飞行器测控学报
飛行器測控學報
비행기측공학보
JOURNAL OF SPACECRAFT TT&C TECHNOLOGY
2015年
2期
184-188
,共5页
卫星通信%16QAM%记忆多项式%功放工作点%非线性阶数%记忆深度
衛星通信%16QAM%記憶多項式%功放工作點%非線性階數%記憶深度
위성통신%16QAM%기억다항식%공방공작점%비선성계수%기억심도
satellite communication%1 6QAM%memory polynomial%power back-off%nonlinearity order%memory depth
高阶信号通过功放时发生非线性失真,需对功放进行线性化补偿,功率回退法是最简单直接的线性化方法,但功放效率不高。数字信号处理技术的发展使得数字预失真技术成为补偿功放失真最有效的方式之一,在一定程度上促进了高阶调制信号在卫星通信中的应用,缓解频谱资源紧张问题。以16QAM 信号为对象,着重研究了预失真器模型的两个关键因子———非线性阶数和记忆深度———对预失真性能的影响。仿真结果表明,相较于非线性阶数,记忆深度对预失真性能的影响更大;而且功率回退法和数字预失真方法的结合使用可以取得更好的预失真效果。
高階信號通過功放時髮生非線性失真,需對功放進行線性化補償,功率迴退法是最簡單直接的線性化方法,但功放效率不高。數字信號處理技術的髮展使得數字預失真技術成為補償功放失真最有效的方式之一,在一定程度上促進瞭高階調製信號在衛星通信中的應用,緩解頻譜資源緊張問題。以16QAM 信號為對象,著重研究瞭預失真器模型的兩箇關鍵因子———非線性階數和記憶深度———對預失真性能的影響。倣真結果錶明,相較于非線性階數,記憶深度對預失真性能的影響更大;而且功率迴退法和數字預失真方法的結閤使用可以取得更好的預失真效果。
고계신호통과공방시발생비선성실진,수대공방진행선성화보상,공솔회퇴법시최간단직접적선성화방법,단공방효솔불고。수자신호처리기술적발전사득수자예실진기술성위보상공방실진최유효적방식지일,재일정정도상촉진료고계조제신호재위성통신중적응용,완해빈보자원긴장문제。이16QAM 신호위대상,착중연구료예실진기모형적량개관건인자———비선성계수화기억심도———대예실진성능적영향。방진결과표명,상교우비선성계수,기억심도대예실진성능적영향경대;이차공솔회퇴법화수자예실진방법적결합사용가이취득경호적예실진효과。
Nonlinear distortion occurs when high-order modulation signals pass through a power amplifier and linear compensation is required for the power amplifier.Power back-off is the simplest and most direct method,but the efficiency of power amplifier is not high.Thanks to the development of DSP (Digital Signal Processing)technology, digital pre-distortion has become one of the most effective ways to compensate for nonlinear distortion caused by power amplifiers.To a certain extent,this has promoted the application of high-order modulation signals in satellite communication and has relaxed the problem of spectrum resource shortage.Choosing 1 6QAM signal as the research object,we focus on the impact of two key factors of the pre-distortion model, nonlinearity order and memory depth,on pre-distortion performance.Simulation results show that memory depth has greater impact on the pre-distortion performance,when compared to nonlinearity order.Furthermore, the combination of power back-off method and the digital pre-distortion method yields better pre-distortion performance.