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Design of an interim digital spectro-correlator for the Yuan Tseh Lee array for microwave background anisotropy

机译:元哲李阵列微波背景各向异性临时数字光谱相关器的设计

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This paper reports the laboratory design and implementation of a four-antenna digital spectro-correlator for the Yuan Tseh Lee Array for Microwave Background Anisotropy (AMiBA). The system comprises four 5 Giga-samples/s (Gs/s), 8-bit analog to digital converter (ADC), and four Reconfigurable Open Architecture Computing Hardware 2 systems (ROACH2). The 5 Gs/s ADC board was designed by the authors, and the ROACH2 platform was manufactured by the Collaboration for Astronomy Signal Processing and Electronics Research (CASPER) community. The system has a bandwidth of 1.6 GHz, 128 spectral channels, an FX-type correlator, one polarization, and four antenna inputs. The correlation accumulators report the cross-correlation results of the six baselines, as well as the autocorrelation results of the four antennas. The system is planned to be characterized according to the results of various experiments before deployment: Allen deviation, optimal input power of the system, and confirmation of the correlator coefficient of the system. The new digital system is intended to replace the old analog system, which has no spectral information. This new system enables the AMiBA for new scientific missions, such as CO intensity mapping.
机译:本文报告了用于微波背景各向异性(AMiBA)的原哲李阵列的四天线数字光谱相关器的实验室设计和实现。该系统包括四个5 Giga-samples / s(Gs / s),一个8位模数转换器(ADC)和四个可重配置的开放架构计算硬件2系统(ROACH2)。 5 Gs / s ADC板是由作者设计的,而ROACH2平台是由天文学信号处理和电子研究协作组织(CASPER)制造的。该系统具有1.6 GHz的带宽,128个频谱通道,一个FX型相关器,一个极化和四个天线输入。相关累加器报告六个基线的互相关结果,以及四个天线的自相关结果。计划在部署之前根据各种实验的结果对系统进行特征化:艾伦偏差,系统的最佳输入功率以及系统相关系数的确认。新的数字系统旨在替代没有光谱信息的旧模拟系统。这个新系统使AMiBA能够执行新的科学任务,例如CO强度映射。

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