Overview
Fort Phantom Switchyard is an operational substation in Texas, United States, owned and operated by American Electric Power. It operates at 138 kV, serving the regional grid.
Fort Phantom Switchyard is a substation located in Texas, United States, owned and operated by American Electric Power. As a 138 kV substation, it plays a role in the transmission and distribution of electricity within the regional power grid. The substation operates under the regulatory framework of the North American Electric Reliability Corporation (NERC) and the Federal Energy Regulatory Commission (FERC), which set reliability standards for the bulk power system. The 138 kV voltage level is typical for subtransmission or distribution substations, supporting local load centers and industrial customers. This facility contributes to grid stability and reliability in the region, serving as a node for power flow management. Its operational status ensures continued service to the surrounding community, supporting residential, commercial, and industrial electricity needs.
Environmental context
The substation is located in a semi-arid region of Texas, where electrical infrastructure must withstand hot summers and occasional severe weather. The 138 kV voltage level indicates a role in distributing power to local areas, with potential environmental considerations including electromagnetic fields and land use for transmission corridors.
Frequently asked questions
Fort Phantom Switchyard is located in Texas, United States, near coordinates 32.582610, -99.682338.
Fort Phantom Switchyard operates at 138 kV, which is a common voltage for subtransmission and distribution substations.
Fort Phantom Switchyard is owned and operated by American Electric Power, a major utility in the United States.
As part of the U.S. bulk power system, this substation must comply with NERC reliability standards and FERC regulations.
A 138 kV substation typically steps down transmission voltage for distribution to local areas, helping to balance load and maintain grid stability.