PHAENON (CAISO-1983) — Project Summary

Queue ID
CAISO-1983
Capacity
204.017565 MW
Technology
Solar+Battery
Status
active
Location
Kern, CA
Region
CAISO
Developer
IA Status
System Impact Study

PHAENON

CAISO-1983BetaActiveSolarBatteryCAISOLBNL + Live

204.018 MW hybrid in Kern, CA · In queue since April 2021 · Proposed COD July 2029

204.018 MW

Capacity

2

Components

Solar + Battery

5y 1m

In Queue

System Impact Study

IA Status

COD target: 2029

Interconnection

Total Duration

8y 3m

Impact Study25%
Queue EntryApr 15, 2021

Interconnection request submitted to ISO/RTO

Cluster Study (Phase I/II)Current

CAISO uses cluster studies where projects are batched annually and studied together.

Typical: 36–48 months (IR to IA)

Interconnection Agreement

Interconnection agreement not yet executed

Typical: 30–60 days (negotiation)

Commercial Operation

Proposed COD: 2029-07-18

Technology
Solar102.254 MW · 50%
Battery101.764 MW · 50%
About

The proposed PHAENON project is a 204.02 MW hybrid solar and battery energy storage development in Kern County, California. The project, located within the CAISO region and interconnected with PG&E, consists of a 102.25 MW solar array and a 101.76 MW battery energy storage system.

PHAENON is listed in the CAISO interconnection queue as queue ID CAISO-1983, with an entry date of April 15, 2021. The proposed commercial operation date is July 18, 2029. The project's interconnection status is currently in the System Impact Study phase, and the point of interconnection is the Shafter 115 kV substation.

Generated from interconnection queue and public data sources

Project Details

State

CA

County

Kern

Grid Region

CAISO (California)

Market

ISO/RTO Member

Developer

Utility

PGAE

Entity

CAISO

Service Type

Point of Interconnection

Shafter 115 kV

Data Source

LBNL + Live

Market Context
Approximate
ISO / RTO
CAISO
Trading Hub
TH_ZP26_GEN-APND
Hub Confidence
LOW

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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