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电气专业英语论文期刊

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电气专业英语论文期刊

电气工程专业相关的,全英文的,是s

我认为不会有答案的,如果你有汉文版的,并自己初步翻译了的文章,我可以帮你修改一下!

[1] Corrêa, J., Farret F., Canha L.,et al. An electrochemical-based fuel-cell model suitable for electrical engineering automation approach [J]. IEEE Transactions on industrial electronics. 2004, 51(5): 1103-1112.[2] wider, J., Michalski P.,Wszo ek G. Laboratory support for the didactic process of engineering processes automation at the Faculty of Mechanical Engineering [J]. Journal of Achievements in Materials and Manufacturing Engineering. 2006, 15(1-2): 199-206.给你找了两篇算是沾边文献。第一篇是电气化顶级期刊IEEE文献,被引用过100多次。第二篇被引用过十次。应该适合楼主。如果需要全文可以发邮件到另本人利用业余时间在百度知道里免费给网友查专业文献,纯属业余爱好,发的文献无存稿,请无关人员勿骚扰。

Welding Automation Research in the engineering school is largely focused on problems involving sensing, modeling, and control of welding processes, i.e., welding automation. Faculty and students from electrical engineering, mechanical engineering, and material science are involved in the welding automation research. The overall objective of this research is to provide both greater productivity and enhanced quality for welding in the manufacturing environment.http://eecs.vanderbilt.edu/researchgroups/weldingautomation

