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Magnetic field cancellation techniques for the Mars Global Surveyor solar array

机译:火星全球测量师太阳能阵列的磁场抵消技术

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The Mars Global Surveyor spacecraft carries a sensitive magnetometer system to detect and characterize the intrinsic magnetic field of Mars, if one exists. The use of booms to place the sensors remote from the spacecraft was not possible due to resource constraints. Instead, the sensors were mounted at the outer edge of the solar array, in close proximity to strings of solar cells. The current geometry in the array was optimized with a piecewise linear simulation to minimize the magnetic field generated at the sensor by the circulating currents under all operating conditions. A number of novel techniques were used in achieving magnetic field cancellation including carefully chosen circuit path lengths with zero area in selected strings, and sensitive magnetic verification tests in the Earth's field with a resolution of 1 part in 200000. The results show that the field generated by the array at the sensor location during the Mars mapping phase of the mission and under nominal conditions will be less than 0.4 to 0.6 nT (1nT=10/sup -5/ Gauss) under full solar illumination. The design is also reasonably tolerant of string failures. This major achievement would not have been possible without a close and synergistic interaction among the manufacturer, scientists and spacecraft engineers during the design, simulation and test of the solar array.
机译:火星全球测量师号航天器带有灵敏的磁力计系统,用于检测和表征火星的固有磁场(如果存在)。由于资源限制,无法使用吊杆将传感器放置在远离航天器的位置。而是将传感器安装在太阳能电池阵列的外边缘,紧靠太阳能电池串。通过分段线性仿真优化了阵列中的电流几何形状,以最小化在所有工作条件下循环电流在传感器处产生的磁场。使用了许多新颖的技术来实现磁场消除,包括精心选择的电路路径长度(所选字符串中的面积为零),以及在地球磁场中进行敏感的磁验证测试,其分辨率为20万分之一。结果表明,产生的磁场在完整的太阳光照下,在任务的火星制图阶段,在名义条件下,阵列在传感器位置处的辐射将小于0.4至0.6 nT(1nT = 10 / sup -5 /高斯)。该设计还可以合理地容忍字符串故障。如果制造商,科学家和航天器工程师在太阳能电池阵列的设计,仿真和测试过程中没有紧密和协同的相互作用,那么这项重大成就将是不可能的。

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