• Research on Distributed Interactive Simulation Method of Missiles Attitude Control System;

    研究航天器集成能量与姿态控制系统飞轮的控制律。

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  • Reaction wheel is one of the main disturbance sources for the attitude control system accuracy of spacecraft.

    反作用影响航天器姿态控制系统精度主要扰动之一

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  • Reaction wheel is one of the main disturbance sources for the attitude control system accuracy of spacecraft.

    反作用系统影响航天器姿控系统精度主要扰动之一

    youdao

  • Reaction wheel is one of the main disturbance sources for the attitude control system accuracy of spacecraft.

    反作用微振动影响卫星姿态控制精度重要因素。

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  • The primary node is responsible for running the communications subsystems and the attitude control system code.

    主要节点负责执行通讯子系统姿态控制系统

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  • The star sensor is a measuring unit used for providing information to the attitude control system on spacecraft .

    敏感器空间飞行器姿态控制系统提供姿态信息测量系统

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  • The problems concerning an aerospace vehicle's(ASV) atmospheric reentry flight attitude control system were researched.

    研究了空天飞行器ASV)再跨大气层飞行时的姿态控制问题

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  • Now, flywheels systems are elected as the actuators of attitude control system with high precision for most spacecrafts.

    目前空间飞行器高精度姿态控制系统大多采用飞轮系统

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  • This article deals with torque allocation for redundant flywheel configurations in a spacecraft attitude control system.

    主要研究了航天器姿控系统冗余飞轮构型力矩分配问题

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  • Reaction wheel is one of the main disturbance sources that affect the precision of attitude control system of spacecraft.

    反作用影响航天器姿态控制系统精度主要扰动之一

    youdao

  • Reaction wheel is one of the main disturbance sources that affect the precision of attitude control system of spacecraft.

    反作用飞轮卫星姿态控制系统重要执行元件,提高飞轮系统的性能卫星姿态控制系统具有重要意义。

    youdao

  • Reaction wheel is one of the main disturbance sources that affect the precision of attitude control system of spacecraft.

    反作用系统影响航天器姿控系统精度主要扰动之一

    youdao

  • Reaction wheel is one of the main disturbance sources that affect the precision of attitude control system of spacecraft.

    实现用直流力矩电机在反作用飞轮控制方式下对气球吊方位控制。

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  • Reaction wheel assembly is one of the main disturbances affecting the accuracy of attitude control system in the spacecraft.

    反作用系统影响航天器姿控系统精度主要扰动源之一

    youdao

  • Maneuverable warhead are the complex nonlinear system, which take a great challenge to the attitude control system designers.

    机动弹头复杂非线性系统姿态控制系统设计人员极大的挑战

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  • This VS control law implements robust control of attitude control system, at the same time, it overcome the chattering problem.

    结构控制实现姿态控制系统鲁棒控制同时,有效抑制了传统变结构控制的抖振现象。

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  • The control, technology of wheel state feedback is the. leading topic of the actuator in the satellite attitude control system.

    飞轮状态反馈控制技术当前卫星姿控系统执行部件前沿课题

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  • The stratospheric nacelle attitude control system is the key technology in keeping position stabilization and posture adjustment.

    气球姿态控制系统吊篮空中保持姿态稳定、进行姿态调整关键部件。

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  • The relation among parameters is derived and the stability of single axis flexible spacecraft attitude control system is studied.

    推导系统参数关系式,分析挠性空间飞行器主轴姿态控制系统稳定性问题

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  • The experimental results show that the testing model is reasonable, and can reflect the modes of attitude control system correctly.

    实验表明,所建立测试系统模型合理能够正确反映姿态控制系统的工作模态

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  • According to the classical control theory, this paper deals with two designs of critical statically unstable attitude control system.

    根据经典控制理论设计两类临界不稳定姿态控制系统

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  • This VS control law implements robust control of attitude control system, at the same time, it overcomes the traditional chattering problem.

    结构控制实现姿态控制系统鲁棒控制同时,有效地抑制传统变结构控制的振现象。

    youdao

  • As a kind of high accuracy executive machine, reaction wheel has been extensively applied to the attitude control system (ACS) of satellites.

    作为高精度执行机构反作用飞轮广泛应用于卫星姿态控制系统中。

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  • In this paper, the basic theory of the inverse system method is introduced, and is used in the design of a spacecraft attitude control system.

    本文首先介绍了系统方法基本思想然后将其用于航天器非线性姿态控制系统的设计

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  • In this paper, the robustness stability analysis of the attitude control system of a three-axis stabilized flexible spacecraft is investigated.

    本文应用区间矩阵理论,研究稳定空间飞行器姿态控制系统的鲁棒稳定性分析问题。

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  • In this paper an advanced design concept of zero-bias momentum 3-axes attitude control system consisting of four skew reaction wheels is presented.

    本文提出一个与常规不同动量——偏置动量三轴姿态控制系统设计方案。该系统四个斜装反作用轮组成。

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  • Simultaneously, the study for gimbal magnetic suspension momentum wheel can benefit the integrated power and attitude control system technologically.

    同时万向磁悬浮动量研究集成能源姿态控制系统的研究提供了技术支持。

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  • The simulation results shows that lateral attitude control system has good control performance and the auto-trim control strategy plays a effective role.

    仿真验证结果表明,抗不确定干扰的横侧向姿态控制回路控制性能良好,自动配平控制策略能有效发挥作用。

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  • In view of the particularity for maneuver warhead reentry trajectory and the guidance method, key techniques in attitude control system design are analyzed.

    针对机动弹头弹道制导方式特殊性,分析了激光末制导机动弹头姿控系统设计关键技术

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  • The paper introduces simply the knowledge-based tolerance attitude control system. The project idea for implementing the control in a class of vehicle is presented.

    本文知识基故障容错姿态控制系统加以简单介绍。并对一类运载器提出实现方案设想

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