让降噪只消音不破坏目标方向的声音,一次计算搞定。
Direction-Preserving Active Noise Control with a Conditional Control-Filter Estimation Network
- 用方向条件控制的神经网络直接估计降噪滤波器
- 平均降噪22.8分贝,目标声音失真仅-11.4分贝
- 适合需要精准定向降噪的耳机和听觉设备
传统主动降噪(ANC)在误差麦克风处最小化总扰动,不区分期望声音与噪声。方向保持型主动降噪(DP-ANC)则旨在抑制非目标方向的噪声,同时保留来自指定方向的自然声音。现有方法通常需对每次新观测重复解析优化,或通过听筒路径估计并重建期望成分。本文将DP-ANC建模为方向条件下的抵消-保留优化问题,提出分量分离目标函数,联合惩罚残留噪声能量与期望成分引起的控制响应,以标量权重调节抵消与保留的权衡。采用受特征逐元素线性调制(FiLM)控制的方向条件卷积网络,基于可微的次级路径感知前向模型训练。部署时,网络仅需一次前向传播,即可从混合参考信号和指定方向中直接估计完整的多通道有限脉冲响应(FIR)控制滤波器组,同时保持传统前馈ANC信号路径。超过3300个测试案例中,所选工作点实现22.8 dB平均降噪,目标信号失真为-11.4 dB。使用实测耳戴设备传输函数的验证进一步证明其在真实声学配置下性能稳定。
原文摘要 · Abstract (English)
Conventional active noise control (ANC) minimizes the total disturbance at the error microphone without distinguishing desired sound from noise. Direction-preserving ANC (DP-ANC) instead aims to attenuate a noise component arriving from a direction other than the specified desired direction while preserving sound naturally arriving from that direction. Existing approaches typically either require analytical optimization to be repeated for each new observation or estimate and reproduce the desired component through a hear-through secondary-source path. To address these limitations, this paper formulates DP-ANC as a direction-conditioned cancellation-preservation optimization problem. A component-separated objective jointly penalizes residual noise energy and the control response induced by the desired component, with a scalar weighting parameter controlling the cancellation-preservation trade-off. A convolutional network conditioned on the specified desired direction through feature-wise linear modulation (FiLM) is trained using a differentiable secondary-path-aware forward model. At deployment, the network estimates the complete multichannel finite impulse response (FIR) control-filter bank directly from a mixed-reference observation and the specified desired direction in a single forward pass, while retaining the conventional feedforward ANC signal path. Over 3300 evaluation cases, the selected operating point achieves 22.8 dB mean noise reduction with a desired-signal distortion of -11.4 dB. Validation using measured in-ear-device transfer functions further demonstrates consistent performance under measured acoustic configurations.
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