arrow
Return

High-Reliability Solar Array Regulator Proposal for Harsh Environments

delete2022-06-14
delete5
PRE
AI
C
Cristian Torres *
J
J. M. Blanes
A
A. Garrigós
D
David Marroquí
C
Carlos Orts
J
Jose Antonio Carrasco
DOI:10.1109/MELECON53508.2022.9842931delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
This paper presents a fault-tolerant solar array regulator intended for isolated applications where reliability is critical. For this, it is proposed an architecture similar as the one used in the space sector, in which reliability and fault tolerance are essential. The proposed regulator is composed of six phases, each one powered from a string of 20 solar cells. Each of these phases has a Buck converter controlled by a double control loop, that can control both the voltage in the batteries and the power generated in the solar arrays. To maximize this extracted power, each phase has a maximum power point tracker (MPPT) circuit. In addition, the converter has a redundant over voltage protection (OVP) system that powers off all the converters in case of battery overvoltage. In addition, this regulator is tolerant to the failure of any of its components. This work describes the design of each of the developed subsystems that compose the regulator, as well as the implementation of a 60W prototype and the tests carried out.
Keywords:
Solar array regulator
maximum power point tracker (MPPT)
high reliability
fault-tolerant regulator

Journal

I
IEEE Mediterranean Electrotechnical Conference
IF:
0
Papers:
37
Citations:
0

Organization

U
universidad miguel hernandez de elche
Scholars:
6.3K
Papers: 5.2K
Citations: 1