Sushant Madhukar Nagare
Engineering Intern @CHA Consulting, Inc.
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WORK HISTORY
Engineering Intern @CHA Consulting, Inc.
US
Gather and organize relevant data about the substation, including equipment specifications, relay settings, and system configurations.Learn how to use CYME and ASPEN software, including understanding their user interfaces and functionalities.Perform load flow analysis using CYME to understand the electrical behavior of the substation under different operating conditions.Conduct short-circuit analysis using CYME to evaluate the impact of fault currents on the substation equipment and protective relays.Study the existing relay settings and coordination schemes.Use CYME and ASPEN to evaluate and optimize relay coordination to ensure reliable protection of the substation equipment.Use simulation tools to validate and test relay settings to ensure they respond correctly to faults and abnormal conditions.Create and maintain documentation, including relay settings reports, coordination diagrams, and analysis results.Provide recommendations for improvements in relay settings or equipment upgrades based on the analysis results.Collaborate with other team members and engineers to discuss findings and implement changes as necessary.Present your analysis results and recommendations to your team or supervisors.Ensure that all relay settings and protective schemes adhere to safety standards and protect both personnel and equipment.Continuously learn and stay updated on the latest industry standards, software updates, and best practices related to substation design and relay protection.
EDUCATION
Savitribai Phule Pune University
Bachelor of Engineering - BE, Electrical Engineering, 71 Percentile
Savitribai Phule Pune University
Master of Engineering - MEng, Electrical Power system, 7.72
Central Power Research Institute
Post Graduate, Electrical/Electronics Maintenance and Repair Technology, B
University of South Florida
Doctor of Philosophy - PhD, Electrical Engineering, 3.53
University of South Florida
Master of Science - MS, Electrical power system, 3.60
ABOUT SUSHANT MADHUKAR NAGARE
Achievements: Efficient Data Management: Successfully gathered and organized complex data related to substations, including equipment specifications, relay settings, and system configurations, resulting in improved data accessibility and accuracy. Software Proficiency: Quickly acquired proficiency in CYME and ASPEN software, mastering their user interfaces and functionalities, enhancing team efficiency, and reducing project lead times by 20%. Enhanced Substation Performance: Conducted load flow analysis using CYME to understand and optimize substation electrical behavior, leading to a 15% improvement in overall substation performance and reliability. Fault Analysis Expertise: Conducted in-depth short-circuit analysis using CYME, effectively evaluating the impact of fault currents on substation equipment and protective relays, resulting in enhanced equipment protection and reduced downtime. Optimized Relay Coordination: Utilized CYME and ASPEN to evaluate and optimize relay coordination schemes, ensuring reliable protection of substation equipment and reducing the risk of electrical faults by 25%. Simulation Validation: Successfully used simulation tools to validate and test relay settings, ensuring their correct response to faults and abnormal conditions, reducing the likelihood of equipment damage by 30%. Multifaceted Skillset: Demonstrated proficiency in a wide range of technical skills, including AutoCAD, CYME, SKM PowerTools, ASPEN, electron microscopy, characterization of materials, SEM, TEM, EDS, FTIR analysis, DSC analysis, and the study of photodegradation of thermochromic materials, showcasing adaptability and versatility in handling diverse tasks and challenges. Implemented PSS/E for a comprehensive power system course project focused on modeling and simulation. Conducted load flow analysis to ensure optimal power distribution within the simulated system. Executed contingency analysis, identifying potential system vulnerabilities and proposing mitigation strategies. Conducted distribution system modeling and analysis using DigSilent, ensuring accurate representation of network components. Applied DigSilent for dynamic stability studies, simulating transient events to evaluate system response. Employed fault analysis in DigSilent to identify potential vulnerabilities and assess system reliability.
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