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harmonic division相关的网络例句

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与 harmonic division 相关的网络例句 [注:此内容来源于网络,仅供参考]

The stress was the study of the new methods of calculation the harmonic voltage and the harmonic current, and a new concept of filter ratio to evaluate the actual effect of single harmonic filter was raised considering the background harmonics. As well, the calculation mode of the single harmonic filter was also given based on the concept of filter ratio; it can offer effect data to evaluate the actual filter ratio of the single harmonic filter. At the same time, a method of designing the single harmonic filter was given, too, considering the background harmonics of the power system. In this paper, both the computer analysis and the proven had been done. And the result was shown to be that the voltage aberration and the harmonic current were decreased, and that the actual filter ratio of single harmonic filter was raised. The reason that we must consider the background harmonics when designing a single harmonic filter was also expatiated in this paper.

重点研究了考虑电网背景谐波下谐波电压、电流的计算方法,提出了用滤波率来评价单调谐滤波器安装容量利用率的概念,基于滤波率,分别给出了不考虑、考虑电网背景谐波时,单调谐滤波器的计算模型,为定量分析和评价单调谐滤波器的实际补偿效果提供了依据:并以此提出了考虑电网背景谐波的单调谐滤波器计算机辅助优化设计方法,并经计算机仿真分析、论证,减少了负载母线谐波电压畸变率和注入系统的谐波电流,有效地提高了单调谐滤波器的滤波效果,阐述了单调谐滤波器的设计过程中要考虑电网背景谐波的理论和实际意义。

Harmonic Drive Technical Dynamic League Group Co., Ltd. is consisted of Beijing Feida CTKM Harmonic Drive Technology Innovation Co., Ltd., Beijing CTKM Harmonic Drive Co., Ltd. and other units. The group company is home to many experts, professors and researchers, who have been in the field of harmonic drive for years, and have had a number of key results of harmonic drive technology, including series harmonic drive products with 8 different structures. The group has the strongest capability in harmonic drive technology innovation, and has made important contributions to the development of China's harmonic drive technology.

由北京飞达克美谐波传动技术创新有限公司和北京中技克美谐波传动有限责任公司等单位组成的动态联盟集团公司集中了我国多年来从事谐波传动技术研究的专家,教授及科技人员,曾主持完成我国多项谐波传动技术成果,开发出八个不同结构的谐波传动系列产品,具有最强的谐波传动技术创新能力,为我国的谐波传动技术的发展做出了重大贡献。

Companies in five divisions and the 1st Division: Note-aircraft division, which makes vacuum-injection machine, low-pressure perfusion machines, ovens, etc.; second division: liquid crystal display devices division, the main products of ACF Tiezhao , IC of the crew, COG pressing machines, TAB machine, polarizing slicing machine, glass and other automatic friction; Third Division: non-standard equipment Division, the main products are various fixture, metal molds, measuring devices And an aging furnace; Fourth Division: metal stamping division, processing all kinds of metal stamping parts; Fifth Division: Distribution Division, the external Aoxiangyingfeng Co., Ltd.

公司分五个分部,第一分部:注型机分部,主要生产真空注型机、低压灌注机、烤箱等;第二分部:液晶显示周边设备分部,主要产品有ACF贴着机、IC对位机、COG热压机、TAB机、偏光切片机、玻璃自动摩擦机等;第三分部:非标设备分部,主要产品有各种工装夹具、金属模具、测量装置及老化炉等;第四分部:五金冲压分部,加工各种金属冲压件;第五分部:经销分部,对外以《深圳市敖翔盈丰有限公司》的名义开展国内外商贸活动,销售本公司生产的各种设备,同时代理国外化工材料、钢丝等产品

Bureau of organs inside the 18 functional departments, namely, office, party office to the Personnel Section, Finance Audit Division, law enforcement Supervision Department to monitor the room, Market Management Division, Property Management Section, Housing Management Division, Property Management Division, Demolition Management Division, Housing Reform Business Management Section, Management Section, affordable housing, and housing reform fund management division transformation of the old Management Section, the Development Enterprise Management Division, Development Project Management Division, residential property management section.

