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1)  Electrotactile Reproduction
电触觉再现
1.
In view of geometrical shape fringe vague in tactile tele-presence reproduction,the structure and current stimulation method of electrotactile reproduction device in existence is studied and analyzed in detail,and a new reproduction method based on vector current is put forward and discussed.
针对触觉临场感技术中几何形状再现的边缘模糊效应问题 ,对现有电触觉再现装置的结构及刺激方式进行了研究分析 ,提出了适合几何形状触觉再现的矢量电流方法 ,并进行了分析讨论。
2)  haptic display
触觉再现
1.
An overview on the development of texture haptic display;
纹理触觉再现技术的研究现状及发展
2.
Haptic Display Interface Technology in Soft Environment;
柔性环境下的触觉再现接口技术
3)  tactile representation
触觉再现
1.
This paper presents a new kind of water jet tactile representation technology,which uses water jet as a pressure stimulus to robot telepresence.
介绍了一种新型水射流机器人触觉再现技术。
2.
Tactile representation technology is in dire need of the development of a remote intelligent robot.
 触觉再现技术是遥操作智能机器人发展的急需。
3.
Experiments on the tactile representation sy.
介绍了一种基于水射流刺激的机器人触觉显示器及触觉再现系统。
4)  haptic rendering
力/触觉再现
1.
The realization of haptic rendering system for virtual reality;
力/触觉再现虚拟现实系统的实现方法研究
2.
Over recent years,haptic rendering is widely applied in virtual reality systems to improve system reality.
力/触觉再现技术作为一种新兴的人机交互模式在虚拟现实系统得到较多应用。
3.
The real-time and consistent requirements for computation control in haptic rendering are described,and several control methods,time query method,multimedia timer based method and RTX(real-time extension) based method,under Windows operation system are presented.
针对虚拟环境力/触觉再现系统中作用力计算的实时性要求,研究了Windows操作系统下循环控制的实现方法:时间查询法、多媒体定时器法和基于实时扩展RTX(real-time extension)的方法。
5)  point tactile display
点触觉再现
1.
Experiment research and analysis on pneumatic point tactile display
气动点触觉再现分析与实验研究
6)  compliance haptic display
柔顺性触觉再现
1.
The difficulties of compliance haptic display are mainly focused on three aspects:not deeply understanding the haptic mechanism,dynamic apperceiving progress and limitation of the device performance.
柔顺性触觉再现的研究难点主要集中在对触觉机理了解不深入、动态的感知过程、装置性能有限等方面。
补充资料:厂用电受电


厂用电受电
energizing of auxiliary power system

chongyongd一on sho一Jd一on厂用电受电(energizing of auxiliary powersystem)机组附属设备安装完毕后需通电试运行,所需厂用电源由外部供给,因此厂用电受电是调试工作开始的标志。 受电步骤新建电厂先由电力系统向变电站供电,再依次对高压起动/备用变压器、3~10kv厂用配电装置、厂用工作变压器及380V配电装置供电。扩建电厂因高压起动/备用变压器已经投人运行,故可利用它的电源对扩建的厂用配电装置等供电。 调试项目主要有:①用额定电压依次对空载线路、变电站母线、隔离开关、断瘩器、互感器、变压器及厂用配电装置等进行冲击合闸试验。有条件时.冲击合闸前应先进行递升加压试验。升压过程中注意检查各设备有无放电声及短路现象,发现问题及时处理后再进行升压。②检查三相电压应平衡,相序应正确,各段母线的相位彼此应一致。对配电装置供电时,有时会由于母线电容和与母线连接的电磁式电压互感器的电感相互作用而出现铁磁谐振,此时相电压升高,中性点明显位移。为消除谐振可在电压互感器的剩余电压绕组处并联电阻以去振。
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