Overview
Tharp Switching Station is an operational substation in the United States, owned and operated by ITC. It operates at a voltage of 69 kV, serving as a key node in the regional electrical grid.
Tharp Switching Station is a substation located in the United States, owned and operated by ITC. The facility is operational and plays a role in the transmission and distribution of electrical power within the region. The substation operates at a voltage of 69 kV, which is typical for sub-transmission or distribution-level infrastructure. As part of ITC's network, it adheres to North American Electric Reliability Corporation (NERC) reliability standards and is subject to Federal Energy Regulatory Commission (FERC) oversight for transmission-level assets. The station contributes to grid stability and reliability in the area, supporting local electricity distribution. Its location in the Midwest places it within a region with a mix of urban and rural load centers, and it is part of the broader interconnected grid that ensures power delivery to end users.
Environmental context
The substation's operation involves electromagnetic fields and potential impacts on local wildlife, though modern designs mitigate these effects. Its rural setting reduces exposure to sensitive habitats, and standard practices for oil containment and fire suppression are in place to minimize environmental risks.
Frequently asked questions
Tharp Switching Station is located in the United States, with coordinates approximately 41.864934 N, -91.684500 W.
Tharp Switching Station operates at a voltage of 69 kV, which is typical for sub-transmission or distribution-level substations.
Tharp Switching Station is owned and operated by ITC, a major electricity transmission company in the United States.
Substations in the United States must comply with NERC reliability standards and FERC regulations for transmission assets, ensuring grid stability and security.
A switching station is a substation that allows for the connection and disconnection of transmission lines, helping to reroute power and isolate faults to maintain grid reliability.