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Gradiometry coexperiments to the gravity probe B and step missions

机译:重力探测器B的梯度法实验和步进任务

摘要

The Gravity Probe-B (GP-B) spacecraft, designed to test predictions of general relativity, will fly in the mid 1990s. It will carry four electrostatically suspended gyroscopes in a cryogenic environment and will have a drag-free control system to minimize disturbances on the gyroscopes. The Stanford Test of Equivalence Principle (STEP) spacecraft, to fly later, will carry a set of test masses under very similar conditions. The possibility of using differential measurements of the GP-B gyroscopes suspension forces and the STEP tests mass displacement readout to form single-axis gravity gradiometers is explored. It is shown that the noise in the suspension systems is sufficiently small in the relevant frequency range, and that enough information is collected to compensate for the spacecrafts' attitude motion. Finally, using Breakwell's flat-earth approximation, these experiments are compared to other geodesy experiments and predict the contribution they can make to the knowledge of the Earth's geopotential.
机译:设计用于测试广义相对论的重力探测器B(GP-B)航天器将在1990年代中期飞行。它将在低温环境中携带四个静电悬浮的陀螺仪,并具有无拖曳控制系统,以最小化陀螺仪上的干扰。稍后飞行的斯坦福等效原理测试(STEP)航天器将在非常相似的条件下携带一组测试质量。探索了使用GP-B陀螺仪悬架力的差分测量和STEP测试质量位移读数以形成单轴重力梯度仪的可能性。结果表明,悬挂系统中的噪声在相关频率范围内足够小,并且收集到足够的信息以补偿航天器的姿态运动。最后,使用Breakwell的平地近似方法,将这些实验与其他大地测量学实验进行比较,并预测它们可以对了解地球的地势做出贡献。

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