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Development of a compact and cost effective multi-input digital signal processing system

机译:开发紧凑且经济高效的多输入数字信号处理系统

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摘要

A prototype digital signal processing system (DSP) was developed using a microcontroller interfaced with a 12-bit sampling ADC, which offers a considerably inexpensive solution for processing multiple detectors with high throughput. After digitization of the incoming pulses, in order to maximize the output counting rate, a simple algorithm was employed for pulse height analysis. Moreover, an algorithm aiming at the real-time pulse pile-up deconvolution was implemented. The system was tested using a Nal(Tl) detector in comparison with a traditional analogue and commercial digital systems for a variety of count rates. The performance of the prototype system was consistently superior to the analogue and the commercial digital systems up to the input count rate of 61 kcps while was slightly inferior to the commercial digital system but still superior to the analogue system in the higher input rates. Considering overall cost, size and flexibility, this custom made multi-input digital signal processing system (MMI-DSP) was the best reliable choice for the purpose of the 2D microdosimetric data collection, or for any measurement in which simultaneous multi-data collection is required.
机译:原型数字信号处理系统(DSP)是使用与12位采样ADC相连的微控制器开发的,它为处理具有高吞吐量的多个检测器提供了相当便宜的解决方案。在对输入脉冲进行数字化之后,为了使输出计数率最大化,采用了一种简单的算法来进行脉冲高度分析。此外,实现了一种针对实时脉冲堆积反卷积的算法。与传统的模拟和商用数字系统相比,使用Nal(T1)检测器对该系统进行了测试,得出了各种计数率。原型系统的性能在输入计数率达61 kcps时始终优于模拟和商业数字系统,而在输入率较高的情况下稍逊于商业数字系统,但仍优于模拟系统。考虑到总体成本,尺寸和灵活性,这种定制的多输入数字信号处理系统(MMI-DSP)是进行2D微剂量数据采集或同时进行多数据采集的任何测量的最佳可靠选择。需要。

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