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解调环路非理想特性对预失真系统的影响 被引量:1

Effect of Demodulation Loop Non-Ideal Characteristics on the Pre-Distortion System
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摘要 借助半实物仿真平台研究了环路器件的非理想特性对预失真器性能的影响.给出了预失真器的模型及所用到的自适应算法,分析了这些器件的非理想特性以及它们对传输信号的影响,并通过测试平台评估了不同器件传输特性对信号邻信道功率比(ACPR)及误差向量幅度(EVM)的影响.结果表明非理想特性中相偏或相位抖动对系统影响较小,而IQ不均衡度大及量化位数少对系统性能有较大影响,并对硬件实现提出了一些有用的技术参数要求. In this paper, the effects of non-ideal characteristics of the loop devices on the performance of pre-distortion were studied using the semi-physical simulation platform. First, a pre-distortion model and adaptive algorithm to be employed were presented, and then non-ideal characteristics of these devices and their effects on the transmission signal were analyzed. The effects of the non-ideal characteristics of different components on the adjacent channel power ratio (ACPR) and error vector magnitude (EVM) of transmitted signal were evaluated through a practical experimental platform. The results show that phase offset and jitter have a small effect on the system performance, while larger IQ imbalance and small number of quantization bits can cause much performance degradation. Some useful technical requirements are given for implementation consideration as well.
出处 《北京理工大学学报》 EI CAS CSCD 北大核心 2016年第7期739-743,共5页 Transactions of Beijing Institute of Technology
基金 国家"十二五"部委预研项目(41001090205)
关键词 功率放大器 预失真技术 量化效应 IQ不平衡 power amplifier pre-distortion technique quantization effect IQ imbalance
作者简介 王华(1967-),男,博士,教授,E-mail:wanghua@bit.edu.cn
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  • 1吕海寰 蔡剑铭 甘仲民.卫星通信系统[M].北京:人民邮电出版社,1996..
  • 2Lv Haihuan. Satellite communication system [M]. Beijing: Posts & Telecommunications Press, 1996. (in Chinese).
  • 3Vuolevi J H K, Rahkonen T, Manninen J P A. Measurement technique for characterizing memory effects in RF power amplifiers[J]. IEEE Transactions on Microwave Theory and Techniques, 2001,49 (8):1383 - 1389.
  • 4Bennett T J, Clements R F. Feedforward-an alternative approach to amplifier linearization[J]. Radio and Elect Engineer, 1974,44(5) :257 - 262.
  • 5Cavers J K. Adaptation behavior of a feedforward amplifier linearizer [J]. IEEE Transactions on Vehicular Technology, 1995,44(1) :31 - 39.
  • 6Cripps S C. Advanced techniques in RF power amplifier design [M]. Norwood, MA: Artech House, 2002.
  • 7Eun C, Powers E J. A new Volterra predistorter based on the indirect learning architecture [J]. IEEE Transactions on Signal Processing, 1997, 45 ( 1 ): 223 -227.
  • 8Kim J, Konstantinou K. Digital predistortion of wideband signals based on power amplifier model with memory [J]. Electronics Letters, 2001, 37 ( 23): 1417 - 1418.
  • 9Ding L, Zhou G T, Morgan D R, et al. A robust digital baseband predistorter constructed using memory polynomials [J]. IEEE Transactions on Communications, 2004,52(1) :159 - 165.
  • 10Kang H W, Cho Y S, Youn D H. On compensating nonlinear distortions of an OFDM system using an efficient adaptive predistorter[J]. IEEE Transactions on Communications, 1999,47(4): 522 - 526.

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