Commercial Projects
IG optimizes renewable energy economics for retail, office, and commercial customers.
Testimonial or info on how we can help RE customers.
- theMart

Abt Electronics
Type: Retail Microgrid
Size: 508 kW solar PV, 500 kW storage
IG signed a long-term contract with Chicagoland’s premier retailer Abt Electronics to maximize bill reductions and wholesale market revenues from energy management services. The distributed resources include existing backup Title V EPA compliant generators, a 508 kW Solar rooftop array and a 500 kW TESLA PowerPack battery. The resources are connected in a double-microgrid configuration that enables independent power continuity to the retail floor and Abt’s server backroom operation.

theMart
Type: Commercial Real Estate
Size: 280 kWh battery
The owner’s decision to switch to IG was based on IG’s deep understanding of market rules and a best in class POWR:Suite value stack and optimization engine. IG will generate revenue for theMART in the grid stability market while also reducing their electrical bill during peak hours when the grid is under stress.

Patel Brothers
Type: Grocery
Size: 320 kW solar, 560 kWh battery storage
The 320 kW solar system, already in operation, will be complemented in the first quarter of 2021 by a 560 kWh NEC battery system already contracted to IG. The innovative electrical arrangement allows Patel Brothers to immediately participate in the wholesale market for grid stability services, but also to quickly reconfigure to prioritize backup power and bill savings when the grid conditions deteriorate.

Continental Electric Construction Company
Type: Office
Size: 50 kW solar pV, 100 kW storage
The Continental building exemplifies cutting edge conservation practices: Intelligent Solar software directs a battery and PV system to maximize energy savings and provide back-up power. The project utilizes IG's software to participate in wholesale power markets and reduce electricity costs through an efficient network service. It enables CECCO to manage its electricity demand and capacity charges by utilizing the onsite battery during peak demand times.