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电力电子方向期刊投稿

发布时间:2024-07-01 16:47:23

电力电子方向期刊投稿

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

农村电气化,农村电工。

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。

电力电子技术电源技术学报

电力电子方向投期刊

推荐电力方面的报纸和杂志如下:1、《电力建设》杂志,所刊发的论文内容都是跟电力建设有关的技术和经验,创刊时间:1985年,出版发行地点:北京,主管单位是国家电网公司。现被俄罗斯、美国、英国等一些期刊数据库收录为检索期刊。2、《电力电子技术》是电力电子领域的核心期刊,杂志是陕西省核心期刊,兼顾了理论和应用,也多次荣获科技期刊一等奖。美国、波兰、日本一些期刊数据库收录并可检索。3、《电力系统自动化》杂志同样是国家电网公司主管的电力期刊,1977年江苏省南京市创刊,是江苏省核心期刊,多次荣获期刊奖项,该刊的创办利于促进电力工业科技进步。 此外还有《电力科学与技术学报》、《电力系统保护与控制》、《现代电力》等等期刊也是电力行业中核心级期刊。

电工技术核心期刊1. 中国电机工程学报 2. 电力系统自动化 3. 电工技术学报 4. 电网技术 5. 电池 6. 电源技术 7. 高电压技术 8. 电工电能新技术 9. 中国电力 10. 继电器(改名为:电力系统保护与控制) 11. 电力自动化设备 12. 电力系统及其自动化学报 13. 电力电子技术 14. 高压电器 15. 微特电机 16. 电化学 17. 电机与控制学报 18. 华北电力大学学报 19. 变压器 20. 微电机 21. 电气传动 22. 磁性材料及器件 23. 电机与控制应用 24. 华东电力 25. 绝缘材料 26. 低压电器 27. 电瓷避雷器 28. 蓄电池 29. 电气应用 30. 大电机技术 31. 电测与仪表 32. 照明工程学报。

电工技术核心期刊1.中国电机工程学报2.电力系统自动化3.电工技术学报4.电网技术5.电池6.电源技术7.高电压技术8.电工电能新技术9.中国电力10.继电器(改名为:电力系统保护与控制)11.电力自动化设备12.电力系统及其自动化学报13.电力电子技术14.高压电器15.微特电机16.电化学17.电机与控制学报18.华北电力大学学报19.变压器20.微电机21.电气传动22.磁性材料及器件23.电机与控制应用24.华东电力25.绝缘材料26.低压电器27.电瓷避雷器28.蓄电池29.电气应用30.大电机技术31.电测与仪表32.照明工程学报。

最新的北大中文核心期刊目录中:能源电力方面期刊有:中国电力、华东电力。电工技术方面期刊有:电网技术、高电压技术、电工电能新技术、高压电器、变压器、蓄电池、华北电力大学学报,这些是与电力供电有关的核心期刊。

电力电子方向的期刊

自己看下面的,选自己合适的。

1.中国电机工程学报;2.电网技术;3.电力系统自动化;4.高电压技术;5.电工技术学报;6.电工电能新技术;7.电力自动化设备;8.电力系统及其自动化学报;9.电池;10.电源技术; 11.电力系统保护与控制;12.电力电子技术;13.中国电力;14.高压电器;15.电机与控制学报;16.微特电机;17.磁性材料及器件;18.电气传动;19.华东电力;20.微电力;21.电化学;22.电瓷避雷器;23.电机与控制应用;24.华北电力大学学报(自然科学版);25.现代电力;26.电气应用;27.绝缘材料;28.变压器;29.电测与仪表;30.大电机技术

