2019
DOI: 10.1109/tie.2018.2881946
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A Novel DC Power Distribution System Stabilization Method Based on Adaptive Resonance-Enhanced Voltage Controller

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Cited by 34 publications
(25 citation statements)
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“…To obtain the parametric model of impedance, the objective function to be fitted was set using Equation (19). Then, the grid resistance, inductance, and capacitance values can be obtained by comparing the Equation (20) with the obtained parametric impedance shown in Equation (25). The estimation errors in the R g and L g are −0.08% and −3.1%, respectively.…”
Section: Unbalanced Grid Voltagementioning
confidence: 99%
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“…To obtain the parametric model of impedance, the objective function to be fitted was set using Equation (19). Then, the grid resistance, inductance, and capacitance values can be obtained by comparing the Equation (20) with the obtained parametric impedance shown in Equation (25). The estimation errors in the R g and L g are −0.08% and −3.1%, respectively.…”
Section: Unbalanced Grid Voltagementioning
confidence: 99%
“…The slight difference between these results is due to the dependence of the first term upon the R g and to the dependence of the second term upon the L g , where both components (R g , L g ) have their own estimation errors. Figure 10b compares the analytical solution of the grid impedance with the parametric transfer function obtained in Equation (25).…”
Section: Unbalanced Grid Voltagementioning
confidence: 99%
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“…Predictive controls acquire state variables ahead of time, which allow earlier actions to stabilize the system [4,5]. Adaptive controls can achieve optimized performance in different conditions, which is ensured by online tunings for control parameters [6,7]. Current mode controls are effective approaches to simplify compensator design, and they can achieve fast transient performance with over current protection [8][9][10].…”
Section: Introductionmentioning
confidence: 99%
“…The behavior of bus voltage under load changes can be reflected by the total dc bus impedance. In general, the dc bus impedance is dominated by the output impedance of source converters [9], i.e., droop-controlled DER converters. The output impedance of a droop-controlled DER converter is determined by the droop resistance r d at low frequency and by the output capacitance C o at high frequency.…”
mentioning
confidence: 99%