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APPENDIX TITLE 83: PUBLIC UTILITIES CHAPTER I: ILLINOIS COMMERCE COMMISSION SUBCHAPTER c: ELECTRIC UTILITIES PART 467 ELECTRIC INTERCONNECTION OF LARGE DISTRIBUTED GENERATION FACILITIES Section 467.10
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Determine the requirements and specifications of the distributed generation system:
01
Identify the capacity and type of generation sources (solar, wind, etc.).
02
Consider the voltage level and power factor requirements.
03
Analyze the load characteristics and expected demand.

Assess the grid connection feasibility:

01
Conduct a preliminary interconnection study to evaluate technical grid compatibility.
02
Check for grid capacity and stability to accommodate the distributed generation.
03
Evaluate potential impacts on system reliability and power quality.

Submit application and required documentation:

01
Contact the relevant electric utility or system operator.
02
Fill out the application form for interconnection.
03
Attach any necessary technical drawings, equipment specifications, and studies.

Review and approval process:

01
The utility or operator will review the application for completeness and conformity.
02
The technical team will evaluate the potential impacts and interconnection requirements.
03
The approval or rejection decision will be communicated to the applicant.

Execute interconnection agreement:

01
If approved, negotiate and sign an interconnection agreement.
02
The agreement will detail the terms, conditions, and responsibilities of both parties.
03
It will cover aspects like metering, insurance, maintenance, and safety requirements.

Who needs electric interconnection of distributed?

Renewable energy developers and project owners:

01
Those who want to connect their solar, wind, or other renewable energy generation to the grid.
02
Individuals or companies investing in distributed generation systems for self-consumption or selling surplus energy.

Electric utilities and system operators:

01
They may require interconnection to achieve renewable energy goals and diversify their energy mix.
02
Distributed generation can help improve grid resilience, reduce transmission losses, and enhance power quality.

Energy consumers and communities:

01
Installing distributed generation systems can provide cost savings and energy independence.
02
Communities can benefit from shared resources and local energy production, promoting sustainability.
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Electric interconnection of distributed refers to the process of connecting distributed energy resources (DERs), such as solar panels or wind turbines, to the electrical grid. This allows these small-scale power generators to contribute energy to the grid and receive compensation for their production.
Electric interconnection of distributed is typically filed by the owner or operator of the distributed energy resource (DER) seeking to connect to the electrical grid. This can be an individual, business, or organization.
The process for filling out electric interconnection of distributed may vary depending on the specific requirements of the utility or regulatory body overseeing the interconnection. Generally, it involves submitting an application that includes information about the DER, its location, technical specifications, and any required fees or supporting documentation.
The purpose of electric interconnection of distributed is to facilitate the integration of small-scale electricity generators into the larger electrical grid. It allows for the seamless transfer of power between these distributed energy resources and the grid, increasing the overall reliability and resilience of the electrical system.
The information required to be reported on electric interconnection of distributed can vary depending on the specific jurisdiction and utility requirements. Generally, it includes details about the distributed energy resource (DER), its capacity, location, technical specifications, electrical protection measures, and any associated studies or impact assessments.
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