专业技术刊物.报道我国电工仪器仪表行业的科技成果,包括电磁参数的测量方法,测量仪器,仪表,测试系统以及非电量测量的电测技术等方面.主要栏目有理论与实验研究,综述与专题评述,产品设计与分析,测量技术与方法,校验技术及设备,电路设计与应用,微机应用与接口,自动测控系统,非电测量与传感器,元器件及应用,自动测试技术与系统,产品信息等.读者对象是电力系统中的科研技术人员以及大专院校师生.继承:《国外电工仪表》(1964-4967).电工技术学报双月刊ISSN1000-6753电工行业专业技术期刊.刊登电工技术领域的科技成果及论文.主要栏目有学术论文,信息动态等.读者对象为电工技术人员及相关专业大专院校师生等.电工技术杂志月刊ISSN1001-7194电工专业科技刊物.主要刊登电工技术理论,科研设计,制造,测试,使用等方面的通用性科技文章.主要栏目有综述,研究与开发,应用技术,工业自动控制,计算机/PLC应用,电网建设/改造,智能建筑,经验交流,产品介绍,信息与动态等.读者对象为电工技术人员及相关专业大专院校师生等.电力电子技术双月刊ISSN1000-100X专业技术性刊物.反映电力电子技术领域的科研,生产,教学成果,介绍半导体器件和电力电子成套装置的新材料,新器件,新工艺,新产品,报道国内外电力电子技术发展动态及产品市场信息.主要栏目有研究与设计,装置与应用,控制与测试,器件,综述,企业之窗等.主要读者对象是从事电力电子技术工作的管理人员,技术开发和设计人员,销售人员,以及大专院校师生.电力系统自动化半月刊ISSN1000-1026专业技术性刊物.旨在反映电力工业的科技成果,促进电力工业的科技进步.内容包括电力系统分析所控制,电力市场,电网调度自动化,配电自动化,电力系统远动,通信,继电保护,信息管理,电力企业管理现代化,发电厂自动控制,变电站自动化,计算机,现代控制理论和技术,以及智能化仪器仪表在电力系统中的应用等方面.主要栏目有学术论文,应用研究及成果,专题综述,新产品,现场运行与技术革新经验,现代通信与网络技术讲座,行业信息等.读者为电力行业从事科研设计,运行,试验,制造,管理与营销的专业技术人员以及相关专业的大专院校师生.由:《技术通讯》与《技术情报》合并而成.电气传动双月刊ISSN1001-2095专业技术性刊物.报道国内外电气传动科技领域的先进技术和研究动态,科研成果,技术革新和技术改造经验,促进行业间科技交流.内容包括电气传动和自动化,低压配电,变流技术,总线控制技术,抗干扰技术,计算机仿真技术,功率补偿技术,新型电力电子元器件应用技术,检测技术等方面.主要栏目有综述和专论,交流传动,直流传动,计算机应用,微机及PLC应用,自动控制理论,自动控制系统,控制技术,设计计算,讲座,国外信息,企业之窗.读者对象为电气传动和电气自动化专业的设计和科研人员,管理和经销人员,技术部门的领导的及高级技术工人.电气自动化双月刊ISSN1000-3886专业技术性刊物.刊载电气自动化方面的科学研究和应用技术论文,设有控制理论应用,电气传动和自动控制,微电脑应用,模糊控制,网络与通信技术,现场总线技术,仿真技术,PLC应用,实用电路,软开关及电源技术,计算机网络与通信,现场总线控制,可编程控制器应用,故障诊断与容错控制,综述,数据库设计,智能控制技术,CAD/CAM,经验交流等栏目.读者对象是自动控制,电子技术,计算机应用等专业的科研技术人员及大专院校的师生.继承:《华东电气传动》(1978-4980).锅炉技术月刊ISSN1672-4763专业技术性刊物.反映锅炉技术(电站锅炉和工业锅炉)的科研成果,包括锅炉产品试验成果,运行经验总结,锅炉总体及零部件的设计理论,方法,结果和计算机程序,锅炉制造的新工艺,新技术,新材料,厚壁压力容器的制造工艺和检验等.读者对象为锅炉工业技术人员和锅炉工程设计,制造,生产人员.水动力学研究与进展.A辑季刊ISSN1000-4874专业技术性期刊.由中国船舶科学研究中心,北京大学生力学和工程系等40多个高等院校和科研单位联合主办.旨在加强水动力学领域各系统,各部门间的横向联系和学术交流,主要报道能源开发,海洋工程,船舶工程,水利工程,机械工程,反应堆工程,环境工程等方面的实验研究与技术成果,学科介绍及研究简讯.读者对象为国内外水动力学研究领域的科技工作者及相关专业大专院校师生.该刊B辑为英文版.部分继承:《水动力学研究与进展》(1984-1989).水力发电月刊ISSN0559-9342专业技术性刊

《电力电子技术》,很权威,核心期刊。好象是全国唯一的电力电子方面的核心,但不易中,被部分人垄断和把持着。其它还有《大功率变流技术》,但好象不是核心期刊。 仔细看了你的问题是找电子电力方面的,不知到底是电子还是电力方面。若是电子方面的有《电子技术应用》等,电力方面有《电力系统自动化》等。

