PacifiCorp-PIS044
600 MW hybrid in Morrow, OR · In queue since June 2023 · Proposed COD December 2026
600 MW
Capacity
1
Components
Solar
2y 11m
In Queue
In Progress (unknown study)
IA Status
COD target: 2026
Total Duration
3y 6m
Interconnection request submitted to ISO/RTO
Project undergoes interconnection studies to assess grid impact.
Typical: 18–36 months
Interconnection agreement not yet executed
Typical: 30–60 days (negotiation)
Proposed COD: 2026-12-01
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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PacifiCorp-PIS044 is a proposed 600 MW hybrid solar and battery project located in Morrow County, Oregon. The development project consists of 600 MW of solar generation capacity. It is listed in the PacifiCorp interconnection queue (queue ID PIS044) with an entry date of June 22, 2023.
The proposed commercial operation date is December 1, 2026. The interconnection agreement status is listed as "In Progress (unknown study)". The point of interconnection is the Boardman - Hemingway transmission line.
Generated from interconnection queue and public data sources
State
OR
County
Morrow
Grid Region
Mountain West
Market
—
Developer
—
Utility
PacifiCorp
Entity
PacifiCorp
Service Type
—
Point of Interconnection
Boardman - Hemingway transmission line
Data Source
LBNL
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.
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- ISO / RTO
- MOUNTAIN_WEST
- Trading Hub
- MID-C
- 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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Top 10 solar states
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Forward forecasts, scenario decomposition, and risk-decision tooling for this queue project.