The volume features peer‑reviewed proceedings from the 6th International Conference on Recent Developments in Control, Automation, Power Engineering (RDCAPE 2025). It presents recent advances, emerging technologies, and research developments in modern power and energy systems. The volume addresses the transformation of conventional power networks into cleaner, smarter, more flexible, reliable, and sustainable infrastructures. The book focuses on modern power generation, renewable energy integration, electric vehicles and EV–grid interaction, photovoltaic systems, wind energy, automatic generation control, and smart grids. The book also explores challenges associated with high penetration of renewables and EVs, including grid stability, reliability, flexibility, frequency control, and efficient energy management. The book highlights pathways toward sustainable energy systems and resilient power infrastructures. It serves as a valuable reference for postgraduate students, doctoral researchers, academicians, and practicing engineers, offering guidance on current developments, emerging research opportunities, and innovative approaches for designing efficient, reliable, and sustainable power systems.
The volume features peer‑reviewed proceedings from the 6th International Conference on Recent Developments in Control, Automation, Power Engineering (RDCAPE 2025). It presents recent advances, emerging technologies, and research developments in modern power and energy systems. The volume addresses the transformation of conventional power networks into cleaner, smarter, more flexible, reliable, and sustainable infrastructures. The book focuses on modern power generation, renewable energy integration, electric vehicles and EV–grid interaction, photovoltaic systems, wind energy, automatic generation control, and smart grids. The book also explores challenges associated with high penetration of renewables and EVs, including grid stability, reliability, flexibility, frequency control, and efficient energy management. The book highlights pathways toward sustainable energy systems and resilient power infrastructures. It serves as a valuable reference for postgraduate students, doctoral researchers, academicians, and practicing engineers, offering guidance on current developments, emerging research opportunities, and innovative approaches for designing efficient, reliable, and sustainable power systems.
Sanjay Kumar Sinha
Power System Analysis Power System Control Renewable Energy Power Quality Power System Modeling Grid Stability and Reliability Load Flow Analysis Smart Grid Technologies Power System Optimization Fault Diagnosis and Management Renewable Energy Systems Sustainable Power Systems Decarbonization of Power Systems Green Energy Technologies SCADA Systems