论文标题

在非雷神声阶段阵列中的频率选择性波梁

Frequency Selective Wave Beaming in Nonreciprocal Acoustic Phased Arrays

论文作者

Adlakha, R., Moghaddaszadeh, M., Attarzadeh, M. A., Aref, A., Nouh, M.

论文摘要

声学分阶段的阵列能够通过选择性协调多个声音发射器之间的相角空间分布来转向和聚焦声束。受互惠原理的限制,常规的分阶段阵列表现出相同的传输和接收模式,这些模式限制了其操作范围。这项工作提出了一个可控的时空声学分阶段阵列,它打破了时间反向对称性,并在动量和能量空间中启用了语音转变。通过利用动态相调制,所提出的线性阶段阵列不再受声学互惠的束缚,并且支持可以在多个通道上独立调整的不对称传播和接收模式。开发了一个基础框架来表征和解释新出现的非注册现象,并随后针对基准数值实验进行了验证。新的分阶段阵列有选择地改变了入射信号的方向和频率含量以及不同波场之间的频率转换,这是施加调制的函数。时空声学分阶段阵列可以在各种应用中对声波进行前所未有的控制,从超声成像到非破坏性测试和水下声纳电信。

Acoustic phased arrays are capable of steering and focusing a beam of sound via selective coordination of the spatial distribution of phase angles between multiple sound emitters. Constrained by the principle of reciprocity, conventional phased arrays exhibit identical transmission and reception patterns which limit the scope of their operation. This work presents a controllable space-time acoustic phased array which breaks time-reversal symmetry, and enables phononic transition in both momentum and energy spaces. By leveraging a dynamic phase modulation, the proposed linear phased array is no longer bound by the acoustic reciprocity, and supports asymmetric transmission and reception patterns that can be tuned independently at multiple channels. A foundational framework is developed to characterize and interpret the emergent nonreciprocal phenomena and is later validated against benchmark numerical experiments. The new phased array selectively alters the directional and frequency content of the incident signal and the frequency conversion between the different wave fields is analyzed as a function of the imposed modulation. The space-time acoustic phased array enables unprecedented control over sound waves in a variety of applications ranging from ultrasonic imaging to non-destructive testing and underwater SONAR telecommunication.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源