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Front-End Board with Cyclone V as a Test High-Resolution Platform for the Auger_Beyond_2015 Front End Electronics

机译:带有Cyclone V的前端板作为Auger_Beyond_2015前端电子产品的测试高分辨率平台

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The surface detector (SD) array of the Pierre Auger Observatory needs an upgrade which allows space for more complex triggers with higher bandwidth and greater dynamic range. To this end this paper presents a front-end board (FEB) with the largest Cyclone V E FPGA 5CEFA9F31I7N. It supports eight channels sampled with max. 250 MSps@14-bit resolution. Considered sampling for the SD is 120 MSps; however, the FEB has been developed with external anti-aliasing filters to retain maximal flexibility. Six channels are targeted at the SD, two are reserved for other experiments like: Auger Engineering Radio Array and additional muon counters. The FEB is an intermediate design plugged into a unified board communicating with a micro-controller at 40 MHz; however, it provides 250 MSPs sampling with an 18-bit dynamic range, is equipped with a virtual NIOS processor and supports 256 MB of SDRAM as well as an implemented spectral trigger based on the discrete cosine transform for detection of very inclined “old” showers. The FEB can also support neural network development for detection of “young” showers, potentially generated by neutrinos. A single FEB was already tested in the Auger surface detector in Malargüe (Argentina) for 120 and 160 MSps. Preliminary tests showed perfect stability of data acquisition for sampling frequency three or four times greater. They allowed optimization of the design before deployment of seven or eight FEBs for several months of continuous tests in the engineering array.
机译:皮埃尔·奥格天文台的表面探测器(SD)阵列需要升级,以便为具有更高带宽和更大动态范围的更复杂的触发器留出空间。为此,本文提出了具有最大Cyclone V E FPGA 5CEFA9F31I7N的前端板(FEB)。它支持最大采样的八个通道。 250MSps @ 14位分辨率。 SD的采样率为120MSps;但是,FEB已开发为具有外部抗混叠滤波器,以保持最大的灵活性。六个通道针对SD,两个保留用于其他实验,例如:俄歇工程无线电阵列和其他μon计数器。 FEB是一种中间设计,已插入与40MHz的微控制器通信的统一板中;但是,它提供了250个MSP采样,具有18位动态范围,配备了虚拟NIOS处理器,并支持256 MB的SDRAM以及基于离散余弦变换的已实现频谱触发,用于检测非常倾斜的“旧”阵雨。 FEB还可以支持神经网络开发,以检测可能由中微子产生的“年轻”阵雨。单个FEB已在Malargüe(阿根廷)的Auger表面探测器中进行了120和160MSps的测试。初步测试表明,对于三倍或四倍以上的采样频率,数据采集具有完美的稳定性。他们允许在部署七个或八个FEB之前进行优化设计,以在工程阵列中进行几个月的连续测试。

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