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One-chip analog circuits for a new type of plasma wave receiver on board space missions

机译:用于航天任务的新型等离子体波接收器的单芯片模拟电路

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摘要

Plasma waves are important observational targets for scientific missions investigating space plasma phenomena. Conventional fast Fourier transform (FFT)-based spectrum plasma wave receivers have the disadvantages of a large size and a narrow dynamic range. This paper proposes a new type of FFT-based spectrum plasma wave receiver that overcomes the disadvantages of conventional receivers. The receiver measures and calculates the whole spectrum by dividing the observation frequency range into three bands: Bands 1, 2, and 3, which span 1Hz to 1kHz, 1 to 10kHz, and 10 to 100kHz, respectively. To reduce the size of the receiver, its analog section was realized using application-specific integrated circuit (ASIC) technology, and an ASIC chip was successfully developed. The dimensions of the analog circuits were 4.21mm × 1.16mm. To confirm the performance of the ASIC, a test system for the receiver was developed using the ASIC, an analog-to-digital converter, and a personal computer. The frequency resolutions for bands 1, 2, and 3 were 3.2, 32, and 320Hz, respectively, and the average time resolution was 384ms. These frequency and time resolutions are superior to those of conventional FFT-based receivers.
机译:等离子体波是科学任务调查空间等离子体现象的重要观察目标。传统的基于快速傅里叶变换(FFT)的频谱等离子波接收器具有尺寸大和动态范围窄的缺点。本文提出了一种新型的基于FFT的频谱等离子波接收器,它克服了传统接收器的缺点。接收器通过将观察频率范围划分为三个频段来测量和计算整个频谱:频段1、2和3,分别跨越1Hz至1kHz,1至10kHz和10至100kHz。为了减小接收器的尺寸,使用专用集成电路(ASIC)技术实现了其模拟部分,并成功开发了ASIC芯片。模拟电路的尺寸为4.21mm×1.16mm。为了确认ASIC的性能,使用ASIC,模数转换器和个人计算机为接收器开发了测试系统。频带1、2和3的频率分辨率分别为3.2、32和320Hz,平均时间分辨率为384ms。这些频率和时间分辨率优于传统的基于FFT的接收器。

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