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A user configurable data acquisition and signal processing system for high-rate, high channel count applications

机译:用户可配置的数据采集和信号处理系统,用于高速率,高通道数应用

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摘要

Real-time signal processing in plasma fusion experiments is required for control and for data reduction as plasma pulse times grow longer. The development time and cost for these high-rate, multichannel signal processing systems can be significant. This paper proposes a new digital signal processing (DSP) platform for the data acquisition system that will allow users to easily customize real-time signal processing systems to meet their individual requirements. The D-TACQ reconfigurable user in-line DSP (DRUID) system carries out the signal processing tasks in hardware co-processors (CPs) implemented in an FPGA, with an embedded microprocessor (u,P) for control. In the fully developed platform, users will be able to choose co-processors from a library and configure programmable parameters through the μP to meet their requirements. The DRUID system is implemented on a Spartan 6 FPGA, on the new rear transition module (RTM-T), a field upgrade to existing D-TACQ digitizers. As proof of concept, a multiply-accumulate (MAC) co-processor has been developed, which can be configured as a digital chopper-integrator for long pulse magnetic fusion devices. The DRUID platform allows users to set options for the integrator, such as the number of masking samples. Results from the digital integrator are presented for a data acquisition system with 96 channels simultaneously acquiring data at 500kSampIes/s per channel.
机译:随着等离子体脉冲时间的延长,控制和减少数据需要等离子体融合实验中的实时信号处理。这些高速率,多通道信号处理系统的开发时间和成本可能很高。本文为数据采集系统提出了一个新的数字信号处理(DSP)平台,该平台将使用户能够轻松定制实时信号处理系统以满足他们的个性化需求。 D-TACQ可重配置用户串联DSP(DRUID)系统在FPGA中实现的硬件协处理器(CP)中执行信号处理任务,并使用嵌入式微处理器(u,P)进行控制。在完全开发的平台中,用户将能够从库中选择协处理器,并通过μP配置可编程参数以满足他们的要求。 DRUID系统在Spartan 6 FPGA上,新的后转换模块(RTM-T)上实现,是对现有D-TACQ数字化仪的现场升级。作为概念验证,已经开发了乘法累加(MAC)协处理器,可以将其配置为长脉冲磁聚变设备的数字斩波积分器。 DRUID平台允许用户设置积分器的选项,例如掩膜样本数。给出了具有96个通道的数据采集系统的数字积分器结果,该系统同时以每通道500kSampIes / s的速率采集数据。

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