- 更多网络例句与陀螺机构相关的网络例句 [注:此内容来源于网络,仅供参考]
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Gyro simulation test of the high-speed rotatable projectile angular motion is one of the key technology of the physical simulation system.
高速旋转弹丸角运动的陀螺模拟测试是弹载机构物理仿真系统的关键技术之一。
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For example, the roll elastic deformation breaks the statically determinate condition of roll system in duo mill, and this is the main reason of bearing longevity shortening and burning accident; in aluminium foil four-high mill roll system with a 1 mm gap, the ideal position kept by a 3 mm offset is out of effect, some phenomenon such as chock horizontal vibration, gyroscopic effect and micro dimensional dynamic cross happen in fact rolling process, abnormal super and partial load resulted by these is the main reason of the end thrust bearing accident; the thermal deformation of mill roll system accompanying the temperature raising not only changes the roller track age of rolling bearing, but also results a micro dimensional slow dynamic inverse cross that counteracts the gyroscopic effect in a degree.
如二辊高刚度轧机轧辊的弹性弯曲微尺度行为,破坏了辊系机构杆系的静定条件,成为轧机轴承短寿烧损的主要根源;铝箔四辊轧机只具有1mm的有隙辊系,凭借设置3mm偏移距和轧制力平衡产生的水平力以保持轧辊理想定位失去效用,却发生轴承座水平振动现象、陀螺效应和动态交叉微尺度行为,成为止推滚动轴承异常超偏载导致短寿烧损的主要根源;轧机辊系的伴随升温产生的热变形,不仅改变了滚动轴承滚道轮廓,还引起运动副内慢变动态反交叉微尺度行为,抵消陀螺效应的部分动态交叉角度。
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Hamilton discovered the quaternion ,to the middle period of last century,the application of the quaternion and the quaternion matrix are discovered widely in geostatics,the theory of ped-top using, strap-down inertial ,naviation, enginery and organ,robot technology and artificial satellite attitude control,and so on.
R。 Hamilton发现四元数到上世纪中叶,四元数和四元数矩阵方法在刚体动力学、陀螺使用理论、捷联惯性导航、机器与机构、机器人技术、人造卫星姿态控制等领域应用非常广泛。
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The physics simulation of large spacecraft Single Gimble Control Moment Gyro attitude control and momentum management system was established, making use of three-axis air-bearing table as spacecraft dynamics simulation object. The mathematics model of SGCMG attitude control and momentum management system was deduced.
引言单框架控制力矩陀螺作为航天器姿态控制的执行机构,具有较大输出力矩的能力,控制特性线性度好,并具有很强的抗干扰性和很快响应速度等优点,在国际上己得到广泛应用,并且已经成为长寿命大型航天器首选的执行机构。
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A Body computer that constantly exchanges information with the ABS, engine management unit and automatic transmission unit; an electronic throttle (that communicates with the ABS in turn); a control panel; the steering wheel and steering column; a gyroscopic sensor installed on the passenger compartment floor to record car yaw and lateral acceleration.
一机构的电脑,会不断地交流信息的获取和惠益分享,发动机管理单元和自动传输单位;一个电子油门(即又与澳大利亚统计局通讯);一个控制面板;方向盘和转向柱,一个陀螺仪传感器与乘客车厢地板安装汽车记录偏航和横向加速度。
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This paper presents a wind vane sensors without the use of cases, combining with gyroscopes and hill-climbing algorithm to control the yaw institutions, can accurately capture the wind direction signal, rapid-conditioning the cabin of the deflection angle, so that wind generators wind wheel normal direction of the wind direction and change is always consistent for maximum capture of wind energy control strategies.
针对风力发电机组的风向变化绝对值小于15°的风能捕获率问题,提出一种在不使用风向标传感器的情况下,采用陀螺仪和爬山算法相结合的方法来控制偏航机构,能够准确的采集到风向信号,快速调节机舱的偏转角度,使风力发电机风轮法线方向与变化的风向始终保持一致,实现最大捕获风能的控制策略。
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LI Ming,SHI Shouxia(No.25 Institute of the Second Research Academy,Beijing,100854,China)Abstract:It deduces that the equivalent damping ratio and torsion pendulum which is the main performance parameter of the torque feedback rate gyro is related to the gain and time constant of the head of meter.
速率陀螺仪,在姿态稳定系统中有广泛的应用,主要目的是敏感载体的角速度,通过执行机构,实现对载体的控制和稳定,在位标器上应用陀螺仪的目的是测量天线在惯性空间的转率,实现天线稳定的伺服控制。
- 更多网络解释与陀螺机构相关的网络解释 [注:此内容来源于网络,仅供参考]
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inertial guidance:惯性制导
惯性制导(inertial guidance)是利用陀螺仪和加速度表组成的惯性测量装置测量导弹的运动参数,控制其按预定路线飞行的一种制导方式. 整个制导系统由惯性测量装置、计算机和执行机构等组成. 惯性测量装置测出导弹运动参数的变化,
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gyromele:旋转胃导管
gyromechanism 陀螺机构 | gyromele 旋转胃导管 | gyrometer 脑回测量器
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gyro mechanism:陀螺机构
gyro magnetic compass 陀螺磁罗经 | gyro mechanism 陀螺机构 | gyro moment 陀螺力矩
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gyro spinning and unlocking mechanism:陀螺定向仪旋转和解锁机构
gyro spin axis 陀螺自转轴 | gyro spinning and unlocking mechanism 陀螺定向仪旋转和解锁机构 | gyro stabilized system 陀螺稳定装置
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gyro magnetic compass:陀螺磁罗经
gyro log 陀螺记录器 | gyro magnetic compass 陀螺磁罗经 | gyro mechanism 陀螺机构