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Directional passability and quadratic steering logic for pyramid-type single gimbal control moment gyros

机译:金字塔型单云台控制力矩陀螺仪的方向通过性和二次转向逻辑

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摘要

Singularity analysis and the steering logic of pyramid-type single gimbal control moment gyros are studied. First, a new concept of directional passability in a specified direction is introduced to investigate the structure of an elliptic singular surface. The differences between passability and directional passability are discussed in detail and are visualized for 0H, 2H, and 4H singular surfaces. Second, quadratic steering logic (QSL), a new steering logic for passing the singular surface, is investigated. The algorithm is based on the quadratic constrained quadratic optimization problem and is reduced to the Newton method by using Groebner bases. The proposed steering logic is demonstrated through numerical simulations for both constant torque maneuvering examples and attitude control examples.
机译:研究了金字塔型单云台控制力矩陀螺的奇异性分析和转向逻辑。首先,引入特定方向定向通过性的新概念,以研究椭圆形奇异表面的结构。详细讨论了可通过性和方向可通过性之间的差异,并针对0H,2H和4H奇异表面将其可视化。其次,研究了二次转向逻辑(QSL),一种用于传递奇异表面的新转向逻辑。该算法基于二次约束二次优化问题,并通过使用Groebner基简化为牛顿法。通过数值模拟对恒定转矩操纵示例和姿态控制示例进行了演示,证明了所提出的转向逻辑。

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