Overview
Roxy Ann Substation is an operational electrical substation owned by PacifiCorp in the United States. It plays a key role in regional grid stability and power distribution.
Roxy Ann Substation is an operational electrical substation located in the United States, owned and operated by PacifiCorp, a major utility serving the western U.S. The facility is part of the electrical infrastructure that supports power transmission and distribution in the region. As a substation, Roxy Ann likely operates at transmission or sub-transmission voltage levels, facilitating voltage transformation and grid interconnection. In the U.S., such facilities are subject to NERC reliability standards and FERC regulation, ensuring grid stability and compliance with federal energy policies. The substation's location in the Pacific Northwest places it within a region with diverse energy resources, including hydroelectric, wind, and solar. Its role in the local grid is critical for maintaining reliable electricity supply to residential, commercial, and industrial customers.
Environmental context
The substation is situated in a region with varied terrain and climate, which can influence grid operations. Proximity to urban or rural areas affects load demands and infrastructure resilience. Environmental considerations include potential impacts on local wildlife and land use, though substations typically have a small footprint.
Frequently asked questions
Roxy Ann Substation is located in the United States, with coordinates 42.341826, -122.784213, likely in the Pacific Northwest region.
Roxy Ann Substation is owned and operated by PacifiCorp, a major utility company serving customers in the western United States.
Roxy Ann Substation is currently operational, actively contributing to the electrical grid.
As a U.S. electrical substation, Roxy Ann Substation must comply with NERC reliability standards and FERC regulations to ensure grid stability and safety.
Substations like Roxy Ann transform voltage levels, switch circuits, and help manage the flow of electricity, ensuring reliable power distribution to consumers.