<p>This study introduces a new way to use q-MSZS DC–DC converters to make solar energy and electric vehicle charging more efficient. The growing use of solar panels and electric vehicles is putting a strain on the existing energy infrastructure, leading to grid overload and inefficiencies. To address this, we harness the unique properties of q-MSZS converters to improve the efficiency and flexibility of energy distribution systems. Our research focuses on the practical benefits of this technology, showing how it can support the widespread adoption of solar energy and electric vehicles in homes and communities. Experimental results demonstrate the converter's ability to boost energy inputs, highlighting its potential in creating more efficient and flexible energy systems. We emphasize the advantages of transitioning to q-MSZS-based systems, which offer greater efficiency and flexibility compared to traditional energy infrastructure. This research opens new possibilities for sustainable energy integration, empowering stakeholders to harness the full potential of solar energy and electric vehicles in creating a greener, more resilient energy future.</p>

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Optimizing residential energy systems: a comprehensive study of quasi-modified switched Z-source DC–DC converters with MPPT and storage integration

  • Anish Tiwari,
  • Anandita Chowdhury

摘要

This study introduces a new way to use q-MSZS DC–DC converters to make solar energy and electric vehicle charging more efficient. The growing use of solar panels and electric vehicles is putting a strain on the existing energy infrastructure, leading to grid overload and inefficiencies. To address this, we harness the unique properties of q-MSZS converters to improve the efficiency and flexibility of energy distribution systems. Our research focuses on the practical benefits of this technology, showing how it can support the widespread adoption of solar energy and electric vehicles in homes and communities. Experimental results demonstrate the converter's ability to boost energy inputs, highlighting its potential in creating more efficient and flexible energy systems. We emphasize the advantages of transitioning to q-MSZS-based systems, which offer greater efficiency and flexibility compared to traditional energy infrastructure. This research opens new possibilities for sustainable energy integration, empowering stakeholders to harness the full potential of solar energy and electric vehicles in creating a greener, more resilient energy future.