Project SOCO-IC-926 — Project Summary

Queue ID
SOCO-IC-926
Capacity
80 MW
Technology
Solar+Battery
Status
active
Location
Montgomery, AL
Region
Southeast
Developer
IA Status
IA Executed

SOCO-IC-926

SOCO-IC-926BetaActiveSolarBatterySOCOLBNL

80 MW hybrid in Montgomery, AL · In queue since December 2020 · Proposed COD June 2025

80 MW

Capacity

1

Components

Solar

5y 5m

In Queue

IA Executed

IA Status

COD target: 2025

Interconnection

Total Duration

4y 6m

Schedule

11 months past proposed COD

Construction75%
Queue EntryDec 16, 2020

Interconnection request submitted to ISO/RTO

Interconnection Study

Project undergoes interconnection studies to assess grid impact.

Typical: 18–36 months

Interconnection Agreement

Interconnection agreement executed — binding commitment to build

Typical: 30–60 days (negotiation)

ConstructionCurrent

Project under construction

Typical: 18–30 months

Commercial Operation

Proposed COD: 2025-06-15

About

The proposed SOCO-IC-926 project is an 80 MW solar and battery hybrid development in Montgomery County, Alabama. The project consists of 80 MW of solar generation. It is located in the Southeast region and is being developed within the Southern Company (SOCO) service area.

The project is currently active in the SOCO interconnection queue, with an interconnection queue entry date of December 16, 2020. The proposed commercial operation date is June 15, 2025, and the interconnection agreement has been executed. The point of interconnection is the Montgomery SS - Snowdoun 230 kV Line.

Generated from interconnection queue and public data sources

Project Details

State

AL

County

Montgomery

Grid Region

Southeast

Market

Developer

Utility

Southern Company

Entity

SOCO

Service Type

Point of Interconnection

Montgomery SS - Snowdoun 230 kV Line

Data Source

LBNL

Market Context
Approximate
ISO / RTO
SOUTHEAST
Trading Hub
Southern Company
Hub Confidence
UNKNOWN

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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