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首页> 外文期刊>IEEE Transactions on Nuclear Science >Digital Frequency Domain Multiplexer for Millimeter-Wavelength Telescopes
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Digital Frequency Domain Multiplexer for Millimeter-Wavelength Telescopes

机译:毫米波望远镜的数字频域复用器

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摘要

An FPGA based digital signal processing (DSP) system for biasing and reading out multiplexed bolometric detectors for mm-wavelength telescopes is presented. This readout system is being deployed for balloon-borne and ground based cosmology experiments with the primary goal of measuring the signature of inflation with the Cosmic Microwave Background Radiation. The system consists of analog superconducting electronics running at 250 mK and 4 K, coupled to digital room temperature backend electronics described here. The digital electronics perform the real time functionality with DSP algorithms implemented in firmware. A soft embedded processor provides all of the slow housekeeping control and communications. Each board in the system synthesizes multi-frequency combs of 8 to 32 carriers in the MHz band to bias the detectors. After the carriers have been modulated with the sky-signal by the detectors, the same boards digitize the comb directly. The carriers are mixed down to base-band and low pass filtered. The signal bandwidth of 0.050 Hz—100 Hz places extreme requirements on stability and requires powerful filtering techniques to recover the sky-signal from the MHz carriers.
机译:提出了一种基于FPGA的数字信号处理(DSP)系统,用于偏置和读取毫米波望远镜的多路辐射热探测器。该读数系统正被用于气球和地面的宇宙学实验,其主要目标是利用宇宙微波背景辐射来测量膨胀的特征。该系统由运行在250 mK和4 K的模拟超导电子设备组成,并与此处所述的数字室温后端电子设备耦合。数字电子设备通过固件中实现的DSP算法执行实时功能。软嵌入式处理器可提供所有缓慢的内务管理和通信。系统中的每个板都在MHz频段内合成8到32个载波的多频梳,以偏置检测器。在检测器用天空信号调制了载波之后,相同的板直接将梳子数字化。载波被混频到基带,并经过低通滤波。 0.050 Hz至100 Hz的信号带宽对稳定性提出了极高的要求,并需要强大的滤波技术才能从MHz载波中恢复天空信号。

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