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synefra·14 months ago

Power Systems Lead -Design & Engineering

Pune, IndiaFull-timeSenior · 6-10 years

About this role

  • Lead design & development of HV/MV/LV (220/66/33/11kV) Power Electrical systems from concept to production (In-house/outsourced).
  • Formulate System requirements for Transformers, Switch yards, Converters/rectifiers, control systems
  • Design & development of Power distribution network within boundaries of GF plant. 
  • Application of relevant reference standards for all in-house & outsourced systems e.g., IEC/IEEE/UL/CE/Grid Codes 
  • Create and review single Line Diagrams and or Orthographic Diagrams for systems & sub-systems  
  • Create & review requirements for Software, SCADA system  
  • Guide/mentor Simulation team to review the results obtained from various campaigns & design data
  • Device operational safety & safety risk assessment of Power systems  
  • Create design requirement document Develop concept design and BOQ for techno-economic analysis
  • Design and detailed Engineering of Electrical substation and transmission line, power distribution network including AC and DC.
  • Electrical system study -Load flow study, power consumption, insulation coordination, protection & Automation system, communication system, power quality measurement, wind & solar park generator grid inter connection etc.
  • Design calculations, Electrical component selection & sizing calculation for transmission line, substation and AC /DC distribution system
  • Intime Technical support service to Project, OMS, SCM and marketing
  • Understand & apply Statutory and regulatory requirements and design approval from utilities and customers. 
  • Conduct & review Fatigue Analysis of Electrical Components.
  • Explore power electronics hardware and software to enable efficient power conversion from renewable sources to electrolyzes.
  • Optimizing power conversion in the distribution system between the renewable source and Electrolyser.
  • Develop new electrical architectures to enable efficient and balanced coupling between renewable sources and electrolyzes.
  • Developing cost reduction pathways for power conversion based on deep technical understanding and competitive intelligence from major Original Equipment Manufacturers.
  • Application of National Grid Codes and compliance verification process with Transmission System Operator and Distribution System Operator.
  • Technology development for powering GW scale electrolysis.
  • Ability to perform front-end engineering studies covering the following aspects of electrical system design: HV Cable sizing calculations
  • Reactive power simulation
  • (Steady state) load flow simulations
  • Short circuit current simulation
  • Insulation coordination
  • Control and protection study
  • EM-field and Influence study