A spatial active noise control (ANC) method based on the individual kernel interpolation of primary and secondary sound fields is proposed. Spatial ANC is aimed at cancelling unwanted primary noise within a continuous region by using multiple secondary sources and microphones. A method based on the kernel interpolation of a sound field makes it possible to attenuate noise over the target region with flexible array geometry. Furthermore, by using the kernel function with directional weighting, prior information on primary noise source directions can be taken into consideration. However, whereas the sound field to be interpolated is a superposition of primary and secondary sound fields, the directional weight for the primary noise source was applied to the total sound field in previous work; therefore, the performance improvement was limited. We propose a method of individually interpolating the primary and secondary sound fields and formulate a normalized least-mean-square algorithm based on this interpolation method. Experimental results indicate that the proposed method outperforms the method based on total kernel interpolation.
翻译:根据一级和二级声场的单个内核内核内插,提出了空间活性噪音控制方法(ANC),目的是利用多个二级源和麦克风,消除连续区域内不必要的初级噪音;根据声音场内核内插,有可能以灵活阵列几何法在目标区域减少噪音;此外,通过使用带有定向加权的内核功能,可以考虑到关于初级噪音源方向的事先信息;然而,拟插入的声场是一级声场和二级声场的叠加,而主要噪音源的方向重量在以往工作中适用于整个声场;因此,性能改进是有限的;我们建议了一种单独对初级声场和二级声场内插的方法,并根据这种内核内核内分解法制定一种标准化的最小平方算法;实验结果表明,拟议的方法超过了基于总内核内振的计算法。