超宽带信号带内平坦度的自适应补偿方法
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1.中电科思仪科技股份有限公司 青岛 266555;2.中国电子科技集团公司第四十一研究所 青岛 266555; 3.中国石油大学(华东)海洋与空间信息学院 青岛 266580

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TN91

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国家自然基金(41974144)资助项目


Adaptive Compensation Method for In-Band Flatness of Ultra-Wideband Signal
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1. Ceyear Technologies Co., Ltd, Qingdao 266555, China; 2. The 41st Institute of CETC, Qingdao 266555, China; 3. China University of Petroleum, College of Oceanography and Space Informatics, Qingdao 266580, China

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    摘要:

    对于宽带接收系统,前端器件增益不平衡由此导致宽带系统带内幅度平坦度的恶化,严重影响系统测量结果的准确性,因此需要对已失真的信道传输特性进行补偿以提高带内幅度平坦度。现有技术主要采用频域采样法设计补偿滤波器实现,但是这种方法设计的滤波器阶数过高,通常达到200阶以上。面向测试仪器的工程应用,针对传统的最小均方误差(LMS)和递推最小二乘(RLS)自适应滤波算法不能兼顾收敛速度和稳态误差的缺陷,分别设计了基于变步长因子的LMS超宽带信号平坦度补偿技术和基于变遗忘因子的RLS的超宽带信号平坦度补偿技术。实验结果表明,所提出的两种方法能在获得良好幅度平坦度优化效果的基础上将滤波器阶数降到100阶以下。

    Abstract:

    For broadband receiving systems, the imbalanced gain of front-end devices leads to the deterioration of in-band amplitude flatness of broadband systems, which seriously affects the accuracy of system measurement result. Therefore, it is necessary to compensate the distorted channel transmission characteristics to improve in-band amplitude flatness. The existing technology mainly adopts the frequency domain sampling method to design the compensation filter, but the order of the filter designed by this method is too high, usually reaching more than 200 orders. Aiming at the defects that the traditional LMS and RLS adaptive filtering algorithms can’t take into account the convergence speed and steady-state error, this paper designed two UWB flatness compensation technologies respectively based on LMS with variable step size factor and RLS with variable forgetting factor for the engineering application of test instruments. The simulation results showed that the proposed two methods can reduce the order of the filter to less than 100 orders on the basis of ensuring good amplitude flatness optimization.

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张鹏,李武,张超,张亚洲,戴永寿.超宽带信号带内平坦度的自适应补偿方法[J].国外电子测量技术,2023,42(01):107-111

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  • 在线发布日期: 2024-05-21
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