<p>The global surge in Electric Vehicle (EV) popularity has ignited a transformative wave in energy innovation, propelling the exploration of renewable energy sources for sustainable EV charging solutions. This study ventures into the forefront of eco-conscious transportation technologies by investigating the seamless integration of photovoltaic (PV) systems. Against the backdrop of mounting environmental concerns and the imperative to reduce carbon footprints, this research pioneers cutting-edge strategies in PV-based EV charging, redefining the landscape of green mobility. An innovative Triple-Stage Interleaved Zeta (TSIZ) converter takes the centre stage in this research, engineered meticulously to enhance PV voltage. To ensure precise converter control a sophisticated Proportional-Integral (PI) controller optimized by the intricate mating behaviour of Satin Bowerbirds is introduced, enhancing the precision of converter control. This meticulous approach results in perfect grid synchronization and minimizes the impact of EV charging system on grid. To validate the effectiveness of proposed system, extensive simulations were conducted using MATLAB Simulink platform. The comparative analysis reveals the superior performance of system validating converter efficiency of 98.14% with reduced Total Harmonic Distortion (THD) of 1.54%, emphasizing its potential to revolutionize EV charging infrastructure with eco-friendly PV integration.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Triple-Stage interleaved zeta converter for PV-Powered EV charging with Bio-Inspired controller optimization

  • M. Ganga,
  • B. Kavya Santhoshi,
  • Bapayya Naidu Kommula,
  • Gurulakshmi AB

摘要

The global surge in Electric Vehicle (EV) popularity has ignited a transformative wave in energy innovation, propelling the exploration of renewable energy sources for sustainable EV charging solutions. This study ventures into the forefront of eco-conscious transportation technologies by investigating the seamless integration of photovoltaic (PV) systems. Against the backdrop of mounting environmental concerns and the imperative to reduce carbon footprints, this research pioneers cutting-edge strategies in PV-based EV charging, redefining the landscape of green mobility. An innovative Triple-Stage Interleaved Zeta (TSIZ) converter takes the centre stage in this research, engineered meticulously to enhance PV voltage. To ensure precise converter control a sophisticated Proportional-Integral (PI) controller optimized by the intricate mating behaviour of Satin Bowerbirds is introduced, enhancing the precision of converter control. This meticulous approach results in perfect grid synchronization and minimizes the impact of EV charging system on grid. To validate the effectiveness of proposed system, extensive simulations were conducted using MATLAB Simulink platform. The comparative analysis reveals the superior performance of system validating converter efficiency of 98.14% with reduced Total Harmonic Distortion (THD) of 1.54%, emphasizing its potential to revolutionize EV charging infrastructure with eco-friendly PV integration.