广东工业大学学报
廣東工業大學學報
엄동공업대학학보
JOURNAL OF GUANGDONG UNIVERSITY OF TECHNOLOGY
2015年
1期
85-90
,共6页
万小龙%刘海林%李炯城%肖恒辉
萬小龍%劉海林%李炯城%肖恆輝
만소룡%류해림%리형성%초항휘
峰均比%子载波预留%软限幅%牛顿迭代法%功率分配
峰均比%子載波預留%軟限幅%牛頓迭代法%功率分配
봉균비%자재파예류%연한폭%우돈질대법%공솔분배
peak to averaye power ratio(PAPR)%tone reservation%soft limiter%Newton iterative%sub-carrier power allocation
针对现有正交频分复用( Orthogonal Frequency Division Multiplexing, OFDM)系统峰均比( Peak to Averaye Pow-er Ratio,PAPR)抑制方法中子载波预留技术只是预留未承载数据的空子载波,没有考虑预留子载波功率分配的问题,提出了一种通过牛顿迭代法对预留子载波进行功率分配来降低PAPR的方法.该方法通过把预留子载波降低PAPR的过程归纳为一阶线性展开时域模型和离散功率谱频域模型的软限幅过程,通过时域限幅,频域滤波操作生成初始预留子载波信号,以信号失真功率比( Signal to Distortion and Noise Rutio,SDNR)最大化为目标函数,运用牛顿迭代法对预留子载波进行功率分配.仿真结果表明,该方法能有效降低峰均比,在载波数为256,预留载波数分别为16和32的条件下,峰均比抑制效果分别改善了4.0dB和4.3dB.
針對現有正交頻分複用( Orthogonal Frequency Division Multiplexing, OFDM)繫統峰均比( Peak to Averaye Pow-er Ratio,PAPR)抑製方法中子載波預留技術隻是預留未承載數據的空子載波,沒有攷慮預留子載波功率分配的問題,提齣瞭一種通過牛頓迭代法對預留子載波進行功率分配來降低PAPR的方法.該方法通過把預留子載波降低PAPR的過程歸納為一階線性展開時域模型和離散功率譜頻域模型的軟限幅過程,通過時域限幅,頻域濾波操作生成初始預留子載波信號,以信號失真功率比( Signal to Distortion and Noise Rutio,SDNR)最大化為目標函數,運用牛頓迭代法對預留子載波進行功率分配.倣真結果錶明,該方法能有效降低峰均比,在載波數為256,預留載波數分彆為16和32的條件下,峰均比抑製效果分彆改善瞭4.0dB和4.3dB.
침대현유정교빈분복용( Orthogonal Frequency Division Multiplexing, OFDM)계통봉균비( Peak to Averaye Pow-er Ratio,PAPR)억제방법중자재파예류기술지시예류미승재수거적공자재파,몰유고필예류자재파공솔분배적문제,제출료일충통과우돈질대법대예류자재파진행공솔분배래강저PAPR적방법.해방법통과파예류자재파강저PAPR적과정귀납위일계선성전개시역모형화리산공솔보빈역모형적연한폭과정,통과시역한폭,빈역려파조작생성초시예류자재파신호,이신호실진공솔비( Signal to Distortion and Noise Rutio,SDNR)최대화위목표함수,운용우돈질대법대예류자재파진행공솔분배.방진결과표명,해방법능유효강저봉균비,재재파수위256,예류재파수분별위16화32적조건하,봉균비억제효과분별개선료4.0dB화4.3dB.
For existing Tone Reservation algorithms for PAPR reduction of the OFDM system,null subcar-riers are reserved without considering the subcarrier power allocation.It proposed a subcarriers power al-location algorithm of an improved tone reservation with Newton iterative solver for PAPR Reduction.The process was summarized as a soft limiter process of a first-order linear expansion time-domain model and discrete power spectrum frequency-domain model.The method was to generate reserved tone by clipping in the time domain and filtering in the frequency domain and to view distortion power ratio ( SDNR) max-imization as the goal for the reserved sub-carrier power allocation.Simulation results show that this meth-od can effectively reduce the PAPR when the total number of carriers is 256 , the numbers of reserved car-riers are 16 and 32, and that PAPR suppression has been improved by 4.0dB and 4.3dB.