Uppsala University, Signals and Systems Group, Uppsala, Sweden.
IEEE Trans Ultrason Ferroelectr Freq Control. 2010 Dec;57(12):2712-24. doi: 10.1109/TUFFC.2010.1745.
Lamb waves are considered a promising tool for the monitoring of plate structures. Large areas of plate structures can be monitored using active arrays employing beamforming techniques. Dispersion and multiple propagating modes are issues that need to be addressed when working with Lamb waves. Previous work has mainly focused on standard delay-and-sum (DAS) beamforming while reducing the effects of multiple modes through frequency selectivity and transducer design. This paper presents a minimum variance distortionless response (MVDR) approach for Lamb waves using a uniform rectangular array (URA) and a single transmitter. Theoretically calculated dispersion curves are used to compensate for dispersion. The combination of the MVDR approach and the two-dimensional array improves the suppression of interfering Lamb modes. The proposed approach is evaluated on simulated and experimental data and compared with the standard DAS beamformer. It is shown that the MVDR algorithm performs better in terms of higher resolution and better side lobe and mode suppression capabilities. Known issues of the MVDR approach, such as signal cancellation in highly correlated environments and poor robustness, are addressed using methods that have proven effective for the purpose in other fields of active imaging.
兰姆波被认为是监测板结构的一种很有前途的工具。采用波束形成技术的有源阵列可以监测大面积的板结构。在使用兰姆波时,需要解决频散和多个传播模式的问题。以前的工作主要集中在标准的延时和求和(DAS)波束形成上,同时通过频率选择性和换能器设计来减少多模态的影响。本文提出了一种使用均匀矩形阵列(URA)和单个发射器的兰姆波最小方差无失真响应(MVDR)方法。理论计算的频散曲线用于补偿频散。MVDR 方法和二维阵列的结合提高了对干扰兰姆模式的抑制能力。在所提出的方法上对模拟和实验数据进行了评估,并与标准的 DAS 波束形成器进行了比较。结果表明,MVDR 算法在更高的分辨率和更好的旁瓣和模式抑制能力方面表现更好。针对 MVDR 方法的已知问题,如在高度相关的环境中信号消除和较差的鲁棒性问题,使用已被证明在主动成像的其他领域有效的方法进行了处理。