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Photovoltaic Partial Shading Performance Evaluation With a DSTATCOM Controller
DOI:10.1109/ACCESS.2022.3186906.png)
Abstract
En 中文
A solar photovoltaic distribution static compensator (SPV-DSTATCOM) under partial shading condition (PSC) is studied using a single-stage, 3-phase grid-connected mode. Under PSC, the performance of the grid-connected SPV-DSTATCOM is studied, and issues such as active current sharing, reactive power control, and harmonic elimination are addressed. Rejection of DC offset with such PSC condition is an issue when using a conventional Proportional Resonant (PR) controller. As a result of this research, a new and improved PR (IPR)-based second-order generalized integrator (SOGI) has been developed that has unity gain at the fundamental frequency and greater DC offset rejection capability to address the PR controller shortcomings. The proposed controller's performance is evaluated in both steady-state and dynamic conditions with varying loads and different PSC conditions. An experimental evaluation of the proposed controller's design assumptions is also presented in the form of a comparison with both the PR controller and the adaptive PR controller.
Keywords:
Reactive power
Regulators
Power harmonic filters
Voltage control
Photovoltaic systems
Harmonic analysis
Capacitors
Reactive power supply
partial shading condition
proportional resonant controller
power system harmonics
second-order generalized integrator
Journal
IF:
3.6
Papers:
9.8W
Citations:
29.4W
Organization
No organization information available
Cited Papers
A Novel Hybrid Filter-Based PLL to Eliminate Effect of Input Harmonics and DC Offset
IEEE ACCESS
IF3.6
Performance Evaluation of Three-Phase Grid-Tied SPV-DSTATCOM With DC-Offset Compensation Under Dynamic Load Condition
IEEE ACCESS
IF3.6
DC-Offset Compensation for Three-Phase Grid-Tied SPV-DSTATCOM Under Partial Shading Condition With Improved PR Controller
IEEE ACCESS
IF3.6