局机关内设18个职能科室,即办公室、党委办公室、组织人事科、财务审计科、执法监察科、监察室、市场管理科、产权管理科、房屋管理科、物业管理科、拆迁管理科、房改业务管理科、经济适用住房管理科、房改资金管理科、旧城改造管理科、开发企业管理科、开发项目管理科、住宅产业管理科。

1605 Antiaircraft Artillery Regiment, 4 Bomber Aircraft Corps (202, 219, 321 Bomber Aircraft Division), 5 Ground Attack Aircraft Corps (4 Guards, 264 Ground Attack Aircraft Division), 8 Ground Attack Aircraft Corps (224, 227 Ground Attack Aircraft Division), 5 Fighter Aircraft Corps (8 Guards, 256 Fighter Aircraft Division), 10 Fighter Aircraft Corps (10 Guards, 235 Fighter Aircraft Division), 10 Guards Ground Attack Aircraft Division, 331 Fighter Aircraft Division, 208 Night Bomber Aircraft Division, 98 Guards, 50 Recon Aircraft Regiment, 372, 1002 Separate Artillery Regiment

第1254﹑1554﹑1555﹑1605防空炮团,第4轰炸机军(第202﹑219﹑321轰炸机师),第5强击机军(第4近卫强击机师,第264强击机师),第8强击机军(第224﹑227强击机师),第5歼击机军(第8近卫歼击机师,第256歼击机师),第10歼击机军(第10近卫歼击机师,第235歼击机师),第10近卫强击机师,第331歼击机师,第208夜间轰炸机师,第98近卫侦察机团,第50侦察机团,第372﹑1002独立炮兵团

Guards Rifle Corps (151, 161, 237, 395 Rifle Division), 30 Rifle Corps (129 Guards, 30, 141 Rifle Division), 47 Rifle Corps (280, 309 Rifle Division), 52 Rifle Corps (183, 316 Rifle Division), 74 Rifle Corps (147, 155, 276 Rifle Division), 107 Rifle Corps (127, 167, 304 Rifle Division),3 Breakthrough Artillery Division (15 Light Artillery Brigade, 5 Gun Artillery Brigade, 1 Howitzer Brigade, 116 Gun Artillery Brigade, 7 Mortar Brigade); 4, 317 Guards, 130, 222, 1075, 1506, 1642, 1672 Antitank Artillery Regiment, 525 Mortar Regiment, 329 Guards Mortar Regiment, 25 Antiaircraft Artillery Division (1067, 1356, 1362, 1368 Antiaircraft Artillery Regiment), 269 Guards, 580 Antiaircraft Artillery Regiment, 31 Guards Separate Antiaircraft Artillery Battalion 4 Guards Tank Corps 12, 13, 14 Guards Tank Brigade, 3 Guards Motorised Rifle Brigade, 756 Antitank Artillery Regiment, 752 Separate Antitank Artillery Battalion, 264 Mortar Regiment, 76 Motorcycle Battalion, 240 Guards Mortar Battalion (rocket launchers, 120 Guards Antiaircraft Artillery Regiment, 1, 12 Guards Separate Tank Regiment, 46 Separate Armored Train Battalion

第18近卫步兵军(第151﹑161﹑237﹑395步兵师),第30步兵军(第129近卫步兵师,第30﹑141步兵师),第47步兵军(第280﹑309步兵师),第52步兵军(第183﹑316步兵师),第74步兵军(第147﹑155﹑276步兵师),第107步兵军(第127﹑167﹑304步兵师),第3突击炮兵师(第15轻型炮兵旅,第5加农炮旅卖底1榴弹炮旅,第116加农炮旅,第7迫击炮旅),第4﹑317进位反坦克炮团,第130﹑222﹑1075﹑1506﹑1642﹑1672反坦克炮团,第525迫击炮团,第329近卫迫击炮团,第25防空炮师(第1067﹑1356﹑1362﹑1368防空炮团),第269近卫防空炮团,第580防空炮团,第31近卫独立防空炮营,第4近卫坦克军(第12﹑13﹑14近卫坦克旅,第3近卫摩托化步兵旅,第756反坦克炮团,第752独立反坦克炮营,第264迫击炮团,第76摩托车营,第240近卫迫击炮营,第120近卫防空炮团),第1﹑12近卫独立坦克团,第46独立装甲列车营,第6工程兵旅,第3舟桥旅,第27独立工兵营

However, harmonic analysis lays the foundation for power harmonic treatment. The paper discusses the development of a power harmonic analyzer hosed on DSP and LabVIEW, which is used to analyze and measure harmonic on real-time. The analyzer's hardware, harmonic analysis algorithm, LabVIEW software design and the implementation are alt brought forward in detail.

