惯性环节的英文
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"惯性环节"怎么读用"惯性环节"造句
英文翻译手机版
- inertia element
- "惯性"英文翻译 inertia; inertance; sluggish ...
- "环节"英文翻译 link
- "惯性环节(非周期环节)" 英文翻译 : inertia element (aperiodic element)
- "非线性环节" 英文翻译 : non linear link; nonlinearity
- "限制性环节" 英文翻译 : critical link
- "环节" 英文翻译 : 1.(互相关联的许多事物中的一个) link 生产环节 links in the production chain; 主要环节 a key link2.[动物学] (某些低等动物的环状结构) segment; 环节动物 annelid; annulate
- "惯性" 英文翻译 : [力学] inertia; inertance; sluggishness; the force of inertia 惯性使汽车驶到了人行道上。 inertia carried the car to the pavement.; 惯性半径 radius of inertia; 惯性测量 inertia measurement; 惯性沉降 inertial settling; 惯性冲程 head reach; 惯性传感器 inertial sensor; 惯性定律 law of inertia (牛顿第一定律); 惯性定位 inertial positioning; 惯性飞行 coasting flight; 惯性飞行导弹 coasting missile; coaster; 惯性滑行 coast; coasting; 惯性控制 inertial control; 惯性领航 inertial navigation; 惯性轮 flywheel; inertia wheel; 惯性平衡 inertia balance; 惯性系数 inertia coefficent; 惯性效应 effect of inertia; 惯性压力 [流] inertial pressure; 惯性制导 inertial guidance; 惯性制动 inertia braking; 惯性中心 centre of inertia; 惯性轴 [物理学] axes of inertia; inertia axis; 惯性撞击 inertial impaction
- "变性环" 英文翻译 : denaturation loop
- "弹性环" 英文翻译 : elastic ring; jump ring; resilient ring
- "刚性环" 英文翻译 : stiffening rings attachment to shell; stiffness ring
- "单元,环节" 英文翻译 : section
- "多环节" 英文翻译 : too many levels
- "环节,组件" 英文翻译 : component element
- "连杆;环节" 英文翻译 : link
- "体节;环节" 英文翻译 : segment
- "小环节" 英文翻译 : annelet
- "循环节" 英文翻译 : loop body; repetend
- "轴环节" 英文翻译 : axial ring
- "保护性环境" 英文翻译 : protective environment
- "不适性环境" 英文翻译 : unfitness of environment
- "弹性环联接" 英文翻译 : spring-ring friction joint
- "弹性环销" 英文翻译 : spring ring dowel
- "弹性环桦" 英文翻译 : spring ring dowel
- "动物性环境" 英文翻译 : animal environment
- "对流性环流" 英文翻译 : convectional circulation
例句与用法
- In addition to these , some large - lag links and complicated on - line analyzer etc can also result in time - delay
另外有些大惯性环节、复杂的在线分析仪等等也会导致时延现象。 - By using transfer function , quantitative analysis , pattern analysis and reduced analysis of driving fatigue can be finished . based on automatic control theory , driving fatigue can be analogized as two parts : inertia link and proportion differential link
采用传递函数将驾驶疲劳定量化、简约化、模式化,借用自控理论将驾驶疲劳类比为两个过程:类惯性环节的响应过程及类比例微分环节的响应过程。 - Moreover , large - lag links , transmission process and complicated on - line analyzer etc , are common in the number of industrial processes , which can cause delay in the systems . such delays will be a main cause of bad performance or even instability for control systems
而且,由于大惯性环节、传输过程以及复杂的在线分析仪等不可避免地会导致滞后现象的产生,这些滞后特性往往会严重影响控制系统的稳定性以及系统的性能指标。 - For example , petroleum chemical engineering systems and metallurgy systems can be modeled as time - delay systems for their content lag and transmission delay . in addition to these , because of transmission process , large - lag links and complicated on - line analyzer etc , a large number of industrial processes ( in metal engineering , chemical engineering systems , biomedical systems and so on ) can be modeled as time - delay systems
基本上是不可避免的,大惯性环节、传输过程、复杂的在线分析仪、石油化工和冶金工业过程中的容量滞后和传输延时等不可避免地会导致滞后现象,而这些滞后特性往往会严重影响控制系统的稳定性以及系统的性能指标,甚至使系统不稳定性。 - On the other hand , large - lag links , transmission process and complicated on - line analyzer etc , are common in a number of industrial processes , which can cause delay in the systems . such delays will be a main cause of bad performance or even instability for control systems . so , the research on the time delay systems attracts considerable attention in the control theory literature all alone
另一方面,在实际工业生产中,大惯性环节、传输过程以及复杂的在线分析仪等不可避免地会导致滞后现象的产生,这些滞后特性往往会严重影响控制系统的稳定性以及系统的性能指标,因此对时滞系统地研究也一直是控制理论研究的热点之一。 - On the other hand , because of transmission process , large - lag links and complicated on - line analyzer etc , a large number of industrial processes ( in metal engineering , chemical engineering systems , biomedical systems and so on ) can be modeled as time - delay systems . the stability and performance are always dominated by delay phenomena , so the study of delay systems always attracts considerable atten tion in the control theory literature
另一方面,在实际的工业过程中,大惯性环节、传输过程、复杂的在线分析仪等不可避免地会导致滞后现象,而这些滞后特性往往会严重影响控制系统的稳定性以及系统的性能指标,因此时滞系统的研究同样具有重要的理论和实际工程意义,而且历来是控制理论研究的热点之一。
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