Assessing the risk to power systems from geomagnetically induced currents (GIC) requires calculations of the geoelectric fields at the Earth's surface. These...
The geoelectric field driving geomagnetically induced currents (GIC) has complex spatial variations. It follows that different patterns of the field vectors in...
Space weather storms involve intense and rapidly varying electric currents in the ionosphere, which create electric and magnetic fields at the Earth's surface....
Understanding the geomagnetic hazard to power systems requires the ability to model the geomagnetically induced currents (GIC) produced in a power network....
To understand geomagnetic effects on systems with long conductors it is necessary to know the electric field those systems experience. For surface conductors...
One of the modern applications of geomagnetism is determining the effect of geomagnetic disturbances on critical infrastructure such as power systems and...
Space weather alerting systems for power systems require real-time calculations of the electric fields that drive geomagnetically induced currents. In this...
Understanding the geomagnetic hazard to power systems requires the ability to model the geomagnetically induced currents (GIC) produced in a power network....
Assessing the geomagnetic hazard to power systems requires reliable modelling of the geomagnetically induced currents (GIC) produced in the power network. This...
Geomagnetically induced currents (GIC) are DC-like currents compared to power transmission frequencies. Consequently, it may be possible to reduce the...
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