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Simultaneous multi-channel data acquisition using a scalable adaptive heterogeneous maximum service scheduler

机译:使用可扩展的自适应异构最大服务调度程序同时多通道数据采集

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In this paper, a novel simultaneous multi-channel data acquisition system is proposed. Analog signals with different bandwidths are applied to an analog multiplexer with a single analog to digital converter. A novel scalable adaptive Heterogeneous Maximum Service (HMS) scheduler is designed to detect different bandwidths in order to determine the proper sampling rate for each input signal. The analog multiplexer is adaptively controlled to switch between the analog signals of variable bandwidths. The target technology of implementing the proposed design is the Field Programmable Gate Array (FPGA). The Analog-to-Digital Converter interface and the adaptive scheduler are implemented in the FPGA using hardware description language. The synthesized prototype used only 11% of the total logic elements (of Altera Cyclone II, EP2C35F672C-6N FPGA) and 15% of its total memory bits. The worst-case prorogation delay observed for the system is 12.04 ns, which is less than the 50 MHz clock period of 20ns. The Cyclone-II FPGA consumes power as low as 12 mW. The proposed acquisition root mean square of error is 2×10-15. The proposed system can be used in various applications that require heterogeneous multi-channel data acquisition system such as biomedical devices.
机译:本文提出了一种新颖的同步多通道数据采集系统。具有不同带宽的模拟信号应用于具有单个模拟变换器的模拟多路复用器。新颖的可扩展自适应异构最大服务(HMS)调度器被设计为检测不同的带宽,以便确定每个输入信号的正确采样率。可以自适应地控制模拟多路复用器以在可变带宽的模拟信号之间切换。实现所提出的设计的目标技术是现场可编程门阵列(FPGA)。模数转换器接口和自适应调度器使用硬件描述语言在FPGA中实现。合成的原型仅使用总逻辑元素的11%(Altera Cyclone II,EP2C35F672C-6N FPGA)和其总存储位的15%。为系统观察到的最坏情况的proRogation延迟是12.04ns,其小于20ns的50 MHz时钟周期。 Cyclone-II FPGA消耗低至12兆瓦的电力。所提出的获取误差的均线为2× 10-15。所提出的系统可用于各种应用,该应用需要异构多通道数据采集系统,例如生物医学设备。

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