Project PJM-AI2-188 — Project Summary

Queue ID
PJM-AI2-188
Capacity
246.25 MW
Technology
Solar+Battery
Status
active
Location
Hardy, WV
Region
PJM
Developer
IA Status
In Progress (unknown study)

PJM-AI2-188

PJM-AI2-188BetaActiveSolarBatteryPJMLBNL + Live

246.25 MW hybrid in Hardy, WV · In queue since March 2023 · Proposed COD March 2028

246.25 MW

Capacity

1

Components

Solar

3y 2m

In Queue

In Progress (unknown study)

IA Status

COD target: 2028

Interconnection

Total Duration

5 years

In Study38%
Queue EntryMar 1, 2023

Interconnection request submitted to ISO/RTO

System Impact StudyCurrent

PJM processes interconnection requests through multi-phase System Impact Studies (SIS).

Typical: ~48 months (historically longest)

Interconnection Agreement

Interconnection agreement not yet executed

Typical: 30–60 days (negotiation)

Commercial Operation

Proposed COD: 2028-03-15

About

PJM-AI2-188 is a proposed solar and battery hybrid project with a total capacity of 246.25 MW. The development is located in Hardy County, West Virginia, and is interconnected within the PJM Interconnection region, with Allegheny Power Systems (APS) as the utility. The project consists of 246.25 MW of solar generation, and also includes battery storage.

The project entered the PJM interconnection queue on March 1, 2023, and has a proposed commercial operation date of March 15, 2028. Its interconnection agreement status is listed as "In Progress (unknown study)". The point of interconnection is the Mt. Storm - Meadow Brook 500 kV line.

Generated from interconnection queue and public data sources

Project Details

State

WV

County

Hardy

Grid Region

PJM Interconnection

Market

ISO/RTO Member

Developer

Utility

APS

Entity

PJM

Service Type

Point of Interconnection

Mt. Storm - Meadow Brook 500 kV

Data Source

LBNL + Live

Market Context
Approximate
ISO / RTO
PJM
Trading Hub
AEP-DAYTON HUB
Hub Confidence
MEDIUM

This project's market context is estimated from its Point of Interconnection. Hub and node assignments are approximate and based on geographic inference from the POI substation name.

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