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An FPGA-based embedded system for portable and cost-efficient bio-sensing: A low-cost controller for biomedical diagnosis

机译:基于FPGA的嵌入式系统,用于便携式和经济高效的生物传感:生物医学诊断的低成本控制器

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This paper presents a design of an embedded system for a portable and cost effective bio-sensing. With our system, users can easily and cost-efficiently generate the necessary control signals such as cyclic waves for bio-sensors with precisely controlled timing. The bio-sensing system consists of an analog-to-digital converter (ADC) used for data acquisition, digital-to-analog converter (DAC) in order to generate cyclic wave for a biosensor, field programmable gate array (FPGA) to interface with computer, and potentiostat for biosensor signal processing. Our system has two modes that are software controlled real time mode for real-time data acquisition and hardware controlled burst mode for high-speed data acquisition. The system accuracy was evaluated by series R-test. In cyclic voltammetry test with a Ru(NH3)6Cl3, a graph provided by our system has 2.77% relative error at current peak compared with the data acquired by a 18 times more expensive commercial system.
机译:本文介绍了一种用于便携式和经济高效的生物传感的嵌入式系统的设计。通过我们的系统,用户可以轻松且经济高效地为具有精确控制的定时进行生物传感器的必要控制信号,例如生物传感器。生物传感系统由用于数据采集,数模转换器(DAC)的模数转换器(ADC)组成,以便为生物传感器,现场可编程门阵列(FPGA)生成循环波到接口使用计算机和Potentiostat进行生物传感器信号处理。我们的系统有两种模式,是软件控制的实时模式,用于实时数据采集和硬件控制突发模式,用于高速数据采集。通过RS-TEST评估系统精度。在Ru(NH3)6CL3的循环伏安测定中,与我们的系统提供的图表提供了2.77%的相对误差,与由昂贵的商业系统获得的18倍的数据相比。

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