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首页> 外文期刊>International journal of numerical modelling >An efficient modeling of series‐parallel structure for the digital downconversion of pulsar signals in astronomical observation system
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An efficient modeling of series‐parallel structure for the digital downconversion of pulsar signals in astronomical observation system

机译:天文观测系统脉冲脉信号数字下变频串联结构的高效建模

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This paper proposes an efficient modeling of series-parallel structure for the digital downconversion (DDC) implemented in the field programmable gate array for astronomical observation system. The received signals by a radio telescope are of intermediate frequency, and they can be stored and analyzed only after having been converted into digital baseband signals. Although many algorithms have been proposed for the traditional DDC, it is still hard to balance the working frequency of signals and the hardware resources of field programmable gate array. The proposed series-parallel structure can not only solve the problem but also provide a more compact size, lower consumption of power, and transplanting ability for the DDC module. The new structure has been used for the signal processing of pulsars in an astronomical observation system, and those merits have been validated.
机译:本文提出了在用于天文观测系统的现场可编程门阵列中实现的数字下变频(DDC)的串联结构的有效建模。通过无线电望远镜的接收信号具有中频,并且仅在转换成数字基带信号之后才能存储和分析。虽然已经为传统DDC提出了许多算法,但仍然很难平衡信号的工作频率和现场可编程门阵列的硬件资源。所提出的系列平行结构不仅可以解决问题,而且还提供更紧凑的尺寸,功率较低,以及DDC模块的移植能力。新结构已被用于天文观测系统中脉冲条的信号处理,并且已经验证了这些优点。

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