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基于力位協(xié)同控制的航天器多路射頻頻譜監測系統設計
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中國科學(xué)院微小衛星創(chuàng )新研究院

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Design of Spacecraft Multi-channel RF Spectrum Monitoring System Based on Force Position Cooperative Control
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    摘要:

    目前設計的航天器多路射頻頻譜監測系統采樣間隔時(shí)間過(guò)長(cháng),導致監測結果與實(shí)際結果相差較大。為了解決上述問(wèn)題,基于力位協(xié)同控制設計了一種新的航天器多路射頻頻譜監測系統,設計該監測系統的硬件和軟件。在頻譜分析儀的使用界面上,具有大量的射頻信號控制命令,其中包含部分接口命令,通過(guò)該接口命令監測和控制頻譜分析儀;單片機自帶控制器,可協(xié)助系統的控制單元控制頻譜;控制單元內的驅動(dòng)接口電路其核心為76JG632芯片,主要對單片機內的各種接口進(jìn)行供電。通過(guò)多路射頻信號頻譜切換、多路射頻信號頻譜顯示、射頻信號頻譜監測實(shí)現軟件流程。實(shí)驗結果表明,基于力位協(xié)同控制的航天器多路射頻頻譜監測系統能有效縮短采樣間隔時(shí)間,保證監測結果與實(shí)際結果吻合。

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    At present, the sampling interval of the spacecraft multichannel RF spectrum monitoring system is too long, which results in a large difference between the monitoring results and the actual results. In order to solve these problems, a new spacecraft multi-channel radio frequency spectrum monitoring system based on force position cooperative control was designed, and the hardware and software of the monitoring system were designed. In the use interface of the spectrum analyzer, there are a large number of RF signal control commands, including some interface commands, through which the spectrum analyzer is monitored and controlled. MCU comes with a controller to assist the control unit of the system to control the spectrum; The core of the drive interface circuit in the control unit is 76JG632 chip, which mainly supplies power to various interfaces in the microcontroller. Through the multi-channel RF signal spectrum switching, multi-channel RF signal spectrum display, RF signal spectrum monitoring to achieve the software flow. The experimental results show that the spacecraft multi-channel radio frequency spectrum monitoring system based on force position cooperative control can effectively shorten the sampling interval time and ensure the monitoring results are consistent with the actual results.

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引用本文

吳敏,王學(xué)良.基于力位協(xié)同控制的航天器多路射頻頻譜監測系統設計計算機測量與控制[J].,2021,29(12):13-16.

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歷史
  • 收稿日期:2021-07-23
  • 最后修改日期:2021-09-08
  • 錄用日期:2021-09-09
  • 在線(xiàn)發(fā)布日期: 2021-12-24
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