Substation Automation & SCADA Integration
Designing and implementing advanced IEC 61850-based substation automation and control systems for reliable grid operations.
We deliver end-to-end engineering, commissioning, and advisory services designed for scale, efficiency, and long-term sustainability across critical infrastructure projects.
Designing and implementing advanced IEC 61850-based substation automation and control systems for reliable grid operations.
Upgrading legacy RTUs and integrating intelligent control systems to enhance monitoring, performance, and communication efficiency.
Providing end-to-end technical services for power generation facilities — from design and installation to commissioning and maintenance.
Building robust telecom and data transmission networks to support power and industrial communication systems.
Implementing scalable metering systems for accurate data collection, analytics, and efficient energy distribution.
Delivering complete EPC and integration support with a focus on quality, safety, and timely project execution.
Independent specialist advisory on LCC and VSC HVDC schemes, including technology selection, project strategy, and risk review.
Detailed design review and assurance for HVDC control & protection systems, ensuring robustness and compliance with utility standards.
Gap analysis and compliance checks against technical specifications, grid codes, and OEM documentation for HVDC projects.
Independent witnessing of factory acceptance tests for control and protection systems to verify functionality and quality.
Expertise in control system development, tuning, and application to complex power grid environments and interconnections.
Development and application of protection systems specifically tailored to HVDC schemes and converter stations.
Development of detailed PSCAD / RSCAD models and studies to support planning, design, and validation of HVDC projects.
Early-stage conceptual and feasibility studies evaluating HVDC options, routes, configurations, and integration strategies.
Analysis of HVDC interactions with AC networks, nearby plants, and existing infrastructure to ensure stable operation.
Conversion of AC network data into PSCAD / RSCAD models, enabling accurate simulation and advanced system studies.
Tailored HVDC training programs for operators, engineers, and project teams, focused on control, protection, and operation.