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lms algorithm中文是什么意思

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  • Based on x-filtered lms algorithm and-filtered lms algorithm adaptive inverse control, we use a new variable step size lms algorithm . adding little computation, variable step size lms algorithm can result in fast convergence speed and low residual error simultaneously . the adaptive feedback control can counteract the beginning error of the system
    在原来的x-滤波lms算法自适应逆控制和-滤波lms算法自适应逆控制方法的基础上,引入了新的变步长lms算法,在计算量增加不多的前提下,能同时获得较快的收敛速度和较小的稳态误差;引入自适应的反馈补偿控制克服了被控系统的直流零频漂移,使控制系统在初开始工作阶段快速收敛;还引入自适应扰动消除器,它能最大限度的消除扰动。
  • At one time the thesis look back the part parallel interference cancellation detection, and update the algorithm of the multiuser with lms algorithm . at last, the thesis presentes the blind multiuser detection with adaptive algorithm the blind multiuser detection base on kalman algorithm and probabilistic algorithms for blind adaptive multiuser detection
    同时对部分并行干扰多用户检测器进行了回顾,并用lms算法实现了多用户检测器的算法更新。最后对盲多用户检测的自适应算法进行了介绍,构造基于kalman滤波的盲多用户检测器,并对随机梯度算法进行了误码性能的分析。
  • Fast lms / newton algorithm has provided the possibility of the real-time acoustic echo cancellation ~ [ 4 ] . it combined with the simplicity of the lms algorithm and the fast convergence rate of the newton algorithm . based on the fast lms / newton algorithm, an improved fast lms / newton algorithm has been presented in this paper
    本文在原有的快速u心劝啪wton算法的基础上,对算法进行了改进,经计算机模拟验证,改进的算法在稍微增加一点运算量的前提下,得到了更快的收敛速度及更稳定的性能lgl。
  • The theoretical and experiment results shows that the digital examine and control system which adopts vss lms algorithm can allow the apf to track changes in the system as well as produce a small steady state error, therefore ensures the speed and precision of apf . also erase / program flash on system and bootload are achieved
    实验结果表明,采用变步长lms算法的数字化检测与控制系统同时保证了谐波检测的速度与精度,在负载变化时有更好的跟踪能力,满足有源电力滤波器对谐波检测的要求。
  • The main contact is about the implement of the feedback aanc system using internal model control ( imc ) configuration . firstly, the performance of common filter-x lms algorithm is examined . then, the algorithm of feedback aanc systems based on filtering-x lms algorithm is deduced
    论文以内模型控制实现自适应有源反馈控制系统为核心,研究了常规滤波?xlms算法性能,推导了基于滤波?xlms算法的自适应内模型控制有源反馈算法,通过计算机仿真研究了单通道和多通道条件下该系统性能。
  • The main contact is about the implement of the feedback aanc system using internal model control ( imc ) configuration . firstly, the performance of common filter-x lms algorithm is examined . then, the algorithm of feedback aanc systems based on filtering-x lms algorithm is deduced
    论文以内模型控制实现自适应有源反馈控制系统为核心,研究了常规滤波?xlms算法性能,推导了基于滤波?xlms算法的自适应内模型控制有源反馈算法,通过计算机仿真研究了单通道和多通道条件下该系统性能。
  • Results of computer simulations prove that the mud has higher sinr value, effective mai cancellation, better near-far resistance capability than decorrelating mud . so it's feasible and reasonable . simulation results also show that the lms algorithm can exactly converge to stationary value, works well on ber properties and adaptively detects the users " signals
    实验仿真表明稳态时这种结构的检测器可获得高于解相关检测器的信号干扰比,能够有效地抑制多址干扰,具有良好的抗远近效应能力;采用lms自适应算法时能够准确收敛到稳态解上,较好的实现自适应检测。
  • The mutual coupling between elements is expressed in terms of the normalized impedance matrix of the uniform linear array, the concise expressions for the optimized weight of the lms algorithm and the signal-to-interference-plus-noise ratio are given . the effect of mutual coupling on the performance of the sinr is illustrated with two examples, a method for compensating the mutual coupling is present, the compensation effect of this method is verified by example
    用谱分析法,把阵元问的互耦用阵列的归一化阻抗矩阵来描述,推导了均匀线阵的最佳权矢量及信号干扰噪声比的表达式,仿真计算了互耦对自适应天线阵列的信号干扰噪声比的影响,给出了一种校正互耦的方法,数值模拟了校正的效果。
  • The paper discusses adaptive parallel interference cancellation ( pic ) algorithm based on the research of multi-user detect technology, analyzes the effect of partial cancellation factor on the performance of detector, put forward a new variable step size lms algorithm, and applies the algorithm to pic
    本文在现有多用户检测技术研究成果的基础上,对自适应并行干扰抵消多用户检测算法进行了深入的研究,分析了部分干扰抵消系数对检测器性能的影响,提出了一种新的变步长lms算法,并将该算法应用于部分干扰抵消器。
  • 更多例句:  1  2  3  4
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Last modified time:Mon, 11 Aug 2025 00:29:56 GMT

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