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The reference value of PV array terminal voltage is then adjusted to the output of the MPPT control which is the reference voltage of PV array V ref. This is the voltage corresponding to the maximum power point.
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The electrical input will be the product of this terminal voltage and the input current.
terminal voltage.
d Battery terminal voltage.
The outputs are the terminal voltage phase and magnitude.
It will decrease the terminal voltage amplitude drop, terminal voltage phase angle, maximum rotor current, and increase reactive power output.
For, the terminal voltage can be related to the source voltage via the source impedance by.
The terminal voltage and fault voltage component according to Fig. 3b can be formulated as follows.
The terminal voltage is slightly higher than the rated voltage of the battery.
For the control strategy of the UPFC shunt converter, the q-axis component of the terminal voltage for shunt transformer (dot{U}_{1}) is forced to zero, i.e., the d-axis and q-axis components of (dot{U}_{1}) are: left{ begin{array}{ll} U_{1d} = U_{1} hfill U_{1q} = 0 hfill end{array} right.
The terminal voltage of the equivalent battery is calculated from: Fig. 3 Equivalent circuit of the BESS [18] begin{array}{l}{E}_{mathrm{bt}}=varDelta {E}_{mathrm{do}} cos alpha -{r}_c{I}_{mathrm{BESS}} kern2.5em =frac{3sqrt{6}{pii }{E}_tleft( cos {alpha}_1- cos {alpha}_2right -frac{6}{pi }{alpha}_2right -frac{6}{pim{BESS}{end{array} (3).
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