Project MISO-J1914 — Project Summary

Queue ID
MISO-J1914
Capacity
150 MW
Technology
Solar
Status
active
Location
Presque Isle, MI
Region
MISO
Developer
IA Status
Cluster Study

MISO-J1914

MISO-J1914BetaActiveSolarMISOLBNL + Live

150 MW generation in Presque Isle, MI · In queue since October 2023 · Proposed COD June 2026

BA: MISOISO/RTO: MISONERC: RFCRC: MISO

150 MW

Capacity

1

Components

Solar

2y 9m

In Queue

Cluster Study

IA Phase

Signed May 2025

Interconnection

Queue → IA

1y 7m

IA → COD

1y 1m

Total Duration

1y 7m

Schedule

1 months past proposed COD

Study Phase

DPP-2021 East (ITC)

Construction25%
Queue EntryOct 5, 2023

Interconnection request submitted to ISO/RTO

DPP Study

MISO uses the Definitive Planning Phase (DPP) process with 3 study phases.

Typical: 30–40 months (historical); 12 months target

Interconnection AgreementMay 5, 2025

Interconnection agreement executed — binding commitment to build

Typical: 30–60 days (negotiation)

ConstructionCurrent

Project under construction

Typical: 12–24 months

Commercial Operation

Proposed COD: 2026-06-01

About

MISO-J1914 is a proposed solar generation project with a total capacity of 150 MW, located in Presque Isle County, Michigan. The project is being developed within the Midcontinent Independent System Operator (MISO) region and interconnected with the Rockport-Port calcite 138kV Transmission line.

The project entered the MISO interconnection queue on October 5, 2023, with a proposed commercial operation date of November 1, 2023. Its interconnection status is currently in the Cluster Study phase. The utility involved is METC.

Generated from interconnection queue and public data sources

Development Risk

Realization risk before commercial operation — cluster-study clearance, IA timing, counterparty mix, and withdrawal probability vs cohort. The diligence view that determines whether this project is worth pursuing. Powered by InfraSure's development-stage modeling stack.

Available on the InfraSure platform

See the full development-risk decomposition for this project.

P(COD by stated date)
Withdrawal probability vs cohort
IA cluster risk
Project Details

State

MI

County

Presque Isle

Grid Region

MISO (Midcontinent)

Market

ISO/RTO Member

Developer

Utility

METC

Entity

MISO

Service Type

NRIS

Point of Interconnection

PORT CALCITE - ROCKPORT 138.0kV

Data Source

LBNL + Live

Risk Analytics

Composite operating-phase risk view — what this asset's risk profile would look like once it reaches commercial operation. Climate hazards across its operating life, expected generation variability, and offtake counterparty exposure, decomposed into a single decision-grade score. Powered by InfraRisk.

Available on the InfraSure platform

See the full risk decomposition + scenarios for this project.

Climate hazards (8+)
Generation variability (P10/P50/P90)
Offtake + transmission counterparty
Generation Forecast

Forward generation outlook — what this project would produce assuming it reaches commercial operation. Probabilistic ranges (P10/P50/P90) across weather, demand, and policy scenarios, conditioned on the proposed COD. Powered by InfraSure's generation modeling stack.

Available on the InfraSure platform

See the full forecast + scenario decomposition for this project.

P50 conditioned on COD
Capacity factor vs cohort
Weather + policy scenarios
Financial Forecast

Forward revenue, DSCR projection, and financing-close risk — conditioned on commercial operation. The bankability view that determines whether the deal clears its covenants once online. Powered by InfraSure's asset cashflow stack.

Available on the InfraSure platform

See the full revenue + DSCR projection for this project.

Revenue conditioned on COD
Financing close risk
Cohort DSCR comparison
Market Context
Approximate
ISO / RTO
MISO
Trading Hub
MICHIGAN.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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InfraSure platform

Forward forecasts, scenario decomposition, and risk-decision tooling for this queue project.