电气专业英语论文翻译

啧啧,我不会,看着也是醉了,学了这么多年英语,每次遇到这样的科技翻译都满满的挫败感。

Electric Power Systems 电力系统 The modern society depends on the electricity supply more heavily than ever before. 现代社会的电力供应依赖于更多地比以往任何时候。 It can not be imagined what the world should be if the electricity supply were interrupted all over the world. 它无法想象的世界应该是什么,如果电力供应中断了世界各地。 Electric power systems (or electric energy systems), providing electricity to the modern society, have become indispensable components of the industrial world. 电力系统(或电力能源系统),提供电力到现代社会,已成为不可缺少的组成部分产业界的。 The first complete electric power system (comprising a generator, cable, fuse, meter, and loads) was built by Thomas Edison – the historic Pearl Street Station in New York City which began operation in September 1882. 第一个完整的电力系统(包括发电机,电缆,熔断器,计量,并加载)的托马斯爱迪生所建-站纽约市珍珠街的历史始于1882年9月运作。 This was a DC system consisting of a steam-engine-driven DC generator supplying power to 59 customers within an area roughly 1.5 km in radius. The load, which consisted entirely of incandescent lamps, was supplied at 110 V through an underground cable system. 这是一个半径直流系统组成的一个蒸汽发动机驱动的直流发电机面积约1.5公里至59供电范围内的客户。负载,其中包括完全的白炽灯,为V提供110通过地下电缆系统。 Within a few years similar systems were in operation in most large cities throughout the world. With the development of motors by Frank Sprague in 1884, motor loads were added to such systems. This was the beginning of what would develop into one of the largest industries in the world. In spite of the initial widespread use of DC systems, they were almost completely superseded by AC systems. By 1886, the limitations of DC systems were becoming increasingly apparent. They could deliver power only a short distance from generators. 在一个类似的系统在大多数大城市在世界各地运行数年。随着马达的弗兰克斯普拉格发展在1884年,电机负载被添加到这些系统。这是什么开始发展成为世界上最大的产业之一。在最初的直流系统广泛使用尽管如此,他们几乎完全被空调系统所取代。到1886年,直流系统的局限性也日益明显。他们可以提供功率只有很短的距离从发电机。To keep transmission power losses ( I 2 R ) and voltage drops to acceptable levels, voltage levels had to be high for long-distance power transmission. Such high voltages were not acceptable for generation and consumption of power; therefore, a convenient means for voltage transformation became a necessity. 为了保持发射功率损失(我2 R)和电压下降到可接受的水平,电压等级,必须长途输电高。如此高的电压不发电和电力消耗可以接受的,因此,电压转换成为一个方便的手段的必要性。 The development of the transformer and AC transmission by L. Gaulard and JD Gibbs of Paris, France, led to AC electric power systems. 在发展的变压器,法国和交流输电由L.巴黎戈拉尔和JD吉布斯导致交流电力系统。 In 1889, the first AC transmission line in North America was put into operation in Oregon between Willamette Falls and Portland. 1889年,第一次在北美交流传输线将在俄勒冈州波特兰之间威拉梅特大瀑布和实施。It was a single-phase line transmitting power at 4,000 V over a distance of 21 km. With the development of polyphase systems by Nikola Tesla, the AC system became even more attractive. By 1888, Tesla held several patents on AC motors, generators, transformers, and transmission systems. Westinghouse bought the patents to these early inventions, and they formed the basis of the present-day AC systems.这是一个单相线路传输功率为4,000公里,超过21 V系统的距离。随着交流的发展多相系统由尼古拉特斯拉,成为更具吸引力的。通过1888年,特斯拉举行交流多项专利电动机,发电机,变压器和输电系统。西屋公司购买了这些早期的发明专利,并形成了系统的基础,现在的交流。 In the 1890s, there was considerable controversy over whether the electric utility industry should be standardized on DC or AC. By the turn of the century, the AC system had won out over the DC system for the following reasons: 在19世纪90年代,有很大的争议或交流电力行业是否应该统一于直流。到了世纪之交的,在交流系统赢得了原因出在下面的直流系统为: (1)Voltage levels can be easily transformed in AC systems, thus providing the flexibility for use of different voltages for generation, transmission, and consumption. (1)电压水平可以很容易地改变了空调系统,从而提供了传输的灵活性,发电用不同的电压和消费。 (2)AC generators are much simpler than DC generators. (2)交流发电机简单得多比直流发电机。 (3)AC motors are much simpler and cheaper than DC motors. (三)交流电机和电机便宜简单得多,比直流。 The first three-phase line in North America went into operation in 1893——a 2,300 V, 12 km line in southern California. 前三个阶段的美国北线投产于1893年- 1 2300五,南加州12公里路线研究。 In the early period of AC power transmission, frequency was not standardized. 在电力传输初期交流,频率不规范。 Many different frequencies were in use: 25, 50, 60, 125, and 133 Hz. 有许多不同频率的使用:25,50,60,125,和133赫兹。 This poses a problem for interconnection. Eventually 60 Hz was adopted as standard in North America, although 50 Hz was used in many other countries. 这对互连的问题。最后60赫兹标准获得通过,成为美国在北美,虽然是50赫兹在许多其他国家使用。 The increasing need for transmitting large amounts of power over longer distance created an incentive to use progressively high voltage levels. To avoid the proliferation of an unlimited number of voltages, the industry has standardized voltage levels. In USA, the standards are 115, 138, 161, and 230 kV for the high voltage (HV) class, and 345, 500 and 765 kV for the extra-high voltage (EHV) class. In China, the voltage levels in use are 10, 35, 110 for HV class, and 220, 330 (only in Northwest China) and 500 kV for EHV class . 较长的距离越来越需要大量的电力传输多激励他们逐步使用高压的水平。为了避免电压增殖数量无限,业界标准电压水平。在美国,标准是115,138, 161,和230千伏的高电压(高压)类,345,500和765千伏级的特高电压(超高压)。在中国,各级使用电压为10,35,110级高压, 220,中国330(仅在西北)和500千伏超高压类。The first 750 kVtransmission line will be built in the near future in Northwest China. 第一个750 kVtransmission线将建在不久的将来在中国西北地区。With the development of the AC/DC converting equipment, high voltage DC (HVDC) transmission systems have become more attractive and economical in special situations. 随着交流的发展/直流转换设备,高压直流高压直流(HVDC)传输系统已经成为更具吸引力的经济和情况特殊。 The HVDC transmission can be used for transmission of large blocks of power over long distance, and providing an asynchronous link between systems where AC interconnection would be impractical because of system stability consideration or because nominal frequencies of the systems are different. 在高压直流输电可用于输电块以上的大长途电话,并提供不同系统间的异步连接在AC联网系统将是不切实际的,因为稳定考虑,或因标称频率的系统。 The basic requirement to a power system is to provide an uninterrupted energy supply to customers with acceptable voltages and frequency. 基本要求到电源系统是提供一个不间断的能源供应,以客户可接受的电压和频率。 Because electricity can not be massively stored under a simple and economic way, the production and consumption of electricity must be done simultaneously. A fault or misoperation in any stages of a power system may possibly result in interruption of electricity supply to the customers. 由于电力无法大量储存在一个简单的方法和经济,电力的生产和消费必须同时进行。系统的故障或误操作的权力在任何阶段可能导致电力供应中断给客户。 Therefore, a normal continuous operation of the power system to provide a reliable power supply to the customers is of paramount importance. 因此,一个正常的电力系统连续运行的,提供可靠的电力供应给客户的重要性是至关重要的。 Power system stability may be broadly defined as the property of a power system that enables it to remain in a state of operating equilibrium under normal operating conditions and to regain an acceptable state of equilibrium after being subjected to a disturbance. 电力系统稳定,可广泛定义为干扰财产的权力系统,可继续经营的状态下正常运行的平衡条件和后向遭受恢复一个可以接受的平衡状态。 Instability in a power system may be manifested in many different ways depending on the system configuration and operating mode. 在电力系统的不稳定可能会表现在经营方式和多种不同的方式取决于系统配置。 Traditionally, the stability problem has been one of maintaining synchronous operation. Since power systems rely on synchronous machines for generation of electrical power, a necessary condition for satisfactory system operation is that all synchronous machines remain in synchronism or, colloquially "in step". This aspect of stability is influenced by the dynamics of generator rotor angles and power-angle relationships, and then referred to " rotor angle stability ". 传统上,稳定性问题一直是一个保持同步运行。由于电力系统的发电电力,一个令人满意的系统运行的必要条件是,依靠同步电机同步电机都留在同步或通俗的“步骤”。这一方面是受稳定的发电机转子的动态角度和功角的关系,然后提到“转子角稳定”。

