Design and Realization of the Calorimeter Test System for the Hard X-ray Imager

Q4 Physics and Astronomy
Chen Jiao-long , Zhang Yong-qiang , Zhang Yan , Guo Jian-hua
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引用次数: 0

Abstract

The Advanced Space-based Solar Observatory (ASO-S), as one of the second series scientific satellites in the space science pilot project, was proposed by the Purple Mountain Observatory of Chinese Academy of Sciences. ASO-S aims to observe and investigate the two solar eruptive phenomena, i.e., solar flares and coronal mass ejections, and their relationships with magnetic field. Hard X-ray Imager (HXI) is one of the payloads aboard ASO-S. As an important part of HXI, the calorimeter is responsible for measuring solar hard X-rays in the energy range of 30–200 keV. Before the launch of ASO-S, a ground test system was necessary to verify the function and performance of the HXI calorimeter. There are 99 lanthanum bromide detectors in the HXI calorimeter, each controlled by 8 identical front-end electronic boards. In addition to testing the performance of each channel, the ground test system also needs to simulate the operation of the calorimeter under different solar activities in orbit, conducting a comprehensive test. Moreover, the ground test system needs to be stable enough to meet the long-term testing needs of the calorimeter in different tests, including standalone testing, environmental experiments, thermal vacuum and vibration tests. According to the test requirements, a ground test board and a software in the host computer were designed, combined with radioactive sources, a DC (Direct Current) power supply, and a high-voltage module to form a ground test system for the HXI calorimeter. It can simultaneously configure and manage 8 front-end electronic boards, efficiently complete command sending and data receiving, and meet the maximum data output bandwidth of 400 Mbps of the calorimeter. The ground test system can fully meet the requirement of automatic control, status monitoring, data acquisition and data analysis for the HXI calorimeter. Using this ground test system, all function and performance tests for the HXI calorimeter were completed with the acquisition of the noise, the dead time, the energy resolution and other performance data. The ground test system provides strong guarantee for the high performance operation of the HXI calorimeter in orbit.
硬x射线成像仪量热计测试系统的设计与实现
先进天基太阳天文台(ASO-S)是由中国科学院紫金山天文台提出的空间科学试点工程第二系列科学卫星之一。ASO-S旨在观测和研究太阳耀斑和日冕物质抛射这两种太阳爆发现象及其与磁场的关系。硬x射线成像仪(HXI)是ASO-S的有效载荷之一。量热计作为HXI的重要组成部分,负责测量30 - 200kev能量范围内的太阳硬x射线。在发射ASO-S之前,需要一个地面测试系统来验证HXI量热计的功能和性能。HXI量热计中有99个溴化镧探测器,每个探测器由8个相同的前端电子板控制。地面测试系统除了测试各通道的性能外,还需要在轨道上模拟热量计在不同太阳活动下的运行情况,进行综合测试。此外,地面测试系统需要足够稳定,以满足热量计在不同测试中的长期测试需求,包括独立测试、环境实验、热真空和振动测试。根据测试要求,设计了接地测试板和上位机软件,结合放射源、直流电源、高压模块组成了HXI量热仪的接地测试系统。可同时配置和管理8块前端电子板,高效完成命令发送和数据接收,满足量热仪400mbps的最大数据输出带宽。地面测试系统完全可以满足HXI量热仪的自动控制、状态监测、数据采集和数据分析的要求。利用该地面测试系统,完成了HXI量热仪的所有功能和性能测试,采集了噪声、死区时间、能量分辨率等性能数据。地面测试系统为HXI量热计在轨道上的高性能运行提供了有力保障。
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来源期刊
Chinese Astronomy and Astrophysics
Chinese Astronomy and Astrophysics Physics and Astronomy-Astronomy and Astrophysics
CiteScore
0.70
自引率
0.00%
发文量
20
期刊介绍: The vigorous growth of astronomical and astrophysical science in China led to an increase in papers on astrophysics which Acta Astronomica Sinica could no longer absorb. Translations of papers from two new journals the Chinese Journal of Space Science and Acta Astrophysica Sinica are added to the translation of Acta Astronomica Sinica to form the new journal Chinese Astronomy and Astrophysics. Chinese Astronomy and Astrophysics brings English translations of notable articles to astronomers and astrophysicists outside China.
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