Enterprise-grade microgrid solutions that integrate renewables, storage, and AI-driven energy management for uninterrupted, sustainable, and resilient operations.
A microgrid is a self-contained energy ecosystem that generates, stores, and distributes power locally. Designed to operate seamlessly with or without the main grid, it delivers unmatched resilience, cost efficiency, and carbon reduction for critical infrastructure and commercial campuses.
Core Capabilities:
Dynamic Topology: Source → Storage → EMS → Load
Seamless islanding during grid failures ensures 99.99% uptime for critical operations and life-safety systems.
Machine learning algorithms predict demand, optimize dispatch, and reduce peak demand charges by up to 40%.
Native compatibility with solar PV, wind, fuel cells, and thermal generation for diversified, clean power mixes.
IEC 62351 compliant control layer with end-to-end encryption, role-based access, and continuous threat monitoring.
Start small and scale up. Pre-engineered containerized units allow rapid deployment from 50kW to 10MW+.
Real-time emissions monitoring and automated ESG reporting aligned with GHG Protocol and ISO 14064 standards.
Load profiling, site survey, and energy audit to determine optimal capacity and topology.
Deployment of generation assets, battery storage, and grid-interactive converters.
Installation of the Verdantix EMS with AI dispatch, protection relays, and monitoring.
Continuous remote management, predictive maintenance, and performance tuning.
Uninterrupted power for ICU, surgery, and life-support systems. Meets strict NEC & NFPA 110 compliance standards.
99.999% UptimePeak shaving, demand response, and stable voltage regulation for sensitive production lines and HVAC.
40% Peak ReductionDistributed generation across dorms, labs, and sports facilities with shared storage and smart routing.
Multi-Node MeshSelf-sustaining power for mining, telecom, and research stations without diesel dependency.
100% Renewable ReadyEnterprise-ready hardware and software stack designed for utility-scale and commercial deployments.
| Parameter | Specification |
|---|---|
| Capacity Range | 50 kW – 10+ MW (Modular) |
| Compliance | IEEE 1547-2018, UL 1741 SA, NEC 705/690 |
| Control Architecture | Centralized EMS + Distributed DERMs |
| Communication | 4G/5G, Fiber, LoRaWAN, MQTT, Modbus TCP |
| Response Time | <16ms (Sub-cycle protection) |
| Storage Integration | Li-ion, LFP, Flow, Second-Life Batteries |
| API & Interoperability | Open API, SunSpec, IEC 61850, CIM/IEC 61970 |
| Warranty | 10 Years Hardware / 15 Years EMS Support |
Standard commercial deployments (100kW-2MW) typically take 8-16 weeks from engineering sign-off to commissioning. Larger utility-scale or complex hybrid projects may require 4-8 months depending on permitting and site preparation.
Yes. Our systems support full island mode with black-start capability. With properly sized storage and generation assets, facilities can operate autonomously for days or weeks, depending on load profile and resource availability.
Hardware requires minimal routine maintenance. Our EMS continuously monitors battery health, inverter efficiency, and thermal performance. Predictive maintenance alerts reduce downtime by up to 70%.
Absolutely. Verdantix controllers support legacy and modern inverters through open protocols (Modbus, SunSpec, IEC 61850). We can retrofit existing systems with our EMS for immediate optimization.
The platform integrates with utility DR programs. During peak events, the EMS automatically shifts load to storage or curtails non-critical usage, generating revenue while maintaining operational stability.
Our engineering team will conduct a preliminary feasibility study and ROI analysis tailored to your facility. No commitment required.