电气工程专业相关的,全英文的,是s

The design of a Tianjin chemical fiber textile factory power supply systemAbstractThis design aims to through to Tianjin, a chemical fiber textile factory for distribution system design allows designers to understand the design process of the power supply system of industrial enterprises and basic skills, in the design process not only to deepen the understanding of power supply and distribution of the technology, training of theoretical knowledge of flexible application ability. Design process including: load calculation, scheme demonstration, short circuit calculation, equipment selection, reactive power compensation and the distribution of the design etc.. The sewage treatment plant for secondary load, two power supply into line, plant a total of two step-down substation (35KV/10KV). 10KV/0.4KV).Because of the power supply power factor greater than 0.9, so the compensation in low voltage side capacitor to meet requirements of. The current through the load calculation andthe calculation of the short-circuit point selection of equipment, so as to meet therequirements. In the design process of the safety and reliability of power supply system are fully considered, and strive to make the economy reasonable.Suzhou R & D center building electrical designAbstractThe design for the electrical design of a Suzhou R & D center building. Electrical design follow the civil architectural electrical design code (jgj16-2008), and in accordance with the current national standard and standard. According to the size and functional demand of construction, query specification, the building belongs to the high-rise civil buildings, building category for a class of construction, the fire resistance rating for a level, the lightning protection level for secondary and general lighting with three load power supply, fire power and the important load with a load power supply, the connection of the low voltage distribution system TN-C-S.Lightning protection system design using lightning protection network.The building electrical design includes two parts: the design of power system and the weak system design. These include high voltage low voltage power distribution design, lighting system design, lightning protection and grounding system design; weak part including fire protection system design and cable TV system design, design of a telephone system, network system design, security system design. Design should be according to the construction scale, the use requirement and design principle, calculated according to the technical specifications, and wire and the equipment selection, so as to meet the economic rationality and energy conservation requirements, ensure the power supply reliability.

