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Multi-Way Lossless Outphasing System Based on an All-Transmission-Line Combiner

A lossless power-combining network comprising cascaded transmission-line segments in a tree structure is introduced for a multi-way outphasing architecture. This architecture addresses the suboptimal loading conditions in Chireix outphasing transmitters while offering a compact and microwave-friendl...

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Published in:IEEE transactions on microwave theory and techniques 2016-04, Vol.64 (4), p.1313-1326
Main Authors: Barton, Taylor W., Jurkov, Alexander S., Pednekar, Prathamesh H., Perreault, David J.
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Language:English
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cited_by cdi_FETCH-LOGICAL-c336t-799d62a77d0ea7cca7a09bf58e08545ff2e0585552bb240eec1e49e73e0216c03
cites cdi_FETCH-LOGICAL-c336t-799d62a77d0ea7cca7a09bf58e08545ff2e0585552bb240eec1e49e73e0216c03
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container_title IEEE transactions on microwave theory and techniques
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creator Barton, Taylor W.
Jurkov, Alexander S.
Pednekar, Prathamesh H.
Perreault, David J.
description A lossless power-combining network comprising cascaded transmission-line segments in a tree structure is introduced for a multi-way outphasing architecture. This architecture addresses the suboptimal loading conditions in Chireix outphasing transmitters while offering a compact and microwave-friendly implementation compared to previous techniques. In the proposed system, four saturated power amplifiers (PAs) interact through an all-TL power-combining network to produce nearly ideal resistive load modulation of the branch PAs over a 10:1 range of output powers. This work focuses on the operation of the combining network, deriving analytical expressions for input-port admittance characteristics and an outphasing control strategy to modulate output power while minimizing reactive loading of the saturated branch amplifiers. A methodology for combiner design is given, along with a combiner design example for compact layout. An experimental four-way outphasing amplifier system operating at 2.14 GHz demonstrates the technique with greater than 60% drain efficiency for an output power range of 6.2 dB. The system demonstrates a W-CDMA modulated signal with a 9.15-dB peak-to-average power ratio with 54.5% average modulated efficiency at 41.1-dBm average output power.
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source IEEE Electronic Library (IEL) Journals
subjects Admittance
Base stations
Chireix
Impedance
LINC
load modulation
Loading
Microwave theory and techniques
Modulation
outphasing
Ports (Computers)
power amplifier (PA)
Power generation
Receivers & amplifiers
wideband code division multiple access (W-CDMA)
title Multi-Way Lossless Outphasing System Based on an All-Transmission-Line Combiner
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