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Implementation of synthetic aperture imaging on a hand-held device

机译:在手持设备上实现合成孔径成像

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摘要

This paper presents several implementations of Syn- thetic Aperture Sequential Beamforming (SASB) on commer- cially available hand-held devices. The implementations include real-time wireless reception of ultrasound radio frequency sig- nals and GPU processing for B-mode imaging. The proposed implementation demonstrates that SASB can be executed in-time for real-time ultrasound imaging. The wireless communication between probe and processing device satisfies the required bandwidth for real-time data transfer with current 802.11ac technology. The implementation is evaluated using four different hand-held devices all with different chipsets and a BK Medical UltraView 800 ultrasound scanner emulating a wireless probe. The wireless transmission is benchmarked using an imaging setup consisting of 269 scan lines x 1472 complex samples (1.58 MB pr. frame, 16 frames per second). The measured data throughput reached an average of 28.8 MB/s using a LG G2 mobile device, which is more than the required data throughput of 25.3 MB/s. Benchmarking the processing performance for B-mode imaging showed a total processing time of 18.9 ms (53 frames/s), which is less than the acquisition time (62.5 ms).
机译:本文介绍了在商用手持设备上的合成孔径顺序波束形成(SASB)的几种实现。这些实现包括超声信号的实时无线接收以及用于B模式成像的GPU处理。所提出的实现方式证明了SASB可以实时执行以进行实时超声成像。探针和处理设备之间的无线通信满足使用当前802.11ac技术进行实时数据传输所需的带宽。使用四个具有不同芯片组的手持设备和一个模拟无线探头的BK Medical UltraView 800超声扫描仪对实施情况进行评估。使用由269条扫描线x 1472个复杂样本(1.58 MB pr。帧,每秒16帧)组成的成像设置对无线传输进行基准测试。使用LG G2移动设备测得的数据吞吐率平均达到28.8 MB / s,这比要求的25.3 MB / s的数据吞吐率还高。对B模式成像的处理性能进行基准测试显示,总处理时间为18.9毫秒(53帧/秒),小于采集时间(62.5毫秒)。

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