Precise Coincidence Detection on FPGAs: Three Case Studies (Abstract Only)

R. Salomon, R. Joost
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Abstract

In high-performance applications, such as quantum physics and positron emission tomography, precise coincidence detection is of central importance: The quality of the reconstructed images depends on the accuracy with which the underlying system detects the coincidence of two events. This paper explores the utility of three different hardware modules for this very task. In contrast to most of the state-of-the-art systems, these modules are edge triggered rather than being voltage-level based. This change in the modus operandi increases the accuracy of the resulting coincidence window by about one order of magnitude. In addition, this paper considers the entire detector arrays, which host a large number of selected detectors. Due to additional signal propagation delays, these arrays yield a coincidence window width as short as 70 ps within an effective range of up to 10 ns.
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fpga的精确符合检测:三个案例研究(摘要)
在高性能应用中,如量子物理和正电子发射断层扫描,精确的重合检测是至关重要的:重建图像的质量取决于底层系统检测两个事件重合的准确性。本文探讨了三种不同硬件模块的实用功能。与大多数最先进的系统相比,这些模块是边缘触发的,而不是基于电压电平的。这种方法上的改变使所得到的吻合窗口的准确度提高了大约一个数量级。此外,本文还考虑了整个探测器阵列,其中包含大量选定的探测器。由于额外的信号传播延迟,这些阵列在高达10 ns的有效范围内产生的重合窗宽短至70 ps。
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