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基于GIS的深空探測器真空熱環(huán)境模擬測試系統設計
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1.浙江長(cháng)征職業(yè)技術(shù)學(xué)院 智能技術(shù)系;2.浙江工業(yè)大學(xué) 3.計算機應用技術(shù)

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Design of GIS-based vacuum thermal environment simulation test system for deep space detectors
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    摘要:

    以提升真空熱環(huán)境模擬系統的環(huán)境監測和數據異常檢測能力為目的,設計基于GIS的深空探測器真空熱環(huán)境模擬測試系統。硬件部分利用GIS技術(shù)監測真空環(huán)境中的相關(guān)屬性、空間及缺陷等數據,根據監測信息展開(kāi)可視化統計分析,分別設計真空抽氣系統、環(huán)境監測系統及外熱流模擬系統,并通過(guò)預警反饋機制操縱數據屬性,軟件部分利用自適應PID控制算法高精度的控制紅外加熱籠的溫度變化,并結合真空容器、真空抽氣系統、外熱流模擬系統完成深空探測器真空熱環(huán)境模擬測試系統設計。實(shí)驗結果表明,該測試系統極限真空度值為3.3×10-5Pa,各支管液氮流量流速范圍為0.26~0.40m/s,具備良好的流動(dòng)分布均勻性,高溫和低溫時(shí)加熱區輻照熱流密度分別為586W/m2和27W/m2,環(huán)境缺陷數據檢測精準率高達98.73%,各項指標均滿(mǎn)足設計要求。

    Abstract:

    For the purpose of improving the environmental monitoring and data anomaly detection capabilities of the vacuum thermal environment simulation system, a GIS-based deep space detector vacuum thermal environment simulation test system is designed. The hardware part uses GIS technology to monitor the relevant attributes, spaces and defects in the vacuum environment, develops visual statistical analysis based on the monitoring information, designs the vacuum pumping system, environmental monitoring system and external heat flow simulation system respectively, and manipulates the data through the early warning feedback mechanism Attributes, the software part uses the adaptive PID control algorithm to control the temperature change of the infrared heating cage with high precision, and combines the vacuum container, vacuum pumping system, and external heat flow simulation system to complete the design of the vacuum thermal environment simulation test system for the deep space detector. The experimental results show that the ultimate vacuum of the test system is 3.3×10-5Pa, and the liquid nitrogen flow rate range of each branch pipe is 0.26~0.40m/s. It has good flow distribution uniformity, and the heating zone is irradiated by heat flow at high and low temperatures. The densities are 586W/m2 and 27W/m2 respectively, the detection accuracy rate of environmental defect data is as high as 98.73%, and all indicators meet the design requirements.

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李君.基于GIS的深空探測器真空熱環(huán)境模擬測試系統設計計算機測量與控制[J].,2021,29(10):7-11.

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  • 收稿日期:2021-07-22
  • 最后修改日期:2021-08-23
  • 錄用日期:2021-08-25
  • 在線(xiàn)發(fā)布日期: 2021-11-11
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