cause the current to be sensed as lagging current flowing in the trip direction and leading to an
undesirable trip. (A condition often referred to as weak infeed because the lower voltage system - where
load is present - attempts to correct the undervoltage condition on the higher voltage system.)
Application
Without the ability to act on the direction of current flow, it is difficult to coordinate the settings of time
overcurrent relays on lines that interconnect a series of substations. Without this capability, either
undesired tripping of adjacent lines may occur or a fault may go undetected because of the high settings
required by non-directional relays.
With directional time overcurrent relays, the settings and time delays can be decreased and the undesired
tripping eliminated. Figure 1-5 illustrates the use of directional overcurrent relays on a group of
interconnected distribution substations fed from a common source. In this example, non-directional
overcurrent relays (51) are used to protect the lines leaving the supply bus because there is only one
source of fault current. However, the breakers at the load buses (C, D, E, and F) are protected by
directional time overcurrent relays (67) to prevent overtripping in the event of a fault. This will remove the
faulted line and retain service to the connected loads.
In the case where two sources of power can supply fault current, as shown in Figure 1-6. directional
overcurrent relays will need to be applied to each end of the protected lines to prevent undesired tripping.
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