电气类英文ei期刊

中国电机工程学报电力系统自动化 电工技术学报 高电压技术 电网技术(中文核心期刊)EEE Power & Energy magazine Power Electronics LettersIEEE Transactions on Power Delivery IEEE Transactions on Power Systems IEEE Transactions on Smart Grid Transactions on Circuits and Systems Transactions on dielectrics and electrical insulation Journal of Electrical Power & Energy Systems Power Systems Research Transactions on Electrical Power Proceeding Generation, Transmission & Distribution Electric Power Applications Power Components & Systems Journal of Power and Energy Systems (EI)中国电机工程学报电力系统自动化 电工技术学报 高电压技术 电网技术(中文核心期刊)

《工程索引》(The Engineering Index,简称EI)创刊于1884年,是美国工程信息公司(Engineering information Inc.)出版的著名工程技术类综合性检索工具。EI每月出版1期,文摘1.3万至1.4万条;每期附有主题索引与作者索引;每年还另外出版年卷本和年度索引,年度索引还增加了作者单位索引。出版形式有印刷版(期刊形式)、电子版(磁带)及缩微胶片。EI选用世界上工程技术类几十个国家和地区15个语种的3500余种期刊和1000余种会议录、科技报告、标准、图书等出版物。年报道文献量16万余条。收录文献几乎涉及工程技术各个领域。例如:动力、电工、电子、自动控制、矿冶、金属工艺、机械制造、土建、水利等。它具有综合性强、资料来源广、地理覆盖面广、报道量大、报道质量高、权威性强等特点。 EI把它收录的论文分为两个档次 1 、EI Compendex 标引文摘 它收录论文的题录、摘要,并以主题词、分类号进行标引深加工。有没有主题词和分类号是判断论文,是否被EI正式收录的唯一标志。2 、EI Page One题录 主要以题录形式报到。有的也带有摘要,但未进行深加工,没有主题词和分类号。所以Page One 带有文摘不一定算做正式进入EI。 EI 对稿件内容和学术水平的要求 1、 具有较高的学术水平的工程论文, 包括的学科有: —— 机械工程、机电工程、船舶工程、制造技术等; ——矿业、冶金、材料工程、金属材料、有色金属、陶瓷、塑料及聚合物工程等; —— 土木工程、建筑工程、结构工程、海洋工程、水利工程等; ——电气工程、电厂、电子工程、通讯、自动控制、计算机、计算技术、软件、航空航天技术等; ——化学工程、石油化工、燃烧技术、生物技术、轻工纺织、食品工业; ——工程管理。 2、 国家自然科学基金资助项目、科技攻关项目、"八六三"高技术项目等。 3、 论文达到国际先进水平, 成果有创新。 EI不收录纯基础理论方面的论文。

物理学报,比价好中,但是现在不是EI收录了,不过还是SCI收录。

只对电力系统方向比较熟悉,中文期刊:电机工程学报,电网技术,电力系统自动化是国内认可度较高的三个,其中电机工程学报为认可对最高。英文期刊: 北美地区 IEEE trans. on power system, IEEE trans. on smart grid, IEEE trans. on sustainable energy, IEEE trans. on power delivery, 前三个认可度高,其中 power system为最好。 power delivery 与这三个比较IF和认可度都略逊一筹。欧洲 IET Generation, Transmission & Distribution,Electric Power Systems Research,International Transactions on Electrical Energy Systems,Energy 这几个里面 energy IF 较高但是业内认可度或者说关注度并不高。相对来说前三个要有更高的认可度。个人认为在以上所有期刊中 IEEE trans. on power system 是最顶级 IEEE trans. on smart grid, IEEE trans. on sustainable energy 为第二梯队 剩下英文期刊可以归为第三梯队。中文期刊没有入选SCI。电机工程学报有一个 英文版CSEE Journal of Power and Energy Systems 和最近建刊的 Journal of Modern Power Systems and Clean Energy 是中国组办的两个英文期刊。不是很清楚有没有进入SCI。

电气专业最权威的期刊

这方面的核心;

电 气 应用

电气 自动,化

制造业  自动化。

三个蛮不错的。

你去看师兄师姐们都投的哪个期刊···

想写文章,但不知道该领域都有哪些著名刊物。

看来楼主志向远大IEEE我看还行,希望楼主能以第一作者在上面发表几篇,提高我国电气知名度 [/quote]========IEEE当然可以。应该说电气的各个IEEE Trans 都是国际权威学刊。因为工科很难在SCIENCE ,Nature 发文的。权威的就是IEEE各相关学刊和自动化相关学刊了。 但具体不知道电气各二级学科的权威期刊室如何分类的。另外,感觉电气工程类的学刊影响影子和基础科学方面的国际刊物比有点低。可能是学科的不同吧。

