DocumentCode
739616
Title
A Cell-Level Differential Power Processing IC for Concentrating-PV Systems With Bidirectional Hysteretic Current-Mode Control and Closed-Loop Frequency Regulation
Author
Zaman, Mohammad Shawkat ; Yue Wen ; Fernandes, Ryan ; Buter, Berry ; Doorn, Toby ; Dijkstra, Marcel ; Bergveld, Henk Jan ; Trescases, Olivier
Author_Institution
NXP Semicond., Eindhoven, Netherlands
Volume
30
Issue
12
fYear
2015
Firstpage
7230
Lastpage
7244
Abstract
This paper describes an integrated power management IC with bidirectional current capability, aimed at compensating differences in output current between series-connected cells in concentrating photovoltaic (CPV) systems. The integrated 3.6-MHz power stage allows building a small-form-factor converter per cell. A hysteretic current-mode controller regulates the bidirectional converter´s current to equalize neighboring cell voltages. A phase-locked loop controls the inductor current ripple around the average value to stabilize the switching frequency. The use of hysteretic current-mode control with a novel bidirectional senseFET scheme provides inherent current protection and high reliability. The converter can operate from an input voltage as low as 1.8 V and with an inductor current up to ±1.5 A, while achieving a system efficiency above 90% for current mismatches between cells up to 60%. Measurement results show that the converter maximizes the output power of series-connected CPV cells with mismatched output currents.
Keywords
electric current control; frequency control; frequency stability; phase locked loops; photovoltaic cells; photovoltaic power systems; power generation control; power inductors; power integrated circuits; voltage control; CPV systems; bidirectional converter current regulation; bidirectional hysteretic current-mode control; bidirectional senseFET scheme; cell-level differential power processing integrated circuits; concentrating-PV systems; concentrating-photovoltaic systems; difference compensation; inductor current ripple control; neighboring cell voltage equalization; output power maximization; phase-locked loop; series-connected cells; small-form-factor converter-per-cell; switching frequency stabilization; Bidirectional control; Current measurement; DC-DC power converters; Inductors; Integrated circuits; Reliability; Voltage control; Analog integrated circuits; analog integrated circuits; current control; current-mode control; dc-dc power conversion; dc???dc power conversion; energy harvesting; integrated circuit design; photovoltaic power systems; power converter; power electronics;
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2015.2395813
Filename
7018026
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