• 本文提出了一基于微小区域思想混合激励功率传送型智能小区结构

    In this paper, a hybrid-excited power-delivery intelligent cell structure based on the idea of micro-cell zone is presented.

    youdao

  • 分析回传激光器激励功率回传通道影响激光器最佳工作点及激光器的激励功率分配

    Analyze the feedback laser grid-driving power to our feedback channel influence, the laser best operating point and the laser grid-driving power assignment.

    youdao

  • 电子束波导中可能激励多种微波模式,测量微波模式研究功率微波产生的机理有意义

    The high-current electron beam in the over-mode waveguide had driven the many kinds of microwave modes, it is very significant to study the high power microwave by measuring the microwave mode.

    youdao

  • 在不增加激励输入功率情况下,带倾角激励可以极大地增加主流偏转角度,推力向量控制效果好。

    The actuator at an angle can change greatly the primary jet direction and has a good effect on thrust vectoring without increasing input power.

    youdao

  • 研究外力激励下含有表面裂纹损伤壳式管道传播功率特性并给出裂纹识别方法

    The wave propagation and power flow characteristics of a shell-type pipe with circumferential surface crack are investigated and the method for crack detection is proposed.

    youdao

  • 然而目前基于功率均衡数字式随机振动控制系统只能产生高斯分布的随机振动激励信号

    However, the digital random vibration control systems currently based on power spectrum fitting can only generate random vibration exciting signals with Gaussian probability distribution.

    youdao

  • 分析了正弦激励RLC电路作为脉冲功率电源可能性

    Under sinusoidal excitation, the feasibility of utilizing RLC circuit as the impulse power source is analyzed.

    youdao

  • 介绍了利用SPG-200脉冲功率源产生电子束激励氟化氢激光实验研究情况。

    The experimental study on an electron-beam-initiated hydrogen fluoride laser with SPG-200 pulsed power generator is introduced.

    youdao

  • 激励功率脉冲co_2激光器激光推进新兴应用优选激光器之一

    Electrically excited high power pulsed CO_2 laser is one of the favorable lasers in novel applications such as laser propulsion.

    youdao

  • 本文提出了一种实用可靠经济简单磁共振系统脉冲功率激励设计方案

    Design of a pulsed power source in the low field nuclear magnet resonance (NMR) system with the advantages of practicality, reliability, economy and simplicity is proposed in this paper.

    youdao

  • 研究了偏心激励多模聚合物光纤截面功率分布

    Numerical and experimental studies of cross sectional optical power distribution (OPD) in polymer optical fiber under offset launch are given.

    youdao

  • 采用传播分析方法,讨论外部敷设弹性自由阻尼材料无限长圆柱场中受径向简谐激励振动功率流。

    Employed wave propagation approach, the vibrational power flow of a submerged infinite cylindrical shell coated with unconstrained viscoelastic layer excited by a radical harmonic force is studied.

    youdao

  • 用高斯随机过程模拟地震激励及其功率谱特性

    The seismic excitation is modeled as a Gaussian random process and the power spectrum can be taken into account.

    youdao

  • 相同激励信号作用,结果显示功率密度无法分辨非最小相位信号。

    With same input signal to excite two systems, the results show that the power spectral density of the output can't identify non-minimum phase signal.

    youdao

  • 根据功放实测AM-AM、AM-PM特性,采用时域分析方法应用非线性理论数字信号处理技术,分析了宽带数字调制信号激励下的射频功率放大器非线性失真特性。

    The method is based on AM-AM?AM-PM characteristics of a nonlinear power amplifier and application of band -pass nonlinearity theory and digital signal processing techniques.

    youdao

  • 环形波导内侧开多个狭缝用来激励产生等离子体。 利用研究气压等离子体参数击穿功率熄灭功率影响

    The source has been used to study the effect of pressure on argon plasma parameters and microwave power for plasma ignition and extinction.

    youdao

  • 使用合适功率放大器驱动激励线圈实现基于磁伸缩效应无损检测技术的关键环节。

    It is important to apply a suitable power amplifier to drive the transmitting coil in magnetostrictive nondestructive testing (NDT).

    youdao

  • 采用双过滤噪声功率谱模型描述震动,并用林家浩虚拟激励进行随机响应分析

    The seismic ground motion is assumed to be double filtered white noise, and pseudo excitation approach is employed to calculate the random response.

    youdao

  • 采用螺旋形空心阴极放电激励紫外离子激光器实验研究了空心阴极放电,激光增益激光输出功率特性

    The ultraviolet copper ion laser with helical hollow cathode has been experimentally investigated. The discharge and laser gain and output characteristics were studied.

    youdao

  • 功率分析方法分析了在路面激励柔性模型振动特性

    The random vibration characteristic of the flexible model is simulated by using PSD method.

    youdao

  • 镜架支撑安装面上实测地面振动速度功率谱密度激励运用ANSYS有限元分析软件PSD分析模块,对结构系统的随机振动响应进行了分析计算。

    The PSD measured on the install base level of the mount as the excitation, the random vibration response of the mount was analyzed with the PSD module of ANSYS.

    youdao

  • 实际结果表明我们研制脉冲激励电源可以满足功率TEACO2激光器特殊工作要求

    The experimental results demonstrate that this pulsed exciting power supply developed by our lab can totally satisfy the special requirement of the high-power TEA CO2 laser.

    youdao

  • 结合复功率概念有效导纳研究思想,提出适合复杂激励复杂连接系统功率传递规律研究的理论、新方法——有效导纳功率流法。

    Effective Mobility power Flow Method is presented, which is a new theory and is applicable in research of the power transfer principle of complex connected systems with complicated excitation.

    youdao

  • 平均功率不变情况下,可以通过减小激励电流占空比来增加最大探测距离

    The maximal detection range increases with the reducing duty ratio of the drive current when the transmitted average power is constant.

    youdao

  • 功率激励作用,矩形波导谐振腔微波化学反应器内甲烷气体在常压下可以产生微波放电使甲烷转化C2

    Under the effect of high power and actuator, it can form microwave discharge, and make methane to C2 alkynes in microwave chemistry reactor made of rectangular groove guide reactor under atmospheric.

    youdao

  • 对于影响围壳模型辐射功率主要因素比如围壳模型厚度不同加肋情况和激励分布等,进行研究分析其围壳辐射声功率的影响。

    The effect of main factors, such as the thickness of the model, the distribution of symmetric forces excited on the model, and different kind of ribs, on the radiated sound power has been analyzed.

    youdao

  • 利用随机振动方法分析了钢筋混凝土框架结构水平随机地震激励结构响应功率

    With the random vibration method, the response spectrum of structure under the earthquake action of level axis directions are obtained.

    youdao

  • 利用随机振动方法分析了钢筋混凝土框架结构水平随机地震激励结构响应功率

    With the random vibration method, the response spectrum of structure under the earthquake action of level axis directions are obtained.

    youdao

$firstVoiceSent
- 来自原声例句
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定