Impact of Grid Strength and Impedance Characteristics on the Maximum Power Transfer Capability of Grid-Connected Inverters †
Abstract
:1. Introduction
2. Maximum Power Transfer Capability of Grid-Connected Systems at the Rated PCC Voltage
2.1. System Configuration and Mathematical Model
2.2. Ideal Maximum Power without Current Limitation
2.3. Realistic Maximum Power with Current Limitation
3. Maximum Power Transfer Capability of Grid-Connected Systems at Varying PCC Voltages
4. Optimal Parameters for Maximum Power Operation in Inductive and Resistive Grids
5. Simulation Verification
6. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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Parameters | Values | |
---|---|---|
Vg | Grid phase voltage (peak value) | 311 V |
fg | Grid frequency | 50 Hz |
SN | Rated apparent power of inverter | 30 kVA |
Imax | Maximum current of inverter (peak value) | 64.3 A |
Vdc | DC-link voltage | 700 V |
Lf | Output filter inductor | 5 mH |
Cf | Output filter capacitor | 5 μF |
Parameters | Values (Inductive Case) | Values (Resistive Case) | |
---|---|---|---|
Rg/Xg | R/X ratio of grid impedance | 0.3 | 7 |
SCR | Short circuit ratio | 1/2 | 10 |
Lg | Grid inductor | 14.7 mH/7.3 mH | 0.22 mH |
Rg | Grid resistor | 1.38 Ω/0.69 Ω | 0.48 Ω |
Steady-State Error on Pinv | Vpcc = 1 pu | Vpcc = 1.05 pu | Vpcc = 1.1 pu | |
---|---|---|---|---|
Rg/Xg = 0.3 | SCR = 1 | 2.68% | 0 | 0 |
SCR = 2 | 0.08% | 0 | 0 | |
SCR = 5 | 1.82% | 0 | 0 | |
SCR = 10 | 2.90% | 0 | 68.39% | |
Rg/Xg = 1 | SCR = 5 | 22.57% | 4.97% | 0 |
SCR = 10 | 25.84% | 0 | 22.22% | |
Rg/Xg = 7 | SCR = 5 | 76.03% | 50.76% | 25.33% |
SCR = 10 | 80.93% | 31.78% | 0 |
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Huang, L.; Wu, C.; Zhou, D.; Blaabjerg, F. Impact of Grid Strength and Impedance Characteristics on the Maximum Power Transfer Capability of Grid-Connected Inverters. Appl. Sci. 2021, 11, 4288. https://doi.org/10.3390/app11094288
Huang L, Wu C, Zhou D, Blaabjerg F. Impact of Grid Strength and Impedance Characteristics on the Maximum Power Transfer Capability of Grid-Connected Inverters. Applied Sciences. 2021; 11(9):4288. https://doi.org/10.3390/app11094288
Chicago/Turabian StyleHuang, Liang, Chao Wu, Dao Zhou, and Frede Blaabjerg. 2021. "Impact of Grid Strength and Impedance Characteristics on the Maximum Power Transfer Capability of Grid-Connected Inverters" Applied Sciences 11, no. 9: 4288. https://doi.org/10.3390/app11094288
APA StyleHuang, L., Wu, C., Zhou, D., & Blaabjerg, F. (2021). Impact of Grid Strength and Impedance Characteristics on the Maximum Power Transfer Capability of Grid-Connected Inverters. Applied Sciences, 11(9), 4288. https://doi.org/10.3390/app11094288