KSAC KS-Activity

基本解释敲缸传感器动作

网络释义

1)KSAC KS-Activity,敲缸传感器动作2)KSES KS-Sensors,敲缸传感器3)KS Kock Sensor,爆震传感器,敲缸传感器4)KS SYSTEM Knock Sensor Sysetem,敲缸传感系统5)starting knock,起动敲缸6)sensors/actuators,传感器/作动器

用法和例句

diesel engine was set as an example to study the influence of starting knock on the strength of connecting rod,piston and piston ring.

L型柴油机为例,试验研究了柴油机起动敲缸对连杆、活塞、活塞环强度的影响。

A new kind of experiment equipment is designed for the starting knock of R4102DL diesel engine.

设计了一种新型试验装置,用于R4102DL柴油机起动敲缸的试验研究。

This paper analyzes basic problems of active vibration control in realization, discusses the control system modeling, control strategies and, controllor design, allocation of sensors/actuators, micro-computer control technique, outlines the main task and way faced with active vibration control.

本文分析了主动振动控制在实现中的基本问题,探讨了控制模型建立,控制策略和控制器的设计,传感器/作动器的配置,微机控制技术;阐明了主动振动控制实现所面临的主要任务和途径。

Study on Piezoelectric Sensor/Actuator Scheme for Active Control of Sound Radiation from Plate;

板声辐射控制中压电传感器/作动器布置研究

The Topology Optimization of the Number and Position of Actuators and Sensors in Intelligent Plate Beam

智能板梁作动器传感器个数与位置的拓扑优化

The Study on the Design and Fabrication Process of MEMS Vibration Sensor;

MEMS振动传感器的设计及制作工艺研究

Follow the instrumentation engineer instruction to do the hand on work on instrumentation and flight test engine.

遵循传感器工程师的说明在试飞发动机操作传感器.

engine speed pneumatic transducer

发动机转速气动传感器

PUS (Passive Ultrasonic Sensor)

被动式超声波传感器

active Doppler velocity sensor

主动多普勒速度传感器

differential transformer displacement transducer

差动变压器式位移传感

pneumatic teletransmitter

气动远程发送器, 气动远程传感器

Optimized Locations of Actuator/Sensor and Active Control of Structures;

结构作动器/传感器的优化配置及其主动控制研究

Ensure the correct functioning of all propulsion system instrumentation.

确保所有推动力系统的传感器工作正确无误.

Development of Generating Actuation Sensor Based on Multi-Piezoelectric Effect;

基于多次压电效应的可作动传感器的研制

Space Moving Target Interception Probability of Uncooperative Sensors

非合作式传感器空间运动目标截获概率研究

However,the primary structures will become too bulky and complex due to the additional sensors and actuators.

但在原结构上附加的传感器和作动器 ,使得结构过于庞大和复杂 ;

The piezoelectric adaptive truss structure was composed of piezoelectric ceramic sensors, actuators, and flexible beams.

由传感器、作动器与柔性梁组成压电自适应桁架结构。

The Position and Number Optimization Design of Sensor and Actuator on Piezoelectricity Intelligence Cantilever Beam;

压电智能悬臂梁传感器、作动器位置与数目优化设计

DC-DC LVDT displacement transducer

直流差动变压器式位移传感器

AC-ACLVDT displacement transducer

交流差动变压器式位移传感器

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