1) coning compensation

圆锥误差补偿
1.
Limitations of error estimation for classic coning compensation algorithm;

经典圆锥误差补偿算法中剩余误差估计的局限性研究
2) coning compensation

圆锥补偿
1.
A four-sample coning compensation for the modern SINS attitude algorithm is simulated in the digital signal processor under the condition of swaying motion, and compared with a three-sample coning compensation, an three-sample equivalent rotation vector, and an sample Peano-Baker approach.
运用四子样圆锥补偿现代捷联惯导系统姿态算法,针对船舶的摇摆运动在数字信号处理芯片(DSPs)上进行了仿真,并与三子样圆锥补偿算法、三子样等效转动矢量法和单子样毕卡逼近法的仿真结果进行了比较。
2.
The angular veloclty modle is given at first,then the incremental attitude vector,the cross product of two incremental attitude vector,the equation of coning compensation coefficients and the error equation are derived.
本文对Chan Gook Park等提出的新圆锥补偿研究方法进行了进一步的研究。
3) Coning Error

圆锥误差
1.
Coning Error Analysis of SINS in High Dynamic Environment;

弹载捷联惯导系统的圆锥误差分析
2.
Optimized coning error compensation algorithm in RLG SINS;

激光捷联系统中的优化圆锥误差补偿算法
3.
New coning error compensation algorithm of strapdown inertial navigation system;

一种新的捷联惯导系统圆锥误差补偿算法
4) error compensation

误差补偿
1.
Xwfd pre-stack depth migration based on dual-complexity with error compensation correction;
双复杂条件下带误差补偿的频率空间域有限差分法叠前深度偏移
2.
Feeding Error Compensation of EDM Machine Based on Finite Element Analysis;

基于有限元分析的线切割机床进给误差补偿
3.
Research on Cutting Parameters Optimization and Error Compensation in Slender Bar Turning;
细长轴车削用量优化与加工变形误差补偿技术的研究
5) Errors compensation

误差补偿
1.
Finite-difference pre-stack depth migration with errors compensation;

带误差补偿的有限差分叠前深度偏移方法
2.
This dissertation applies the kinematic calibration principle and computer vision technique to improve the X-Y table accuracy via geometrical parameters identification and errors compensation.
本文分析了定位平台的主要误差源;利用计算机视觉技术进行了相机的标定,设计实验分析评估了其精度,并且利用该相机完成测量任务;针对此引线键合机设计了标定实验分步对该引线键合机定位平台的相关参数进行辨识;利用辨识结果通过修正系统输入对系统误差进行了补偿,设计实验并验证了通过误差补偿可以提高系统的精度,从而说明了基于计算机视觉的运动学标定技术应用于该引线键合机的可行性和有效性。
3.
This paper deduced precisely the errors formula of AC synchronous sampling to voltage,solved the lower precision problem caused by changing-frequency signal,and put forward errors compensation.
导出了电压交流同步采样的准确误差公式,解决了被测信号频率变化时采样精度降低的问题,并提出了误差补偿方法。
6) error compensating

误差补偿
1.
This paper introduces the construction and application in manufacturing wheel cutter of the single chip computer controlled error compensating system ,discusses emphatically collection and processing beforehand of error data as well as analysis of compensating precision .
介绍了由单片机控制的逐点误差补偿控制系统的组成以及该系统在滚刀精加工过程中的应用 ,着重讨论了误差数据的采集、预处理以及补偿精度分析。
2.
After analysing the error of pitch, this paper put forward a method of error compensating without the error compensating mechanism in a numerical controlled lathe.
通过对车床加工丝杠螺距误差的分析,提出了应用自适应控制原理,在数控车床上不另设误差补偿机构,利用微机实现螺距误差在线动态测量和实时补偿校正。
补充资料:55°圆锥管螺纹型式和尺寸
螺纹代号 | 基本尺寸 英 寸 | 大径 mm d=D | 螺距 mm p | 每英寸牙数 tpi | 中径 mm d2=D2 | 小径 外螺纹 d3 | 牙型高度 H1 | 圆弧尺寸 r | 底孔尺寸 mm |
R 1/16 | 1/16" | 7.723 | 0.907 | 28 | 7.142 | 6.561 | 0.581 | 0.125 | 6.4 |
R 1/8 | 1/8" | 9.728 | 0.907 | 28 | 9.147 | 8.566 | 0.581 | 0.125 | 8.4 |
R 1/4 | 1/4" | 13.157 | 1.337 | 19 | 12.301 | 11.445 | 0.856 | 0.184 | 11.2 |
R 3/8 | 3/8" | 16.662 | 1.337 | 19 | 15.806 | 14.950 | 0.856 | 0.184 | 14.75 |
R 1/2 | 1/2" | 20.955 | 1.814 | 14 | 19.793 | 18.631 | 1.162 | 0.249 | 18.25 |
R 3/4 | 3/4" | 26.441 | 1.814 | 14 | 25.279 | 24.117 | 1.162 | 0.249 | 23.75 |
R 1 | 1" | 33.249 | 2.309 | 11 | 31.77 | 30.291 | 1.479 | 0.317 | 30 |
R 1 1/4 | 1 1/4" | 41.910 | 2.309 | 11 | 40.431 | 38.952 | 1.479 | 0.317 | 38.5 |
R 1 1/2 | 1 1/2" | 47.803 | 2.309 | 11 | 46.324 | 44.845 | 1.479 | 0.317 | 44.5 |
R 2 | 2" | 59.614 | 2.309 | 11 | 58.135 | 56.656 | 1.479 | 0.317 | 56 |
R 2 1/2 | 2 1/2" | 75.184 | 2.309 | 11 | 73.705 | 72.226 | 1.479 | 0.317 | 71 |
R 3 | 3" | 87.884 | 2.309 | 11 | 86.405 | 84.926 | 1.479 | 0.317 | 85.5 |
R 4 | 4" | 113.030 | 2.309 | 11 | 111.551 | 110.072 | 1.479 | 0.317 | 110.5 |
R 5 | 5" | 138.430 | 2.309 | 11 | 136.951 | 135.472 | 1.479 | 0.317 | 136 |
R 6 | 6" | 163.830 | 2.309 | 11 | 162.351 | 160.872 | 1.479 | 0.317 | 161.5 |
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