MISO-S1114
168.8 MW generation in Scott, IL · In queue since August 2025
168.8 MW
Capacity
0
Components
9 months
In Queue
—
IA Status
Total Duration
9 months
Interconnection request submitted to ISO/RTO
MISO uses the Definitive Planning Phase (DPP) process with 3 study phases.
Typical: 30–40 months (historical); 12 months target
Interconnection agreement not yet executed
Typical: 30–60 days (negotiation)
Commercial operation date not yet determined
Forward-looking exposure analytics for this queue project — climate hazards, expected generation variability, counterparty risk — into a single decision-grade view. Powered by InfraRisk.
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MISO-S1114 is a proposed solar generation project with a total capacity of 168.8 MW, located in Scott County, Illinois. The project is interconnected within the Midcontinent Independent System Operator (MISO) queue, having entered the queue on August 19, 2025. The point of interconnection is the Alsey Generation Station, and Ameren Illinois is the utility.
The project is currently listed as active in the MISO system impact study (SIS) queue. No developer is specified in the data.
Generated from interconnection queue and public data sources
State
IL
County
Scott
Grid Region
MISO (Midcontinent)
Market
ISO/RTO Member
Developer
—
Utility
AMEREN ILLINOIS
Entity
MISO
Service Type
SIS
Point of Interconnection
Alsey Generation Station
Data Source
Live · MISO
Forward-looking generation outlook for this queue project with probabilistic ranges across weather, demand, and policy scenarios. Powered by InfraSure's generation modeling stack.
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Forward revenue, DSCR bands, and refinancing risk for this queue project, projected under price, demand, and policy scenarios. Powered by InfraSure's asset cashflow stack.
See the full revenue + DSCR projection for this project.
- ISO / RTO
- MISO
- Trading Hub
- ILLINOIS.HUB
- Hub Confidence
- HIGH
- POI Substation
- Platte Generation Station
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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