3. Drag onto the page to add a gyro, gyroscope, or gyrocompass.
拖到绘图页后,可以添加回转仪、陀螺仪或回转罗盘。
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4. Application of fuzzy control in platform gyrocompass is studied.
平台罗经模糊控制的应用研究。
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5. The instrument made by inertia principle and used for navigation is gyrocompass.
利用惯性原理制成仪表而又是用于导航,那要算陀螺罗经了。
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6. A gyrocompass is required to indicate the heading of a land, sea, or air vehicle.
陀螺被用来指示陆上的、海上的或空中的运动体的方向。
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7. A new type of computer control system for platform gyrocompass is designed and realized.
新型平台罗经计算机控制系统的设计和实现。
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8. The system has a certain reference value to the engineering realization of digital gyrocompass.
本方案对数字化罗经工程实现具有一定的参考意义。
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9. Another device, such as a radio compass or a gyrocompass, used for determining geographic direction.
罗盘:另一种设备,例如无线电罗盘或陀螺罗盘,用于确定地理方向。
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10. The system receives the vessel's heading from the gyrocompass, and the vessel's position from a PME.
DP系统从电罗经得到船舶艏向信号,从PME得到船舶位置信号。
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11. Discuss the methods to provide rock data of feedforward of gyrocompass and strap-down inertial system.
分别讨论了平台罗经和捷联垂直参考基准提供摇摆数据时前馈稳定的实现方法。
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12. The key technologies and control parameters of the RLG platform gyrocompass system are specially studied.
从而实现对三轴四频陀螺平台罗经理论和关键技术的验证。
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13. These conclusions have some significance for the study and design of suspended SDOF gyrocompass restrained by PMB.
该结论对单自由度陀螺罗盘的理论研究与设计具有重要的意义。
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14. Compared with native platform gyrocompass, the gyrocompass has advantage in aspects of reliability and intelligence.
与国内现有的平台罗经相比,在系统可靠性和智能化程度方面均有了显著的提高。
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15. In this mode, the vessel heading is controlled by a gyrocompass and the relative separation controlled by an acoustic PME.
在这种模式下,船舶的艏向是由一个罗盘和由一个声学pme相对分离控制。
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16. The result shows that the alignment accuracy of classical gyrocompass method is low due to the non-compensated bias of IMU.
结果表明,经典罗经对准方法由于未对零偏进行处理,导致其精度不高。
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17. In order for a gyrocompass to be accurate it is obviously necessary to hold spurious vertical torques to an extremely low level.
为了使陀螺罗盘做得准确,很明显有必要使垂直轴干扰力矩减小到很低。
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18. A new design method of compensation loop for the stabilized gyrocompass, as a ship attitude reference, is derived by using modern control theory.
本文利用现代控制理论的方法对舰船姿态基准——平台罗经的修正回路进行了讨论。
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19. The Marine autopilot receives signals from directional sensors such as the gyrocompass and USES them to automatically control the helm for navigation.
海洋自动驾驶仪接收,如罗盘从定向传感器的信号,并使用它们控制的自动导航掌舵。
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20. It is important significance to fast start gyrocompass for the increasing the work performance of gyrocompass and improving warship's tactical performance.
快速启动陀螺罗经,对提高罗经的工作性能及改善舰船战术性能具有重要意义。
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21. The navigation data converter of ship can output gyrocompass and GPS signals after the data conversion, which just bases on gyrocompass (or GPS) input signal.
22. Based on the gyrocompass technique, the magnetic compass deviation automatic measurement and correction system synthesizes both gyrocompass and magnetic compass technique.
基于电罗经技术的磁罗经自差自动测定和校正系统是一个综合了电罗经和磁罗经技术的自差测定和校正系统。
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23. This paper provided the application of simulating human intelligent control multi-mode IC control to the starting process of the electronic magnetic controlled gyrocompass.
本文提出将多模态仿人智能控制应用于陀螺罗经的启动过程。
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24. The system originally designed to provide power supply for naval gyrocompass is also suitable for civil usage. Circuit design and test results are also presented in the paper.
实践证实这种电源革新方案是可行的,它不仅适用于精度高的军用罗经,对于民用罗经也是有益的。
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25. A gyrocompass or astrocompass can be used to find true north, while being unaffected by stray magnetic fields, nearby electrical power circuits or nearby masses of ferrous metals.
旋转罗盘或星象罗盘能够用来发现真北极,在飘移磁场区域也不受影响,接近于电路或接近于铁元素块。
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26. The LCR-100 Gyrocompass AHRS is a north finding attitude and heading reference system based on a state-of-the-art fibre-optic gyro and micro-electromechanical (MEMS) accelerometers.
27. This paper introduces the software and hardware structure, display of digital course and the testing method of compass parameter of gyrocompass course signal digital processing system.
文章介绍了陀螺罗经航向信号数字化处理系统的软、硬件结构,数字航向的显示,罗经性能参数的测试方法。
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28. The gyro-theodolite , which is composed of a suspended two-degree-of-freedom gyrocompass and a theodolite, is the main instrument in the engineering measurement for meridian determination.
29. Because the restraint of PMB (permanent magnetic bearings) is the elastic restraint, suspended SDOF gyrocompass restrained by PMB, in fact, is not SDOF gyrocompass, but two DOFS gyrocompass.
30. Because the restraint of PMB (permanent magnetic bearings) is the elastic restraint, suspended SDOF gyrocompass restrained by PMB, in fact, is not SDOF gyrocompass, but two DOFS gyrocompass.