Millimeter-wave fiber optics systems for personal radio communication
Волноводные оптические системы миллиметрового диапазона для персональной радиосвязи
1992-01-01
SCID: 54.1/decsmhbb
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FM and QPSK subcarrier data transmission (70 MHz, 300 MHz, 26 GHz)broadband millimeter-wave subcarrier transmission over fiber-optic linksdirect laser modulation and external optical modulationmillimeter-wave personal communication systemsoptical MMIC technology (MMIC HEMT photodetectors)
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Abstract (AI)
System concepts for millimeter-wave personal communication systems and the advantages of millimeter-wave band usage are briefly described. Demonstration of broadband millimeter-wave subcarrier transmission concepts over fiber-optic links is performed. Several fiber-optic link architectures, including one using a combination of direct laser modulation and indirect (external) optical modulation, are outlined with respect to signal transmission at millimeter-wave frequencies. Several configurations are experimentally investigated using 70-MHz, 300-MHz, and 26-GHz subcarriers which transmit either FM or QPSK data signals. Additionally, the use of optical MMIC technology, which can result in the design of compact and cost-effective optical receivers, is described with respect to personal communication radio base station equipment. MMIC HEMTs operating as photodetectors are newly characterized in terms of digital and analog signal reception with excellent performance being observed.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
Key Findings
1
A hybrid fiber-optic link combining direct laser modulation and external optical modulation supports millimeter-wave frequency signal transmission.
2
Broadband millimeter-wave subcarrier transmission can be demonstrated over fiber-optic links using various link architectures.
3
Experimental configurations successfully transmitted FM or QPSK data on 70-MHz, 300-MHz, and 26-GHz subcarriers over fiber links.
4
Millimeter-wave band usage offers advantages for personal communication systems and suitable system concepts are presented.
5
Optical MMIC technology, specifically MMIC HEMTs operating as photodetectors, provide compact, cost-effective optical receivers with excellent digital and analog reception performance.
Research Object
Millimeter-wave fiber-optic link architectures for personal radio communication systems
Research Subject
Transmission and reception performance of broadband millimeter-wave subcarrier signals (70 MHz, 300 MHz, 26 GHz) over fiber-optic links, including modulation schemes (FM, QPSK), direct and external optical modulation architectures, and optical MMIC/HEMT photodetector performance for personal communication base stations
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1992-01-01
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