Your browser doesn't support javascript.
loading
Enhanced control strategy for photovoltaic emulator operating in continuously changing environmental conditions based on shift methodology.
Harrison, Ambe; Ullah, Safeer; Alombah, Njimboh Henry; Bajaj, Mohit; Mbasso, Wulfran Fendzi; Iqbal, Sheeraz; Tuka, Milkias Berhanu.
Afiliação
  • Harrison A; Department of Electrical and Electronics Engineering, College of Technology (COT), University of Buea, P.O. Box Buea 63, Buea, Cameroon. ambe.harrison@ubuea.cm.
  • Ullah S; Quaid-E-Azam College of Engineering and Technology, Sahiwal, Pakistan.
  • Alombah NH; Department of Electrical and Electronics Engineering, College of Technology, University of Bamenda, P.O. Box 39, Bambili, Cameroon.
  • Bajaj M; Department of Electrical Engineering, Graphic Era (Deemed to Be University), Dehradun, 248002, India. mb.czechia@gmail.com.
  • Mbasso WF; Hourani Center for Applied Scientific Research, Al-Ahliyya Amman University, Amman, Jordan. mb.czechia@gmail.com.
  • Iqbal S; Graphic Era Hill University, Dehradun, 248002, India. mb.czechia@gmail.com.
  • Tuka MB; Technology and Applied Sciences Laboratory, U.I.T. of Douala, University of Douala, P.O. Box 8689, Douala, Cameroon.
Sci Rep ; 14(1): 13406, 2024 Jun 11.
Article em En | MEDLINE | ID: mdl-38862672
ABSTRACT
This article investigates an inventive methodology for precisely and efficiently controlling photovoltaic emulating (PVE) prototypes, which are employed in the assessment of solar systems. A modification to the Shift controller (SC), which is regarded as a leading PVE controller, is proposed. In addition to efficiency and accuracy, the novel controller places a high emphasis on improving transient performance. The novel piecewise linear-logarithmic adaptation utilized by the Modified-Shift controller (M-SC) enables the controller to linearly adapt to the load burden within a specified operating range. At reduced load resistances, the transient sped of the PVE can be increased through the implementation of this scheme. An exceedingly short settling time of the PVE is ensured by a logarithmic modification of the control action beyond the critical point. In order to analyze the M-SC in the context of PVE control, numerical investigations implemented in MATLAB/Simulink (Version Simulink 10.4, URL https//in.mathworks.com/products/simulink.html ) were utilized. To assess the effectiveness of the suggested PVE, three benchmarking profiles are presented eight scenarios involving irradiance/PVE load, continuously varying irradiance/temperature, and rapidly changing loads. These profiles include metrics such as settling time, efficiency, Integral of Absolute Error (IAE), and percentage error (epve). As suggested, the M-SC attains an approximate twofold increase in speed over the conventional SC, according to the findings. This is substantiated by an efficiency increase of 2.2%, an expeditiousness enhancement of 5.65%, and an IAE rise of 5.65%. Based on the results of this research, the new M-SC enables the PVE to experience perpetual dynamic operation enhancement, making it highly suitable for evaluating solar systems in ever-changing environments.
Palavras-chave

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article