首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Application of X-Y separable 2-D array beamforming for increased frame rate and energy efficiency in handheld devices
【24h】

Application of X-Y separable 2-D array beamforming for increased frame rate and energy efficiency in handheld devices

机译:X-Y可分离二维阵列波束成形在手持设备中提高帧速率和能源效率的应用

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Two-dimensional arrays present significant beamforming computational challenges because of their high channel count and data rate. These challenges are even more stringent when incorporating a 2-D transducer array into a battery-powered hand-held device, placing significant demands on power efficiency. Previous work in sonar and ultrasound indicates that 2-D array beamforming can be decomposed into two separable line-array beamforming operations. This has been used in conjunction with frequency-domain phase-based focusing to achieve fast volume imaging. In this paper, we analyze the imaging and computational performance of approximate near-field separable beamforming for high-quality delay-and-sum (DAS) beamforming and for a low-cost, phase-rotation-only beamforming method known as direct-sampled in-phase quadrature (DSIQ) beamforming. We show that when high-quality time-delay interpolation is used, separable DAS focusing introduces no noticeable imaging degradation under practical conditions. Similar results for DSIQ focusing are observed. In addition, a slight modification to the DSIQ focusing method greatly increases imaging contrast, making it comparable to that of DAS, despite having a wider main lobe and higher side lobes resulting from the limitations of phase-only time-delay interpolation. Compared with non-separable 2-D imaging, up to a 20-fold increase in frame rate is possible with the separable method. When implemented on a smart-phone-oriented processor to focus data from a 60 ?????? 60 channel array using a 40 ?????? 40 aperture, the frame rate per C-mode volume slice increases from 16 to 255 Hz for DAS, and from 11 to 193 Hz for DSIQ. Energy usage per frame is similarly reduced from 75 to 4.8 mJ/ frame for DAS, and from 107 to 6.3 mJ/frame for DSIQ. We also show that the separable method outperforms 2-D FFT-based focusing by a factor of 1.64 at these data sizes. This data indicates that with the optimal design choices, separable 2-D beamforming can s- gnificantly improve frame rate and battery life for hand-held devices with 2-D arrays.
机译:二维阵列由于其高通道数和数据速率而带来了重大的波束成形计算挑战。当将二维换能器阵列集成到电池供电的手持式设备中时,这些挑战更加严峻,对功率效率提出了很高的要求。声纳和超声的先前工作表明,二维阵列波束成形可以分解为两个可分离的线阵列波束成形操作。它已与基于频域相位的聚焦结合使用,以实现快速的体积成像。在本文中,我们分析了用于高质量延迟和和(DAS)波束形成以及低成本,仅相位旋转的波束形成方法(称为直接采样)的近似近场可分离波束形成的成像和计算性能。同相正交(DSIQ)波束成形。我们表明,当使用高质量的时间插值时,可分离的DAS聚焦在实际条件下不会引起显着的图像劣化。观察到DSIQ聚焦的相似结果。此外,对DSIQ聚焦方法的稍加修改大大提高了成像对比度,使其与DAS相当,尽管由于仅相位延时插值的局限性而导致主瓣较宽,旁瓣较高。与不可分离的2D成像相比,可分离方法可以将帧速率提高多达20倍。当在面向智能手机的处理器上实现以集中来自60的数据时使用40通道的60通道阵列对于40个光圈,对于DAS,每个C模式体积切片的帧速率从16 Hz增大到255 Hz,对于DSIQ从11增大到193 Hz。同样,对于DAS,每帧的能耗从75降低到4.8 mJ /帧,对于DSIQ,从107降低到6.3 mJ /帧。我们还表明,在这些数据大小下,可分方法比基于2D FFT的聚焦性能高1.64倍。这些数据表明,通过最佳设计选择,可分离的2D波束成形可以显着提高具有2D阵列的手持式设备的帧速率和电池寿命。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号