具有开口的振动声系统中的双驱动器类型主动噪声控制
Khaled Said Ahmed Maamoun1,2, Chung Kwan Lai3, Stanislaw Wrona4
1Department of Measurements and Control Systems, Silesian University of Technology, Gliwice, 44-100, Poland. Khaled.Maamoun@polsl.pl.
Scientific reports
|September 1, 2025
概括
本研究介绍了双驱动器类型的活性噪声控制 (DATANC) 用于在具有结构开口的系统中降低噪声. DATANC将扬声器和惯性执行器结合在一起,有效地减少振动声学共振,优于单一执行器方法.
科学领域:
- 工程
- 听力学
- 振动声学
背景情况:
- 结构开口在振动声系统中对于空气流动至关重要,但也带来了噪音控制的挑战.
- 主动噪声控制和主动结构声学控制 (ASAC) 是缓解这些系统噪声的关键策略.
研究的目的:
- 研究具有结构开口的振动声系统中的噪声控制.
- 引入和评估一种新的双执行器类型主动噪声控制 (DATANC) 方法.
- 优化执行器的位置,以最大限度地降低噪音.
主要方法:
- 开发一个集成到分析模型中的声功率估计方法.
- 对各种ASAC配置进行实验分析,包括最佳的执行器位置.
- 评估将扬声器和惯性执行器结合在一起的DATANC方法.
- 使用具有透明盖的板进行声学泄漏贡献的分析.
主要成果:
- 在开口边缘附近的执行器显示最大的噪声降低 (100-200 Hz),其中声学泄漏占主导地位.
- DATANC在减弱振动声共振方面始终优于单一执行器配置.
- 提出的分析模型与实验观察有很强的一致性.
- 评估了声漏,并评估了它对系统性能的贡献.
结论:
- 在具有结构开口的系统中,优化执行器位置对于有效的噪声控制至关重要.
- DATANC提供了一种实用且计算效率高的降噪解决方案.
- 这些发现为需要结构开口的工程应用提供了可行的噪声管理策略.
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