可以通过使用SIMO的输出电压来调节车辆的速度,从而控制电动汽车(EV)的速度,从而在最小的能量损失和主电池组退化的情况下实现更高的加速和减速。它还可以用于为LED灯,音响系统和移动充电等电子元件供电。在再生制动期间回收的能量用于充电电池通过buck/boost操作变速传输。此外,还采用仿真、建模和分析来验证所提出的系统。适用于固定电压为12v,输出电压范围为12 ~ 48v。采用PSIM仿真工具对系统进行了验证。验证表明,所建议的转换器在制动和再生制动操作中都是良好的证据。
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