Overview
Hampton Solar Substation is an operational electrical substation in the United States, operating at 46 kV. It plays a role in grid stability and power distribution.
Hampton Solar Substation is an operational electrical substation located in the United States. The facility operates at a voltage level of 46 kV, which classifies it as a medium-voltage substation typically used for local power distribution and integration of renewable energy sources like solar farms. Operating within the United States, this substation is subject to NERC reliability standards and FERC regulations for grid interconnection and stability. The 46 kV voltage level suggests it serves as a distribution substation, stepping down power from transmission lines to local networks. Such facilities are critical for maintaining grid reliability and supporting distributed generation. The substation's role in the local grid is significant for integrating solar power, contributing to energy diversification and reducing carbon emissions. Its operational status ensures continued service to the surrounding community, supporting both residential and commercial electricity needs.
Environmental context
The substation is located in a rural area of South Carolina, near Hampton. The surrounding environment includes agricultural land and forests. The facility's operation supports the integration of solar energy, which reduces reliance on fossil fuels and lowers greenhouse gas emissions. Proper maintenance of switchgear and transformers is essential to prevent oil leaks and minimize environmental impact.
Frequently asked questions
Hampton Solar Substation is located in the United States, with coordinates approximately 32.8824 N, -81.1322 W, near Hampton, South Carolina.
Hampton Solar Substation operates at a voltage of 46 kV, which is typical for distribution-level substations in the United States.
Hampton Solar Substation is currently operational, meaning it is actively serving the electrical grid.
In the United States, substations must comply with NERC reliability standards for grid stability and FERC regulations for interconnection. Additionally, equipment often follows IEEE and ISO/IEC 61850 standards for automation.
As a substation associated with a solar facility, it helps integrate solar power into the grid, enabling the distribution of renewable energy to consumers and supporting grid stability.