High-linearized and fast-convergent RMI look-up table control method for space solar array simulator

Shanshan Jin, Donglai Zhang, Zhi Fang

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Space solar array simulator (SSAS) is a key power input device for spacecraft power supply testing. SSASs are also required to simulate the steady-state I-V curve with a high tangent slope of the aerospace solar panel output and to have the dynamic response performance of the fast convergence to switching working point under a spacecraft power supply test environment. This paper proposes a high-linearized and fast-convergent RmI (HLFC-RmI) look-up table control method, which is aimed at solving these problems. This study converts the conventional voltage-current UI data table into the corresponding impedance-current RmI data table without adding any auxiliary hardware circuit. The RmI data table is used as a target form for I-V outer loop control, by using the proposed equivalent impedance Rm linearization formula, thereby achieving the simulation of a high tangent slope I-V curve. In the process of looking up table control, the optimized equivalent impedance Rm_real-time linearization formula is used to approximate the high-speed convergence characteristics of the UI look-up table method under constant-voltage load switching conditions. The new I-V outer loop control method is applied to a 1 kW hardware power platform of SSAS. The SSAS can not only simulate an arbitrary I-V curve with a high tangent slope but also has the characteristics of high-speed convergence of the switching working point.

Original languageEnglish
Pages (from-to)289-301
Number of pages13
JournalCPSS Transactions on Power Electronics and Applications
Volume5
Issue number3
DOIs
StatePublished - Sep 2020

Keywords

  • Dynamic characteristics
  • Look-up table control method
  • Nonlinear I-V outer loop
  • Solar array simulator
  • Tangent slope of the I-V curve

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