Research of digital temperature measurement system in vacuum thermal test based on DS18B20

Temperature measurement is a very important measurement project in spacecraft vacuum thermal test, and thermocouple measurement system is generally used for temperature measurement. In order to reduce the number of wire measuring circuit and improving the measurement system of anti disturbance and h...

Full description

Bibliographic Details
Main Authors: Zhu Xi, An Wangqing, Chang Liu, ZhenWei Li, Zeyuan Liu
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201817303076
id doaj-ff64e74eac434ab0b3a4b75b43c0ddd0
record_format Article
spelling doaj-ff64e74eac434ab0b3a4b75b43c0ddd02021-02-02T01:13:50ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011730307610.1051/matecconf/201817303076matecconf_smima2018_03076Research of digital temperature measurement system in vacuum thermal test based on DS18B20Zhu XiAn WangqingChang LiuZhenWei LiZeyuan LiuTemperature measurement is a very important measurement project in spacecraft vacuum thermal test, and thermocouple measurement system is generally used for temperature measurement. In order to reduce the number of wire measuring circuit and improving the measurement system of anti disturbance and high measurement accuracy in vacuum thermal test process, which can be used in digital temperature measurement system of vacuum thermal test design, realizes the digital temperature measuring equipment of spacecraft and ground equipment. The system is composed of digital temperature sensor DS18B20 and acquisition device. It can be connected with remote monitoring computer through LAN network to realize remote monitoring of temperature. The hardware structure, communication protocol and software design of the digital temperature measurement system are given in this paper. The vacuum thermal environment test and comparison with the platinum resistance temperature measurement system. The results show that the stability of the system is good and the difference between the measured value and the PT100 measurement is within 0.5 °C, and the linearity is about ±0.1% which satisfies the requirement of vacuum thermal test.https://doi.org/10.1051/matecconf/201817303076
collection DOAJ
language English
format Article
sources DOAJ
author Zhu Xi
An Wangqing
Chang Liu
ZhenWei Li
Zeyuan Liu
spellingShingle Zhu Xi
An Wangqing
Chang Liu
ZhenWei Li
Zeyuan Liu
Research of digital temperature measurement system in vacuum thermal test based on DS18B20
MATEC Web of Conferences
author_facet Zhu Xi
An Wangqing
Chang Liu
ZhenWei Li
Zeyuan Liu
author_sort Zhu Xi
title Research of digital temperature measurement system in vacuum thermal test based on DS18B20
title_short Research of digital temperature measurement system in vacuum thermal test based on DS18B20
title_full Research of digital temperature measurement system in vacuum thermal test based on DS18B20
title_fullStr Research of digital temperature measurement system in vacuum thermal test based on DS18B20
title_full_unstemmed Research of digital temperature measurement system in vacuum thermal test based on DS18B20
title_sort research of digital temperature measurement system in vacuum thermal test based on ds18b20
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Temperature measurement is a very important measurement project in spacecraft vacuum thermal test, and thermocouple measurement system is generally used for temperature measurement. In order to reduce the number of wire measuring circuit and improving the measurement system of anti disturbance and high measurement accuracy in vacuum thermal test process, which can be used in digital temperature measurement system of vacuum thermal test design, realizes the digital temperature measuring equipment of spacecraft and ground equipment. The system is composed of digital temperature sensor DS18B20 and acquisition device. It can be connected with remote monitoring computer through LAN network to realize remote monitoring of temperature. The hardware structure, communication protocol and software design of the digital temperature measurement system are given in this paper. The vacuum thermal environment test and comparison with the platinum resistance temperature measurement system. The results show that the stability of the system is good and the difference between the measured value and the PT100 measurement is within 0.5 °C, and the linearity is about ±0.1% which satisfies the requirement of vacuum thermal test.
url https://doi.org/10.1051/matecconf/201817303076
work_keys_str_mv AT zhuxi researchofdigitaltemperaturemeasurementsysteminvacuumthermaltestbasedonds18b20
AT anwangqing researchofdigitaltemperaturemeasurementsysteminvacuumthermaltestbasedonds18b20
AT changliu researchofdigitaltemperaturemeasurementsysteminvacuumthermaltestbasedonds18b20
AT zhenweili researchofdigitaltemperaturemeasurementsysteminvacuumthermaltestbasedonds18b20
AT zeyuanliu researchofdigitaltemperaturemeasurementsysteminvacuumthermaltestbasedonds18b20
_version_ 1724312108707872768