Solance turns satellite and aerial imagery into an independent, continuously updated inventory of distributed solar, reconciled against the utility's own registry, mapped to the network, and routed to reviewers.
Every detection colour-coded by registry-match status across the service territory.
Distribution utilities are increasingly blind to rooftop solar that never reached their registration or net-metering records: "dark solar." Unseen, it becomes a compliance risk, a safety risk, and a growing gap in hosting-capacity planning.
One reconciled inventory, surfaced through the workflows utilities, planners, and analysts actually use.
Explore every detected rooftop PV installation and how it has changed over time, then click any one to see its full case detail.
Installations with no registry match are flagged, prioritized, and moved through a full case-management workflow, with every state change logged.
See how clusters of distributed solar load transformers and feeders, so planners aren't caught off guard by secondary-transformer overload.
Verified solar adoption rolls up into clean, utility-ready sustainability and ESG reporting: existing versus newly observed, broken down by area.
A roughly 17× rise in residential rooftop solar is a clean-energy win, but an operational hazard when unregistered "dark" solar overloads secondary transformers. Solance surfaces that hidden load, tied to the exact transformer and feeder, before it becomes a fault.
Commercial solar is booming, yet vast megawatt potential still sits idle on unutilized rooftops. An independent, current inventory gives LGUs, city planning, and developers the evidence base for policy, tax and green incentives, and hosting-capacity decisions.
Detecting irregular, small-scale tropical rooftop structures, down to roughly 0.7 m², is exactly where off-the-shelf automated models fall short. Solance is built on hand-verified, high-precision training data, so detections hold up to utility scrutiny.