Implementation of Multi-Core Processor for Beamforming Algorithm of Mobile ultrasound Image Signals


The KIPS Transactions:PartA, Vol. 18, No. 2, pp. 45-52, Apr. 2011
10.3745/KIPSTA.2011.18.2.45,   PDF Download:

Abstract

In the past, a patient went to the room where an ultrasound image diagnosis device was set, and then he or she was examined by a doctor. However, currently a doctor can go and examine the patient with a handheld ultrasound device who stays in a room. However, it was implemented with only fundamental functions, and can not meet the high performance required by the focusing algorithm of ultrasound beam which determines the quality of ultrasound image. In addition, low energy consumption was satisfied for the mobile ultrasound device. To satisfy these requirements, this paper proposes a high-performance and low-power single instruction, multiple data (SIMD) based multi-core processor that supports a representative beamforming algorithm out of several focusing methods of mobile ultrasound image signals. The proposed SIMD multi-core processor, which consists of 16 processing elements (PEs), satisfies the high-performance required by the beamforming algorithm by exploiting considerable data-level parallelism inherent in the echo image data of ultrasound. Experimental results showed that the proposed multi-core processor outperforms a commercial high-performance processor, TI DSP C6416, in terms of execution time (15.8 times better), energy efficiency (6.9 times better), and area efficiency (10 times better).


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Cite this article
[IEEE Style]
B. K. Choi and J. M. Kim, "Implementation of Multi-Core Processor for Beamforming Algorithm of Mobile ultrasound Image Signals," The KIPS Transactions:PartA, vol. 18, no. 2, pp. 45-52, 2011. DOI: 10.3745/KIPSTA.2011.18.2.45.

[ACM Style]
Byong Kook Choi and Jong Myon Kim. 2011. Implementation of Multi-Core Processor for Beamforming Algorithm of Mobile ultrasound Image Signals. The KIPS Transactions:PartA, 18, 2, (2011), 45-52. DOI: 10.3745/KIPSTA.2011.18.2.45.