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第 38 卷 第 1 期 吴礼福等: 一种调节反馈有源噪声控制系统水床效应的频域自适应算法 51
例中的对比结果表明:与已有 “FDFxLMS” 算法相 tions on Control Systems Technology, 1999, 7(1): 79–84.
比,本文算法对噪声放大量施加了约束;已有时域 [8] Zhang L, Tao J, Qiu X. Active control of transformer noise
with an internally synthesized reference signal[J]. Journal
泄漏FxLMS算法可以看作是本文算法的一种特例,
of Sound and Vibration, 2012, 331(15): 3466–3475.
并且本文算法能够更为直接精确地对指定频段内 [9] 斯科格斯特德 S, 波斯尔思韦特 I. 多变量反馈控制 ——分析
的噪声放大量进行调节。 与设计 [M]. 韩崇昭, 张爱民, 刘晓风, 译. 西安: 西安交通大
学出版社, 2011: 144–145.
[10] 张丽敏, 祖峰磊, 邱小军. 反馈有源噪声控制系统水床效应的
参 考 文 献 分析与改善 [J]. 应用声学, 2010, 29(6): 401–408.
Zhang Limin, Zu Fenglei, Qiu Xiaojun. Analysis and
[1] 张振超, 安峰岩, 吴鸣, 等. 一种数字有源降噪耳机控制器设 improvement on waterbed effect of feedback active noise
计方法 [J]. 应用声学, 2017, 36(4): 317–323. control system in China[J]. Journal of Applied Acoustics,
2010, 29(6): 401–408.
Zhang Zhenchao, An Fengyan, Wu Ming, et al. A method
for controller design of digital active noise control head- [11] Luo L, Sun J, Huang B. A novel feedback active noise
sets in China[J]. Journal of Applied Acoustics, 2017, 36(4): control for broadband chaotic noise and random noise[J].
317–323. Applied Acoustics, 2017, 116: 229–237.
[2] 郑洋, 唐加能. 应用于声反馈抑制的变步长归一化子带自适应 [12] Wu L, Qiu X, Guo Y. A simplified adaptive feedback
滤波算法 [J]. 应用声学, 2018, 37(3): 356–364. active noise control system[J]. Applied Acoustics, 2014,
Zheng Yang, Tang Jianeng. A variable step size normal- 81(6): 40–46.
ized subband adaptive filters for acoustic feedback can- [13] Wu L, Qiu X, Burnett I S, et al. Decoupling feedforward
cellation in China[J]. Journal of Applied Acoustics, 2018, and feedback structures in hybrid active noise control sys-
37(3): 356–364. tems for uncorrelated narrowband disturbances[J]. Jour-
[3] 武帅兵, 吴鸣, 杨军. 参量阵扬声器在管道噪声控制中的研 nal of Sound and Vibration, 2015, 350: 1–10.
究 [J]. 应用声学, 2013, 32(6): 439–445. [14] Shynk J J. Frequency-domain and multirate adaptive fil-
Wu Shuaibing, Wu Ming, Yang Jun. An investigation of tering[J]. IEEE Signal Processing Magazine, 2002, 9(1):
parametric array loudspeakers in active noise control of 14–37.
a duct in China[J]. Journal of Applied Acoustics, 2013, [15] 毛鑫, 卢晶, 邹海山. 频域自适应算法在有源噪声控制系统
32(6): 439–445. 中的性能研究 [J]. 南京大学学报: 自然科学, 2014, 50(1):
[4] Elliott S J. Signal processing for active control[M]. Lon- 41–45.
don: Academic Press, 2001: 5–10. Mao Xin, Lu Jing, Zou Haishan. Investigation of the
[5] 陈克安. 有源噪声控制 [M]. 北京: 国防工业出版社, 2014: performance of frequency domain adaptive filtering algo-
4–12. rithms in active noise control system in China[J]. Journal
[6] Bai M, Lee D. Implementation of an active headset by of Nanjing University, 2014, 50(1): 41–45.
using the H ∞ robust control theory[J]. Journal of the [16] Tobias O J, Seara R. Leaky-FxLMS algorithm: stochastic
Acoustical Society of America, 1997, 102(4): 2184–2190. analysis for Gaussian data and secondary path modeling
[7] Rafaely B, Elliott S J. H 2 /H ∞ active control of sound in error[J]. IEEE Transactions on Speech and Audio Process-
a headrest: design and implementation[J]. IEEE Transac- ing, 2005, 13(6): 1217–1230.