首页> 外文会议>IEEE Conference on Industrial Electronics and Applications;ICIEA 2009 >Adaptive second-order Volterra filtered-X RLS algorithms with sequential and partial updates for nonlinear active noise control
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Adaptive second-order Volterra filtered-X RLS algorithms with sequential and partial updates for nonlinear active noise control

机译:自适应二阶Volterra滤波X RLS算法,具有顺序和部分更新的非线性主动噪声控制

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In this paper, we propose adaptive second-order Volterra filtered-X recursive least square (RLS) algorithms using sequential and partial updates for nonlinear active noise control. Recent research advancement has demonstrated that nonlinear active control is feasible for applications where the noise to be controlled may be a nonlinear and deterministic noise process such as chaotic noise rather than a stochastic, or white or tonal noise process, and both primary and secondary paths in an active noise control (ANC) system may exhibit a nonlinear behavior. To accommodate nonlinear active noise control, the standard second-order Volterra filtered-X recursive least square (VFXRLS) or least mean square (VFXLMS) algorithms are usually applied. The second-order VFXRLS algorithm offers fast convergence performance but suffers a huge computational burden. On the other hand, the standard second-order VFXLMS algorithm requires less computational complexity but behaves at a slow convergence rate. The proposed second-order VFXRLS algorithms with sequential and partial updates could significantly reduce the computational complexity required by the standard second-order VFXRLS algorithm with a compromised performance.
机译:在本文中,我们提出了采用顺序和部分更新的自适应二阶Volterra滤波X递归最小二乘(RLS)算法,用于非线性主动噪声控制。最近的研究进展表明,非线性主动控制对于需要控制的噪声可能是非线性和确定性噪声过程(例如混沌噪声而不是随机噪声,白噪声或同调噪声过程)的应用是可行的。有源噪声控制(ANC)系统可能会表现出非线性行为。为了适应非线性有源噪声控制,通常采用标准的二阶Volterra滤波X递归最小二乘(VFXRLS)或最小均方(VFXLMS)算法。二阶VFXRLS算法提供了快速的收敛性能,但计算量却很大。另一方面,标准的二阶VFXLMS算法所需的计算复杂度较低,但收敛速度较慢。所提出的具有顺序更新和部分更新的二阶VFXRLS算法可以显着降低标准二阶VFXRLS算法所需的计算复杂度,并且会降低性能。

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