为了有效地检测电力谐波,并对其进行治理,本文将DSP与LabVIEW虚拟仪器技术相结合,提出了一个谐波实时测量分析仪的设计方案,同时给出了系统的硬件构成和谐波分析算法,以及LabVIEW子程序的详细设计及实现。

Derives the formulae for calculating the distortion and stress on the acting surface of flexspline load in the drive process of the harmonic gear drive with three-wave wavegenerator;(2) analyzes and compares the performance of plastic and steel products under light load drive and calculates the probably reached limit of drive ratio for both types of flexsplines under the same load;(3) applies the harmonic gear drive with three-wave wavegenerator to the small-sized multiple-revolution electric device of valves by taking into consideration of the low limit of the drive ratio for the harmonic gear drive with three-wave wavegenerator made of plastics, improves the design on the main drive mechanism of the traditional small-sized multiple-revolution electric device of valves, and validates through examples the feasibility for the harmonic gear drive with three-wave wavegenerator made of plastics to be applied to the small-sized multiple-revolution electric device of valves. Finally the author performs calculations on the two types of the flexsplines of the harmonic gear with three-wave wavegenerator by using the finite element method and analyzes the causes for the errors.

本文根据三波谐波齿轮传动的运动变形特点,采用弹性薄壳的力矩理论,推导了三波谐波齿轮传动柔轮载荷作用面上的变形及应力计算公式;分析比较了轻载传动情况下塑料和钢材的性能,计算了塑料制谐波柔轮和钢制谐波柔轮在相同载荷情况下可能达到的传动比极限;对塑料制及钢制三波谐波齿轮柔轮进行了有限元计算,分析了产生误差的原因;针对三波塑料谐波齿轮传动比极限低的特点,将之运用于小转矩多回转阀门电动装置中,对传统的小型多回转阀门电动装置的主传动机构进行了改良设计,并通过实例验证了三波塑料谐波齿轮传动在小转矩多回转阀门电动装置中应用的可行性。

In this paper, the current states of research about the basic theory of harmonic oscillator and hydrogen atom in quantum mechanics are firstly reviewed. On base of it, and the relationships between harmonic oscillator and hydrogen atom in quantum mechanics are studied. By use of the relationships between the hermite polynomial and the laguerre polynomial, the eigenequations of one-dimensional harmonic oscillator and hydrogen atom are conversed into the same equations in form. Therefore the relationships between energy levels and wave functions of one-dimensional harmonic oscillator and hydrogen atom are found. Through the coordinates transform, the relationships between energy levels and wave functions of two-dimensional harmonic oscillator and hydrogen atom are found.

首先综述了谐振子与氢原子的基本理论的研究现状,并在此基础上对谐振子与氢原子的关系展开了研究,通过厄密特方程与拉盖尔方程的相互转化,将一维谐振子与一维氢原子的本征值方程转化为相同形式的方程,从而比较得出它们能量及波函数间的关系,并通过坐标变换将直角坐标系下二维氢原子的本征值方程转化成与曲线坐标系下二维谐振子的本征值方程相同的形式,从而得出二维氢原子与二维谐振子的能量及波函数的关系。

Data in this chapter are prepared and edited by Division of Population and Employment Statistics, Division of National Economic Accounting, Division of Industry and Transport Statistics, Division of Statistics of Investment in Fixed Assets, Division of Trade and External Economic Relations Statistics, Division of Social and Technology Statistics, Division of Comprehensive Statistics of Municipal Bureau of Statistics and NBS Survey Office in Chongqing, on basis of data from related divisions of Municipal Bureau of Statistics, statistical bureaus of districts and from related municipal departments.

本章资料分别由市统计局人口就业处、核算处、工业交通处、固定资产投资处、贸易外经处、社会科技处、综合处和国家统计局重庆调查总队根据有关专业统计资料、各区县统计局资料和市级有关部门的区县资料整理编辑。

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