电气专业发论文顶级期刊

电工技术学报:栏目: 电力电子、电机电器、电力系统、电工理论、自动控制、电源 (月刊)国内外公开出版发行,邮发代号:6-117,定价:25.00元/月,全年:300.00元/年电气时代:栏目: 特别报道、产业市场、ET经理人、 应用与方案、产品与技术、自动化系统工程。(月刊)国内外公开出版发行,邮发代号:2-108,定价:8.00元/月,全年:96.00元/年电气应用:栏目: 电力电气、建筑电气、石化电气、 制造业电气、电力系统、工业控制、电力电子。(半月刊)国内外公开出版发行,邮发代号:82-341,定价:8.00元/半月,全年:192.00元/年电气制造:栏目: 观点、EM专访、特别策划、制造经验、优化设计、检验检测、现代化工厂 (月刊)国内外公开出版发行,邮发代号:80-506,定价:12.00元/月,全年:144.00元/年我在网上看到的,你可以查看一下上面的网址!

有本电气工程 你看行不行吧

下面列出了电气工程专业的SCI期刊(按影响因子排序)1. IEEE Transactions on Industrial Electronics (2014 IF=6.498 一区): 控制、仪表、电气(电机、电力电子、电力系统的设备,只要和电力电子沾上边的都可以)2. IEEE Transactions on Power Electronics (2014 IF=6.008 一区):电力电子3. IEEE Transactions on Smart Grid (2014 IF=4.252 一区):智能电网4. IEEE Industrial Electronics Magazine (2014 IF=4.031 一区):同1(包括非技术领域)5. IEEE Transactions on Sustainable Energy (2014 IF=3.656 二区):新能源(光伏、风力发电等)6. IEEE Transactions on Power Systems (2014 IF=2.814 二区):电力系统7. IEEE Transactions on Energy Conversion (2014 IF=2.326 二区):电气设备、器件、系统8. IET Renewable Power Generation (2014 IF=1.904 三区):新能源9. IEEE Transactions on Industry applications (2014 IF=1.756 三区):电气设备、器件、系统的工业应用10. Electric Power Systems Research (2014 IF=1.749 三区):电力系统11. IEEE Transactions on Power Delivery (2014 IF=1.733 三区):输配电和保护装置12. IET Power Electronics (2014 IF=1.683 三区):电力电子13. IEEE Power & Energy Magazine (2014 IF=1.593 三区):电力能源(包括非技术领域)14. IEEE Transactions on Magnetics (2014 IF=1.386 三区):磁学相关(电机、变压器)15. IET Generation Transmission & Distribution (2014 IF=1.353 三区):输配电16. IEEE Transactions on ELectromagnetic Compatibility (2014 IF=1.297 三区):电磁兼容17. IEEE Transactions on Dielectrics and Electrical Insulation (2014 IF=1.278 三区):电气绝缘18. IEEE Transactions on Applied Superconductivity (2014 IF=1.235 四区):超导应用19. Progress in Electromagnetics Research-PIER (2014 IF=1.229 四区):电磁研究20. IET Electric Power Applications (2014 IF=1.211 三区):电机类技术21. International Journal of Applied Electromagnetics and Mechanics (2014 IF=0.815 四区):电磁场类(计算等)22. Journal of Power Electronics (2014 IF=0.777 四区):电力电子23. International Transactions on Electrical Energy Systems (2014 IF=0.490 四区):电力系统24. IEEE Industry Applications Magazine (2014 IF=0.352 四区):电气设备、器件、系统的工业应用(包括非技术领域)25. IEEJ Transactions on Electrical and Electronic Engineering (2014 IF=0.213 四区):电气工程

比较好解决,直接搜《机电专业工程师发表论文期刊》有很多内容是可以解决你的问题的。至于好,级别越高越好,但是也要根据你自身情况选择适合的。

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