Engineering Excellence

We Don't Just Consult. We Engineer Certainty.

Owner's Engineer and power-system advisory across the entire project lifecycle — from pre-deal screening through decades of operation.

50+

Years Combined Experience

GW-Scale

Power Systems Designed

Global

Project Delivery

IDCA

SDS Certified

Project Lifecycle Services

Owner's Engineer Across the Entire Lifecycle

From the first interconnection screening through decades of operation — we stay with your project at every phase.

Phase 01–03

Pre-Deal

  • Grid Disturbance Screening
  • Mitigation Architecture
  • EMT Validation — Screening
Phase 04–05

Engineering Design

  • Detailed Power System Studies (PSCAD & SSR/SSO)
  • Controls, Protection & Design Basis
Phase 06

Commissioning & Start-Up

  • FAT/SAT & Performance Testing
  • Energization Sequence & Owner Handover
Phase 07

Post-Energization

  • Maintenance & RME Support
  • Performance Optimization (ELIOS™)
  • Capacity Expansion Studies

Our Services

Pre-Deal

Our Grid Disturbance Screening service provides the critical analysis needed before capital is committed. We evaluate grid stiffness, interconnection feasibility, and power availability to frame go/no-go investment decisions with engineering certainty — not assumptions.

Core Capabilities

Ranked interconnection and power-risk register (PowerForge™), deal-impact flags
Go/no-go framing and decision gates
Investment-grade TDD and Independent Engineer reporting
Interconnection feasibility and POI viability
Available and planned generation to serve the load
Schedule drivers and utility timelines vs. execution benchmarks
System availability and RAM screening
AI Data CentersHyperscaleIPPColocationBehind-the-Meter
Discuss Your Project

Once risks are identified, we develop the mitigation architecture that neutralizes them. From hybrid BTM/islanded generation design to vendor-neutral technology assessments and disturbance-exposure overlays, we size and specify the systems that keep your facility running under every scenario.

Core Capabilities

Initial power architecture development and screening
BTM, hybrid, and islanded generation architecture
Utility-served vs. islanded/hybrid architecture comparison
Vendor-neutral technology assessment
Disturbance-exposure and sensitivity overlays (load ramp, N-1, SCR)
Mitigation sizing and specification to SLA requirements
Architecture validation against interconnection requirements
Architecture Basis Report and preliminary equipment sizing
AI Data CentersHyperscaleMicrogridsIndustrialRenewables
Discuss Your Project

We validate your power architecture with physics-based electromagnetic transient modeling before a single dollar is spent on equipment. Our PSCAD/EMT screening creates the digital twin foundation and validates performance under real-world disturbance scenarios — giving you engineering certainty, not vendor promises.

Core Capabilities

Project-specific PSCAD/EMT model development (digital twin foundation)
Grid stiffness and AI load profile sensitivity (SCR range)
AI load smoothing and power management validation
Voltage ride-through: ITIC, LVRT, and LFRT compliance
Off-grid: black start, loss of BESS, generator, and load scenarios
Short-circuit (LG and LLLG at LV, MV, HV) for ride-through and stability
Torque/resonance capture and power quality analysis
Validated PSCAD package for OEM and utility submission
AI Data CentersHyperscaleIPPUtilitiesBehind-the-Meter
Discuss Your Project
Engineering Design

After the deal is signed, we execute the detailed power system studies that validate and refine the committed design. From subsynchronous resonance to cascading load-rejection analysis, these studies ensure your system performs as designed under every operating condition.

Core Capabilities

Subsynchronous resonance and oscillation (SSR/SSO) study
Torsional natural frequency (TNF) and participation-factor analysis
Grounding analysis and NGR sizing; SLG temporary overvoltage (TOV) on sound phases
Load-rejection TOV, switching transients, ferro-resonance, surge-arrester duty, and BIL margins
Frequency nadir, ROCOF, and under-frequency load-shedding (UFLS) coordination
Cascading load-rejection and over-frequency sequence analysis
Downstream UPS ride-through coordination
C-HIL/PHIL testing with communication-latency characterization
AI Data CentersHyperscaleIPPUtilitiesNuclear
Discuss Your Project

We develop the controls and protection philosophy that governs how your power system behaves — from normal operation through every contingency. This work defines the control architecture, PPC functional design, and operational scenarios before a single relay is programmed.

Core Capabilities

Control and protection philosophy development
Control architecture development
Power Plant Controller (PPC) Functional Design Specification (FDS)
Operational scenario definition (island, black start, resync, contingency)
Controller platform definition and EMS/PPC control hierarchy
C-HIL/RTDS test planning (RTDS Labs partner)
AI Data CentersHyperscaleIPPMicrogridsIndustrial
Discuss Your Project
Commissioning & Start-Up

We serve as your Owner's representative across vendor, EPC, and utility scope during the most critical phase — energization. From factory acceptance testing through AI load-simulation performance testing, we ensure the system delivered matches the system designed.

Core Capabilities

Owner's representative across vendor, EPC, and utility scope
Commissioning schedule, sequencing, and resource loading
FAT and NETA site acceptance testing; pre-energization readiness
EMT/PSCAD commissioning-case pre-validation (energization gate)
AI load-simulation performance testing and commissioning
IEEE 2030.7/2030.8 and ITIC/CBEMA validation
Empirical validation of PSCAD, SSR/SSO, and RAM vs. installed performance
Energization sequence planning and Owner handover
AI Data CentersHyperscaleIPPUtilitiesIndustrial
Discuss Your Project
Post-Energization

After energization, we remain engaged with ongoing reliability engineering, condition-based monitoring, and performance optimization. Your digital twin stays calibrated, protection settings stay current, and your system operates at peak efficiency throughout its lifecycle.

Core Capabilities

Maintenance planning
Condition-based monitoring (CBM) and predictive maintenance
Availability and reliability monitoring (RAM baseline)
Reliability engineering (RME) support
Protection setting management and periodic audits
Controls and EMT-model re-tuning (digital-twin upkeep)
Performance optimization and dispatch tuning (ELIOS™)
Spares strategy and obsolescence planning
Capacity expansion and re-power studies
AI Data CentersHyperscaleIPPUtilitiesIndustrial
Discuss Your Project

Throughout Every Phase

Continuous Across the Lifecycle

These commitments span every engagement — independent of EPC, OEM, and developer — from the first screening through years of operation.

🛡️

Owner's Engineer

Independent representation across all phases — your interests, not the vendor's.

📐

IEEE & ANSI Alignment

IEEE 2030.7/2030.8, ANSI, IEEE 1547, and interconnection compliance built into every engagement.

🔌

Protection & Interconnection

Protection philosophy and interconnection compliance validated at every stage.

Safety Governance

Arc-flash, LOTO, and hold-point safety governance embedded in every deliverable.

🔬

Digital Twin Lifecycle

PSCAD/EMT model development, calibration, and lifecycle upkeep from screening through operations.

📊

Risk Register Tracking

RED/YELLOW/GREEN risk tracking and PowerForge™ visibility across all phases.

🤝

Multi-Party Coordination

Utility, EPC, OEM, and controls-vendor coordination managed on your behalf.

Proprietary Frameworks
PowerForge™·VoltageVanguard™·ELIOS™

Every Facility Is Unique.

We understand that every customer faces unique challenges. If you need a service or custom solution that isn't listed, contact us. We specialize in creating tailored solutions for your specific needs.