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An FPGA-Based Cloud System for Massive ECG Data Analysis

机译:基于FPGA的海量心电数据分析云系统

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摘要

In this brief, we propose a stand-alone system-on-a-programmable-chip (SOPC)-based cloud system to accelerate massive electrocardiogram (ECG) data analysis. The proposed system tightly couples network I/O handling hardware to data processing pipelines in a single field-programmable gate array (FPGA), offloading both networking operations and ECG data analysis. In this system, we first propose a massive-sessions optimized TCP/IP hardware stack using a macropipeline architecture to accelerate network packet processing. Second, we propose a streaming architecture to accelerate ECG signal processing, including QRS detection, feature extraction, and classification. We verify our design on XC6VLX550T FPGA using real ECG data. Compared to commercial servers, our system shows up to 38× improvement in performance and 142× improvement in energy efficiency.
机译:在本简介中,我们提出了一个基于独立于可编程芯片系统(SOPC)的云系统,以加快大规模心电图(ECG)数据分析的速度。拟议的系统将网络I / O处理硬件与单个现场可编程门阵列(FPGA)中的数据处理管道紧密耦合,从而减轻了网络操作和ECG数据分析的负担。在此系统中,我们首先提出使用宏管道体系结构来加速网络数据包处理的大规模会话优化TCP / IP硬件堆栈。其次,我们提出了一种流传输架构来加速ECG信号处理,包括QRS检测,特征提取和分类。我们使用真实的ECG数据在XC6VLX550T FPGA上验证了我们的设计。与商用服务器相比,我们的系统性能提高了38倍,能源效率提高了142倍。

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