A Doherty Power Amplifier with Large Back-Off Power Range Using Integrated Enhancing Reactance

A symmetric Doherty power amplifier (DPA) based on integrated enhancing reactance (IER) was proposed for large back-off applications. The IER was generated using the peaking amplifier with the help of a desired impedance transformation in the low-power region to enhance the back-off efficiency of th...

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Main Authors: Wa Kong, Jing Xia, Fan Meng, Chao Yu, Lixia Yang, Xiaowei Zhu
Format: Article
Language:English
Published: Hindawi-Wiley 2018-01-01
Series:Wireless Communications and Mobile Computing
Online Access:http://dx.doi.org/10.1155/2018/3968308
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spelling doaj-3f32f2d57cc64fdf921cb310f7d5a9ec2020-11-25T01:01:46ZengHindawi-WileyWireless Communications and Mobile Computing1530-86691530-86772018-01-01201810.1155/2018/39683083968308A Doherty Power Amplifier with Large Back-Off Power Range Using Integrated Enhancing ReactanceWa Kong0Jing Xia1Fan Meng2Chao Yu3Lixia Yang4Xiaowei Zhu5School of Computer Science and Communication Engineering, Jiangsu University, Zhenjiang 212013, ChinaSchool of Computer Science and Communication Engineering, Jiangsu University, Zhenjiang 212013, ChinaState Key Laboratory of Millimeter Waves, Southeast University, Nanjing 210096, ChinaState Key Laboratory of Millimeter Waves, Southeast University, Nanjing 210096, ChinaSchool of Computer Science and Communication Engineering, Jiangsu University, Zhenjiang 212013, ChinaState Key Laboratory of Millimeter Waves, Southeast University, Nanjing 210096, ChinaA symmetric Doherty power amplifier (DPA) based on integrated enhancing reactance (IER) was proposed for large back-off applications. The IER was generated using the peaking amplifier with the help of a desired impedance transformation in the low-power region to enhance the back-off efficiency of the carrier amplifier. To convert the impedances properly, both in the low-power region and at saturation, a two-impedance matching method was employed to design the output matching networks. For verification, a symmetric DPA with large back-off power range over 2.2–2.5 GHz was designed and fabricated. Measurement results show that the designed DPA has the 9 dB back-off efficiency of higher than 45%, while the saturated output power is higher than 44 dBm over the whole operation bandwidth. When driven by a 20 MHz LTE signal, the DPA can achieve good average efficiency of around 50% with adjacent channel leakage ratio of about –50 dBc after linearization over the frequency band of interest. The linearity improvement of the DPA for multistandard wireless communication system was also verified with a dual-band modulated signal.http://dx.doi.org/10.1155/2018/3968308
collection DOAJ
language English
format Article
sources DOAJ
author Wa Kong
Jing Xia
Fan Meng
Chao Yu
Lixia Yang
Xiaowei Zhu
spellingShingle Wa Kong
Jing Xia
Fan Meng
Chao Yu
Lixia Yang
Xiaowei Zhu
A Doherty Power Amplifier with Large Back-Off Power Range Using Integrated Enhancing Reactance
Wireless Communications and Mobile Computing
author_facet Wa Kong
Jing Xia
Fan Meng
Chao Yu
Lixia Yang
Xiaowei Zhu
author_sort Wa Kong
title A Doherty Power Amplifier with Large Back-Off Power Range Using Integrated Enhancing Reactance
title_short A Doherty Power Amplifier with Large Back-Off Power Range Using Integrated Enhancing Reactance
title_full A Doherty Power Amplifier with Large Back-Off Power Range Using Integrated Enhancing Reactance
title_fullStr A Doherty Power Amplifier with Large Back-Off Power Range Using Integrated Enhancing Reactance
title_full_unstemmed A Doherty Power Amplifier with Large Back-Off Power Range Using Integrated Enhancing Reactance
title_sort doherty power amplifier with large back-off power range using integrated enhancing reactance
publisher Hindawi-Wiley
series Wireless Communications and Mobile Computing
issn 1530-8669
1530-8677
publishDate 2018-01-01
description A symmetric Doherty power amplifier (DPA) based on integrated enhancing reactance (IER) was proposed for large back-off applications. The IER was generated using the peaking amplifier with the help of a desired impedance transformation in the low-power region to enhance the back-off efficiency of the carrier amplifier. To convert the impedances properly, both in the low-power region and at saturation, a two-impedance matching method was employed to design the output matching networks. For verification, a symmetric DPA with large back-off power range over 2.2–2.5 GHz was designed and fabricated. Measurement results show that the designed DPA has the 9 dB back-off efficiency of higher than 45%, while the saturated output power is higher than 44 dBm over the whole operation bandwidth. When driven by a 20 MHz LTE signal, the DPA can achieve good average efficiency of around 50% with adjacent channel leakage ratio of about –50 dBc after linearization over the frequency band of interest. The linearity improvement of the DPA for multistandard wireless communication system was also verified with a dual-band modulated signal.
url http://dx.doi.org/10.1155/2018/3968308
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