电子与信息学报
電子與信息學報
전자여신식학보
JOURNAL OF ELECTRONICS & INFORMATION TECHNOLOGY
2013年
3期
158-164
,共7页
钟佩琳*%王红星%孙小东%潘耀宗
鐘珮琳*%王紅星%孫小東%潘耀宗
종패림*%왕홍성%손소동%반요종
非正弦时域正交调制%功率放大器%预失真%查询表%压缩量化
非正絃時域正交調製%功率放大器%預失真%查詢錶%壓縮量化
비정현시역정교조제%공솔방대기%예실진%사순표%압축양화
Nonsinusoidal orthogonal modulation signal in time-domain%Power amplifier%Predistortion%Look-up table%Compressing quantization
针对基于椭圆球面波函数的非正弦时域正交调制信号峰均功率比较高,因而受功率放大器非线性失真影响较大的问题,该文设计了一种基于波形训练的非迭代查询表预失真结构.由于所选量化方法直接决定了查询表预失真器的精度,通过分析调制信号的幅值分布特性,提出一种综合考虑功率放大器特性及信号幅值分布特性的压缩量化方法.对采用所提预失真方法前后信号的带内带外失真特性进行了仿真,并与采用幅度均匀量化方式的性能进行了比较.结果表明,该文方法有效改善了非正弦时域正交调制信号功率谱及系统误码率特性,减小了功率放大器给信号带来的非线性失真.
針對基于橢圓毬麵波函數的非正絃時域正交調製信號峰均功率比較高,因而受功率放大器非線性失真影響較大的問題,該文設計瞭一種基于波形訓練的非迭代查詢錶預失真結構.由于所選量化方法直接決定瞭查詢錶預失真器的精度,通過分析調製信號的幅值分佈特性,提齣一種綜閤攷慮功率放大器特性及信號幅值分佈特性的壓縮量化方法.對採用所提預失真方法前後信號的帶內帶外失真特性進行瞭倣真,併與採用幅度均勻量化方式的性能進行瞭比較.結果錶明,該文方法有效改善瞭非正絃時域正交調製信號功率譜及繫統誤碼率特性,減小瞭功率放大器給信號帶來的非線性失真.
침대기우타원구면파함수적비정현시역정교조제신호봉균공솔비교고,인이수공솔방대기비선성실진영향교대적문제,해문설계료일충기우파형훈련적비질대사순표예실진결구.유우소선양화방법직접결정료사순표예실진기적정도,통과분석조제신호적폭치분포특성,제출일충종합고필공솔방대기특성급신호폭치분포특성적압축양화방법.대채용소제예실진방법전후신호적대내대외실진특성진행료방진,병여채용폭도균균양화방식적성능진행료비교.결과표명,해문방법유효개선료비정현시역정교조제신호공솔보급계통오마솔특성,감소료공솔방대기급신호대래적비선성실진.
Nonsinusoidal orthogonal modulation signal in time-domain has high peak-to-average power ratio, so it is vulnerable to the nonlinearity of power amplifier. To relieve this affection, a non-iterative look-up table predistortion method based on waveform training is presented which can obtain the amplitude and phase modification value fast and corretly. For the reason that the predistortion accuracy is directly associated with the chosen quantization method, a compressing quantization method is presented. The characteristic of power amplifier and the distribution characteristic of signal amplitude are taken considered in this method. The distortion characteristic in band and out of band of signal before and after imploying the presented predistortion method is simulated and compared with the method with equal space. The results show that the presented method can effectively improve the power spectrum of the signal and the bit error rate performance of system, and minish the intermodulated power of signal.