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高精度輕質(zhì)無(wú)線(xiàn)測溫系統研制與實(shí)現
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中國運載火箭技術(shù)研究院

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TP274

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Development and implementation of high precision light wireless temperature measuring system
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    摘要:

    作為航天器研制與試驗當中的重要組成部分,高精度、高可靠的溫度采集與監測,對航天器的設計與改進(jìn)都具有重要的指導作用。為了滿(mǎn)足對航天器內部環(huán)境和設備溫度采集和測試要求,摒棄傳統傳感器有線(xiàn)布線(xiàn)方式,優(yōu)化航天器整器裝配周期,降低測溫系統重量,提高系統可靠性,分析并設計了高精度輕質(zhì)無(wú)線(xiàn)溫度測量系統;該系統能夠采集各測點(diǎn)的溫度信號,再對信號進(jìn)行運算處理后,通過(guò)無(wú)線(xiàn)網(wǎng)絡(luò )傳送給上位機進(jìn)行數據分析和溫度實(shí)時(shí)顯示;后對系統性能指標及功能進(jìn)行驗證,證明了測溫系統具有輕質(zhì)、長(cháng)待機時(shí)間、高精度、遠傳輸距離和高可靠性等特點(diǎn),滿(mǎn)足單路溫度采集系統重量低于2g,待機時(shí)間不少于240小時(shí)的任務(wù)指標要求,且可對航天器內部環(huán)境和設備溫度進(jìn)行實(shí)時(shí)監測與分析處理。

    Abstract:

    As an important part in the development and test of spacecraft, high-precision and high-reliability temperature acquisition and monitoring plays an important role in guiding the design and improvement of spacecraft. In order to meet the requirements for temperature collection and testing of the internal environment and equipment of the spacecraft, abandon the traditional sensor wired wiring method, optimize the assembly cycle of the whole device, reduce the weight of the temperature measurement system, and improve the reliability of the system, a precision light-weight wireless temperature measurement system is analyzed and designed. The system can collect the temperature signal of each measuring point, and then transmit the signal to the upper computer through wireless network for data analysis and real-time temperature display after arithmetic processing. After that, the performance index and function of the system were verified, which proved that the temperature measurement system has the characteristics of light weight, long standby time, high precision, long transmission distance and high reliability, which can meet the requirements that the weight of the single-channel temperature acquisition system is less than 2g and the standby time is no less than 240 hours, and can monitor and analyze the internal environment and equipment temperature of the spacecraft in real time.

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余群,王騫,王思峰,王領(lǐng)華,呂建偉.高精度輕質(zhì)無(wú)線(xiàn)測溫系統研制與實(shí)現計算機測量與控制[J].,2023,31(4):49-55.

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歷史
  • 收稿日期:2022-09-06
  • 最后修改日期:2022-09-30
  • 錄用日期:2022-10-08
  • 在線(xiàn)發(fā)布日期: 2023-04-24
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