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The maximum jump value of terminal voltage phase angle is 79.2° when K = 0.5.
Figure 8 shows that the maximum jump value of terminal voltage phase angle is 57.1° when K = 1.5.
So a big dynamic reactive power compensation coefficient can reduce maximum jump value and steady-state value of terminal voltage phase angle, and the jump rate of terminal voltage phase angle is unaffected.
Figure 10 shows that the jump rate of terminal voltage phase angle is always 2.6°/ms, and the maximum jump value of terminal voltage phase angle is almost 57.1° based on different fault location and different grid strength.
So the small control parameters of current inner-loop of rotor-side converter can reduce jump rate and maximum jump value of terminal voltage phase angle, and the steady-state value of terminal voltage phase angle is nearby.
The jump rate and maximum jump value of terminal voltage phase angle are mainly affected by the FRT control strategies and control parameters of current inner-loop of rotor-side converter.
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It can decrease the terminal voltage phase angle jump value, the maximum rotor current and the maximum absorbing reactive power.
Maximum jump strategy (MJS).
The packet that makes the maximum jump is forwarded first.
Fitness was assessed using burst swim speed for tadpoles and maximum jump distance for metamorphs.
For the squat jump exercise intervention participants preformed 100 squat jumps at 90% of their maximum jump height.
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