1) gyro power supply
陀螺电源
1.
The principle and structure of a high steady and intelligent gyro power supply are introduced,and the chief test results in our lab are reported.
介绍了一种具有极高频率稳定度的智能型陀螺电源的设计原理和实现方案 ,并给出该电源的实测技术指标。
2) Gyroscope power
陀螺电源
1.
Basing on the combination of the microcontroller control technology and the SPWM technology, this paper introduces the research of an intelligent gyroscope power.
介绍了一种结合单片机控制技术与SPWM技术的新型智能陀螺电源的研制过程。
2.
Gyroscope power is a quite important part of the inertial navigation system, whose performance will influence the precision of the whole system directly.
陀螺电源是惯导系统中比较重要的一部分,其稳定性与精度直接影响着整个系统的精度。
3) nonlinear / gyroscope power
非线性/陀螺电源
4) aviation gyroscope inverter power
航空陀螺电源
5) ESG
静电陀螺
1.
Method of adaptive coherent model for picking-up rotational speed of ESG;
静电陀螺转速提取的自适应相干模板法
2.
Modeling of electrostatic suspension system of ESG with eight electrodes;
八电极静电陀螺支承系统的建模
3.
Variation of run-up torque and run-time by changing the rotational speed of ESG magnetic field;
静电陀螺仪加转磁场转速对加转力矩和加转时间的影响
6) piezoelectric gyroscope
压电陀螺
1.
The sensors output datum are collected and optimized in the embedded system by adopting the low cost piezoelectric gyroscopes and accelerometers are adopted and the high precision A/D converter chip and the high performance DSP are used.
采用低成本的压电陀螺和加速度计,运用高精度模/数转换模块和高性能数字信号处理器(DSP),在嵌入式系统内对传感器数据进行了采集和数据优化处理;运用基于快速小波变换的低阶卡尔曼滤波算法和多传感器数据动态融合算法对姿态测量数据进行了处理,优化了姿态角测量数据,为后续姿态测量精度的提高提供了基础。
2.
Based on the noise feature of the piezoelectric gyroscope and how to select method of the structure element,structure elements of the half-circle,triangle and the cosine were used to make up a paralleling complex morphology filter.
基于数学形态学滤波中的开-闭和闭-开滤波器的基本原理,针对压电陀螺信号噪声的特点和结构元素的选择原则,选用半圆形、三角形和余弦形的结构元素,构造一种多结构元素并行复合形态滤波器,对某型号压电陀螺的静态漂移和动态测量信号进行仿真分析,并与小波变换的处理结果进行了比较。
3.
Random drifting is an important index of piezoelectric gyroscope.
利用小波多分辨率分析和假设检验的方法,在对某型压电陀螺随机漂移的实测数据进行预处理的基础上建立了时间序列模型,并在计算机上对卡尔曼滤波补偿随机漂移进行了仿真,结果证实了该模型的有效性。
补充资料:JT-15陀螺经纬仪
JT-15陀螺经纬仪
JT 15陀螺经纬仪
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条