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Design of a Portable, Intrinsically Safe Multichannel Acquisition System for High-Resolution, Real-Time Processing HD-sEMG

机译:便携式,本质安全的多通道采集系统的设计,用于高分辨率,实时处理HD-sEMG

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A compact and portable system for real-time, multichannel, HD-sEMG acquisition is presented. The device is based on a modular, multiboard approach for scalability and to optimize power consumption for battery operating mode. The proposed modular approach allows us to configure the number of sEMG channels from 64 to 424. A plastic-optical-fiber-based 10/100 Ethernet link is implemented on a field-programmable gate array (FPGA)-based board for real-time, safety data transmission toward a personal computer or laptop for data storage and offline analysis. The high-performance A/D conversion stage, based on 24-bit ADC, allows us to automatically serialize the samples and transmits them on a single SPI bus connecting a sequence of up to 14 ADC chips in chain mode. The prototype is configured to work with 64 channels and a sample frequency of 2.441 ksps (derived from 25-MHz clock source), corresponding to a real data throughput of 3 Mbps. The prototype was assembled to demonstrate the available features (e.g., scalability) and evaluate the expected performances. The analog front end board could be dynamically configured to acquire sEMG signals in monopolar or single differential mode by means of FPGA I/O interface. The system can acquire continuously 64 channels for up to 5 h with a lightweight battery pack of 7.5 Vdc/2200 mAh. A PC-based application was also developed, by means of the open source Qt Development Kit from Nokia, for prototype characterization, sEMG measurements, and real-time visualization of 2-D maps.
机译:提出了一种用于实时,多通道,HD-sEMG采集的紧凑便携式系统。该设备基于模块化的多板方法,以实现可扩展性并针对电池工作模式优化功耗。所提出的模块化方法使我们可以将sEMG通道的数量配置为64到424。在基于现场可编程门阵列(FPGA)的板上实现了基于塑料光纤的10/100以太网链路,以实现实时,可将安全数据传输到个人计算机或笔记本电脑,以进行数据存储和离线分析。基于24位ADC的高性能A / D转换级使我们能够自动对样本进行序列化,并在单个SPI总线上将其传输,并以链式模式连接多达14个ADC芯片的序列。该原型配置为可使用64个通道,采样频率为2.441 ksps(来自25 MHz时钟源),对应于3 Mbps的实际数据吞吐量。组装原型以演示可用功能(例如,可伸缩性)并评估预期性能。可以通过FPGA I / O接口将模拟前端板动态配置为以单极性或单差分模式采集sEMG信号。该系统使用7.5 Vdc / 2200 mAh的轻量电池组,可以连续获取长达5小时的64个通道。还借助诺基亚的开源Qt开发工具包开发了基于PC的应用程序,用于原型表征,sEMG测量和二维地图的实时可视化。

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