Mars Orbiter magnetometer of China’s First Mars Mission Tianwen-1

IF 2.9 3区 地球科学 Earth and Planetary Physics Pub Date : 2020-08-18 DOI:10.26464/epp2020058
Kai Liu, XinJun Hao, YiRen Li, TieLong Zhang, ZongHao Pan, ManMing Chen, XiaoWen Hu, Xin Li, ChengLong Shen, YuMing Wang
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引用次数: 22

Abstract

As one of the seven scientific payloads on board the Tianwen-1 orbiter, the Mars Orbiter Magnetometer (MOMAG) will measure the magnetic fields of and surrounding Mars to study its space environment and the interaction with the solar wind. The instrument consists of two identical triaxial fluxgate magnetometer sensors, mounted on a 3.19 meter-long boom with a seperation of about 90 cm. The dual-magnetometers configuration will help eliminate the magnetic field interference generated by the spacecraft platform and payloads. The sensors are controlled by an electric box mounted inside the orbiter. Each magnetometer measures the ambient vector magnetic field over a wide dynamic range (to 10,000 nT per axis) with a resolution of 1.19 pT. Both magnetometers sample the ambient magnetic field at an intrinsic frequency of 128 Hz, but will operate in a model with alternating frequency between 1 and 32 Hz to meet telemetry allocations.

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中国首次火星探测任务“天文一号”的火星轨道磁强计
作为天文一号轨道飞行器上的七个科学有效载荷之一,火星轨道磁强计(MOMAG)将测量火星及其周围的磁场,以研究火星的空间环境以及与太阳风的相互作用。该仪器由两个相同的三轴磁通门磁强计传感器组成,安装在一个3.19米长,间隔约90厘米的臂架上。双磁力计的配置将有助于消除航天器平台和有效载荷产生的磁场干扰。传感器由安装在轨道飞行器内部的一个电盒控制。每个磁强计在一个很宽的动态范围内测量环境矢量磁场(每轴10000 nT),分辨率为1.19 pT。两个磁强计都以128 Hz的固有频率对环境磁场进行采样,但将在1到32 Hz的交替频率下工作,以满足遥测分配。
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Earth and Planetary Physics
Earth and Planetary Physics GEOSCIENCES, MULTIDISCIPLINARY-
自引率
17.20%
发文量
174
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