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LSC/MSC Engineer
L&T Technology Services. Develop and refine grid-forming control strategies, including VSM-type control, droop control, and voltage-forming algorithms.
Core Competencies
Role fitCore Competencies
Use this summary to align your resume positioning with the role.
Demonstrates expertise in power electronics and grid-connected converter control, with a strong focus on grid-forming and grid-following strategies. Proficient in MATLAB/Simulink for modeling and validating control algorithms in renewable energy applications.
Highest-signal resume keywords
Power Electronics ExpertiseGrid-Connected Converter ControlMATLAB/Simulink ProficiencyHIL/CHIL Real-Time TestingGrid-Code Compliance Knowledge
ATS Keywords
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Hard Skills
Grid-Forming Control StrategiesVoltage-Forming AlgorithmsCurrent RegulationSmall-Signal Stability AnalysisImpedance-Based AssessmentsHarmonic StudiesTransient SimulationsAdaptive Current ControlDamping AlgorithmsControl Algorithm Validation
Soft Skills
CollaborationTroubleshootingParameter TuningDocumentation Preparation
Tools & Technologies
MATLAB/SimulinkTyphoon HILDSPACEOPAL-RTRTDS
Industry Keywords
Renewable Energy IntegrationWeak-Grid DynamicsGrid-Code-Related Control FunctionsConverter-Grid InteractionVoltage-Forming Control Structures
About the role
Key responsibilities & impact- Develop and refine grid-forming control strategies, including VSM-type control, droop control, and voltage-forming algorithms.
- Design grid-following control loops for active/reactive power control, current regulation, and sequence-component-based controllers.
- Ensure converter stability and robustness under weak-grid conditions, disturbances, and low short-circuit-ratio operation.
- Develop and validate advanced PLL architectures for disturbed or weak grids.
- Build and maintain converter, network, and controller models in MATLAB/Simulink.
- Conduct small-signal stability analysis, impedance-based assessments, harmonic studies, and transient simulations.
- Use MIL/SIL/HIL workflows for model-to-implementation accuracy and system-level optimization.
- Validate control algorithms using Typhoon HIL, dSPACE, OPAL-RT, or RTDS.
- Reproduce grid-disturbance scenarios, including islanding, fault ride-through, harmonic distortions, frequency deviations, and resonance issues.
- Analyze converter-grid interactions, resonance behavior, and control-loop sensitivity under weak-grid conditions.
- Develop mitigation strategies including adaptive current control, virtual impedance, damping algorithms, and enhanced synchronization filters.
- Collaborate with electrical, software, and system-engineering teams on grid-converter interfaces.
- Support commissioning, troubleshooting, parameter tuning, and compliance-driven testing.
- Prepare documentation, simulation reports, stability assessments, and validation packages for stakeholders.
Requirements
What you’ll need- Strong background in power electronics, grid-connected converters, and renewable-energy integration.
- Expertise in grid-forming and grid-following control concepts, including dq0-based current control and voltage-forming control structures.
- Proficiency in MATLAB/Simulink, model-based development, and converter-grid interaction modelling.
- Experience using HIL/CHIL platforms for real-time testing, including dSPACE, RTDS, Typhoon HIL, or OPAL-RT.
- Solid understanding of PLL systems, harmonic behavior, weak-grid dynamics, and grid-code-related control functions.
- Minimum 3 years of industry experience in converter control, power electronics, or grid-integration engineering.