We successfully executed electrical commissioning for the Suncor MCC E-House project in Fort McMurray, delivering a fully integrated and operational power system in a complex oil sands environment.
Our team led the commissioning of MCCs and E-House systems, ensuring seamless integration with existing infrastructure and reliable power distribution across critical operations. Through rigorous protection verification and system testing, we validated performance, safeguarded equipment, and ensured compliance with operational and safety standards.
We performed comprehensive loop checks and control system validation, enabling precise communication between field instrumentation and control systems, and ensuring readiness for start-up.
From pre-commissioning through energization and start-up, we provided hands-on support to deliver a smooth, efficient transition to operations—minimizing risk, reducing downtime, and ensuring long-term system reliability in one of Canada’s most demanding industrial environments.
Seattle Airport PLC Integration
Specialized controls engineering for an airport PLC system in Seattle, providing reliable and scalable automation solutions tailored to critical infrastructure environments.
Our team developed and implemented advanced PLC programming and control logic, ensuring precise, efficient, and dependable system operation. We designed and built custom control panels, integrating all required I/O and hardware to support seamless system functionality.
Through comprehensive system integration, we enabled effective communication between field devices, control systems, and airport operations, enhancing overall performance and responsiveness.
From detailed engineering through commissioning, we conducted thorough I/O verification, system testing, and start-up support, ensuring a smooth deployment and minimal operational disruption. The result was a robust, high-performance control system built for reliability in a mission-critical airport environment.
$70M Gas Plant North Dakota
We delivered end-to-end electrical and controls engineering for a major Oil Storage Facility in North Dakota, providing complete power system design, automation, and hazardous area solutions tailored to demanding oil & gas environments.
Our team designed and implemented robust power distribution systems, including MCCs, protection schemes, and equipment sizing, ensuring safe, reliable, and code-compliant operations from day one. Through proactive utility coordination, we streamlined interconnection and energization, minimizing delays and keeping the project on schedule.
By integrating advanced PLC and SCADA systems, we enabled real-time monitoring, seamless control, and improved operational visibility across the facility. Our expertise in hazardous area design ensured full compliance while maintaining efficiency and performance.
From engineering through commissioning, we supported every phase—testing, validation, and start-up—delivering a smooth transition to operations and a system built for long-term reliability, safety, and performance.
MEG Energy Pilot Plant & 95MW Power Plant
Delivered $2.1M in capital savings by auditing EPC engineering design and establishing a fit-for-purpose solution for a SAGD Pilot Plant.
Accelerated project schedule by one month through successful pre-commissioning and commissioning of a 240kV substation ahead of EPC projections.
Developed a comprehensive 25kV Distribution System Plan, enabling MEG to independently construct and operate its distribution network without interference from the incumbent utility provider.
Successfully synchronized a 90MW GE Frame 7 generator and achieved commercial operation through accurate SCADA reporting (including MW), completion of required studies, and full WECC test documentation submitted to AESO.
Provided advanced operational power system studies, including Power System Stabilizer validation to confirm WECC modeling compliance.
Enhanced system safety and reliability by preparing detailed Arc-Flash assessments and developing integrated switching procedures to mitigate arc-flash hazard risks.
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