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电信和无线电工程
SJR: 0.202 SNIP: 0.2 CiteScore™: 0.23

ISSN 打印: 0040-2508
ISSN 在线: 1943-6009

卷:
卷 79, 2020 卷 78, 2019 卷 77, 2018 卷 76, 2017 卷 75, 2016 卷 74, 2015 卷 73, 2014 卷 72, 2013 卷 71, 2012 卷 70, 2011 卷 69, 2010 卷 68, 2009 卷 67, 2008 卷 66, 2007 卷 65, 2006 卷 64, 2005 卷 63, 2005 卷 62, 2004 卷 61, 2004 卷 60, 2003 卷 59, 2003 卷 58, 2002 卷 57, 2002 卷 56, 2001 卷 55, 2001 卷 54, 2000 卷 53, 1999 卷 52, 1998 卷 51, 1997

电信和无线电工程

DOI: 10.1615/TelecomRadEng.v74.i5.80
pages 459-468

HIGH-EFFICIENTLY SPACE-ORIENTED SOLAR CONCENTRATOR BATTERY ON THE PLANAR FOKLINES

V. N. Borshchov
Kharkov National University of Radio Engineering and Electronics, 14, Lenin Ave 61166; Research and Technology Institute of Instrument Engineering 40/42, Primakova St., Kharkov, Ukraine
A. M. Listratenko
State-owned Enterprise "Research Technological Institute for Equipment Development", 40/42, Primakov St., 61010 Kharkiv; Kharkiv National University of Radio Engineering and Electronics, 14, Lenin Ave, Kharkiv, 61166, Ukraine
Mykola I. Slipchenko
Kharkiv National University of Radio Electronics, 14, Nauky Avenue, Kharkiv, 61166, Ukraine
N.V. Gerasimenko
Kharkiv National University of Radio Engineering and Electronics, 14, Lenin Ave, Kharkiv, 61166, Ukraine
Ye.S. Glushko
Kharkiv National University of Radio Engineering and Electronics, 14, Lenin Ave, Kharkiv, 61166, Ukraine

ABSTRACT

The research problem of a prototype of the concentrator solar module based on planar concentrators with the improved optical efficiency was solved. An improved version of the test sample concentrator module with flat concentrator based on new material MIRO-SILVER 4270 AG with reflectance greater than 95% was presented. Comparative study of photovoltaic and optical parameters and the advantages of improved concentrator module for use in the Advanced Space concentrator type batteries "CellSaver" was presented.