Abstract
Extreme environmental and human life issues such as global warming, air pollution and the rapid loss of oil resources in the planet are caused by the vast number of cars used. To overcome these issues traditional vehicles have been replaced by the Electric vehicles (EVs). To communicate the elements in the E-Vehicle DC-DC converters are used, by increasing or decreasing the input voltage levels. In order to efficiently reduce the quantity of electronic components to get different output voltages, Single-input Multiple-output DC-DC converters have been developed, also reduces cost. The SingleInput Multi-Output(SIMO) dc-dc converter delivers various levels of output voltage required by the load from a single source of dc input voltage. There are many SIMO topologies were evolved. In order to achieve the above limitations, in this project our work is to model a Single-Input Multiple-Outputs Boost converter. The suggested converter would uplift the voltage to a controllable middle voltage and high voltage dc output from a low voltage input power source. To validate the proposed topology for real time applications, the proposed converter is simulated in the MATLAB application.
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