南京理工大学学报(自然科学版)
南京理工大學學報(自然科學版)
남경리공대학학보(자연과학판)
JOURNAL OF NANJING UNIVERSITY OF SCIENCE AND TECHNOLOGY
2014年
2期
287-290
,共4页
李艳萍%吴飞%郝青丽%高忠宝
李豔萍%吳飛%郝青麗%高忠寶
리염평%오비%학청려%고충보
信号与信息处理%盲多用户检测%多址干扰抑制%变步长最小均方误差算法%动量因子
信號與信息處理%盲多用戶檢測%多阯榦擾抑製%變步長最小均方誤差算法%動量因子
신호여신식처리%맹다용호검측%다지간우억제%변보장최소균방오차산법%동량인자
signal and information processing%blind multi-user detection%multi-access interference suppression%changeable step least mean square algorithm%momentum factors
针对3种经典的盲多用户检测算法中,最小均方误差( LMS)算法收敛速度慢、而递归最小二乘算法( RLS)和Kalman自适应算法计算复杂度高的问题,该文提出了一种基于动量因子的变步长LMS算法。该算法在初始阶段使用较大的步长值,根据同一接收信号在相邻两次迭代过程中检测器的输出值之差来动态调整步长,加快了LMS算法的收敛速度。仿真结果表明,该算法的收敛和检测性能明显好于传统的LMS算法,稳态输出接近RLS算法和Kalman算法,而计算量仅略高于传统LMS算法,可以实时有效地抑制多址干扰。
針對3種經典的盲多用戶檢測算法中,最小均方誤差( LMS)算法收斂速度慢、而遞歸最小二乘算法( RLS)和Kalman自適應算法計算複雜度高的問題,該文提齣瞭一種基于動量因子的變步長LMS算法。該算法在初始階段使用較大的步長值,根據同一接收信號在相鄰兩次迭代過程中檢測器的輸齣值之差來動態調整步長,加快瞭LMS算法的收斂速度。倣真結果錶明,該算法的收斂和檢測性能明顯好于傳統的LMS算法,穩態輸齣接近RLS算法和Kalman算法,而計算量僅略高于傳統LMS算法,可以實時有效地抑製多阯榦擾。
침대3충경전적맹다용호검측산법중,최소균방오차( LMS)산법수렴속도만、이체귀최소이승산법( RLS)화Kalman자괄응산법계산복잡도고적문제,해문제출료일충기우동량인자적변보장LMS산법。해산법재초시계단사용교대적보장치,근거동일접수신호재상린량차질대과정중검측기적수출치지차래동태조정보장,가쾌료LMS산법적수렴속도。방진결과표명,해산법적수렴화검측성능명현호우전통적LMS산법,은태수출접근RLS산법화Kalman산법,이계산량부략고우전통LMS산법,가이실시유효지억제다지간우。
For the three classical blind multiuser detection algorithms, the convergence rate of the least mean squares( LMS) is slower,and the recursive least squares( RLS) and the Kalman algorithm have higher computational complexity, a new changeable step algorithm based on the momentum factor is proposed. By using a larger step value in initial moment and dynamically adjusting step in it-eration phases according to the detector output error of the same symbol received in two adjacent iteration processes, the algorithm has the better convergence performance. Simulation results show that the convergence performance of the improving algorithms is better than that of the classical LMS,the stable output performance is close to that of the RLS and Kalman,and the computational complexity is a little higher than that of the LMS. The method can instantaneously and effectively suppress the multiaccess interference.