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Developing a proposed satellite reaction wheel model with current mode control

机译:用电流模式控制开发建议的卫星反作用轮模型

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The motivation for development of reaction wheel components model is to achieve a precise reaction wheel model for attitude control subsystem of spacecraft. Recent developments in spacecrafts manufacturing industry have heightened the need for accurate attitude control subsystems. Performance of spacecraft attitude control, as one of the complex subsystems of spacecrafts, is often reduced by both environmental and internal disturbances. Ideally, the output torque of reaction wheel should depend on the input current but in reality; various disturbances are operative as well. Most commonly, disturbance sources are flywheel imbalance, bearing frictions, bearing torque noise, motor torque ripple and cogging. This study proposes a precise reaction wheel model and these disturbance torques are considered inside the model. Then the results show how disturbance torques deteriorate the wheel speed, angular momentum, and reaction torque of the reaction wheel.
机译:开发反作用轮部件模型的动机是为航天器的姿态控制子系统建立一个精确的反作用轮模型。航天器制造业的最新发展对精确的姿态控制子系统提出了更高的要求。作为航天器的复杂子系统之一,航天器姿态控制的性能通常会由于环境和内部干扰而降低。理想情况下,反作用轮的输出扭矩应取决于输入电流,但实际上是这样。各种干扰也是有效的。最常见的干扰源是飞轮失衡,轴承摩擦,轴承扭矩噪声,电机扭矩波动和齿槽效应。这项研究提出了一个精确的反作用轮模型,并在模型内部考虑了这些干扰转矩。然后结果表明,扰动转矩如何使车轮速度,角动量和反作用轮的反作用转矩恶化。

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