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Convex Combination of FXECAP– FXECLMS Algorithms for Active Noise Control

机译:FXECAP– FXECLMS算法的凸组合用于主动噪声控制

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Adaptive algorithms used for active noise control systems require a high convergence speed in order to be usable in real ANC applications. Affine projection (AP) algorithms offer a high convergence rate, however, this speed entails a high misadjustment. AP algorithms have been combined with other algorithms to address this misadjustment level, these combinations are known as a convex combination. However, such combinations tend to be computationally complex which precludes them from being used in ANC applications. This work presents a new convex combination, composed of the Filtered-x Error Coded Affine Projection and the Filtered-x Error Coded Least Mean Square Algorithm (CC FXECAP-FXECLMS), with the aim of obtaining an algorithm that retains the speed of the AP while achieving misadjustment levels of the LMS, while at the same time producing an algorithm with a computational complexity low enough to be practical for use in real ANC applications. Test results have confirmed the algorithm's capabilities and proven that the algorithm is suitable for this role.
机译:用于有源噪声控制系统的自适应算法需要较高的收敛速度,才能在实际的ANC应用中使用。仿射投影(AP)算法提供了很高的收敛速度,但是,这种速度带来了很大的失调。 AP算法已与其他算法组合在一起以解决此错误调整级别,这些组合称为凸组合。但是,这样的组合在计算上趋于复杂,这使得它们不能在ANC应用中使用。这项工作提出了一个新的凸组合,它由Filtered-x错误编码的仿射投影和Filtered-x错误编码的最小均方算法(CC FXECAP-FXECLMS)组成,目的是获得一种能够保持AP速度的算法同时达到LMS的失调水平,同时产生一种算法,其计算复杂度低得足以在实际ANC应用中使用。测试结果证实了该算法的功能,并证明该算法适合该角色。

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