电力电子方向省级期刊

电力好像挺多的,看楼上列的就很多,再补充一下,电力与能源进展,智能电网

自己看下面的,选自己合适的。

《电子设计工程》省级期刊 Electronic Design Engineering主办: 西安市三才科技实业有限公司周期: 半月出版地:陕西省西安市语种: 中文;开本: 大16开ISSN: 1674-6236CN: 61-1477/TN邮发代号: 52-142主要栏目有:计算机技术应用、网络与通信工程、测控与仪器仪表、图像与多媒体技术、开发与应用、数字处理技术、嵌入式技术、消费类电子、汽车电子、集成电路应用、新特器件应用、电源技术与应用、信息安全、工业自动化、电力电子等。类似需要,随时咨询~

1.中国电机工程学报 2.电力系统自动化 3.电工技术学报 4.电网技术 5.电池 6.电源技术 7.高电压技术 8.电工电能新技术 9.中国电力 10.电力系统保护与控制 11. 电力自动化设备12. 电力系统及其自动化学报 13. 电力电子技术 14. 高压电器 15. 微特电机 16. 电化学 17. 电机与控制学报 18. 华北电力大学学报 19. 变压器 20.电工技术杂志 21. 电气传动 22.磁性材料及器件 23.电机与控制应用 24.华东电力 25.绝缘材料 26. 低压电器 27.电瓷避雷器

电力电子方向好发论文吗

电力电子很简单,当然没有毕设题目给你,你就选单片机吧~或是PLC

都有一定的难度,

个人觉得还是选单片机比较好,这个考上研究生了还能用上,毕竟电力电子搞硬件的还是比较多的。

Abstract: With the development of power electronics technology, harmonic hazards has become increasingly serious, harmonic governance issues has been imminent. On the power source for electronic devices harmonic analysis and concluded that its harm and the corresponding harmonic management principles and comprehensive management, and management of a harmonic outlook. Key words: power electronics; harmonics; hazards; inhibition INTRODUCTION With the development of power electronics technology, power electronic devices to the extensive application of power system harmonics caused serious pollution. Various power electronic equipment in the transport, metallurgical, chemical and other industrial traffic the extensive application of harmonics in the grid problem is becoming increasingly serious, many low power factor of power electronic devices to the power grid additional burden on the quality of power and influence, Therefore, the power electronic devices harmonic pollution has become hinder the development of power electronics technology major obstacles. Therefore, inhibition harmonic pollution and improve the power factor of power electronics technology has become a major issue in the. This paper focus on the key issues of power through electronic harmonic sources and the danger of understanding and analysis, and control of pollution from the relationship between the consideration of a comprehensive management approach on the final harmonic trends in the development of comprehensive management of the prospect. A power electronic device - the main source of harmonics Nonlinear load is a harmonic sources, which caused grid voltage distortion, in the voltage several times with the whole of the fundamental frequency component. Harmonic as the main source of power for various electronic devices mainly AC-DC converter (rectifiers, inverters, chopper, Drives), as well as bidirectional thyristor controlled switching equipment, as well as internal power system Variable Flow equipment, such as HVDC rectifier valve and the valve, and other inverter. Below its harmonics generated an analysis of the situation. 1.1 Rectifier As a DC power supply devices, rectifiers widely used in various occasions. Figure 1 (a) and Figure 1 (b) respectively for the single-phase and three-phase circuits typical. In rectifier devices, AC power supply for the current rectangular wave, rectangular wave of the fundamental frequency for the current and Jibeiai several times for the high-frequency harmonic current waveform synthesis. Obtained by Fourier series of rectangular wave of high harmonics In fundamental component I1 and the largest ratio of 1 / n, with the trigger control angle α, and the decrease of overlap angle μ for the increase of harmonic wave components have reduced trend. In addition, the existing research results indicate that: Rectifier harmonic current operation mode of the size, has a direct impact, therefore consider adjusting the voltage and current rectifier, it is best to conduct overlap angle, as well as for harmonic phase pressure drop calculations, in order to determine safe and economical operation mode when the control close to 40 ° angle α, overlapping in the 8 ° angle μ about the circumstances are often the most serious state of harmonic, so to go through, as far as possible through the correct choice of regulating transformers tap in order to avoid Harmonic most serious point [1]. 1.2 exchange regulator Exchange regulator used for lighting dimming and induction motor speed, and so on. Figure 2 (a) and 2 (b) respectively for the single-phase and three-phase circuits typical. Exchange regulator and the harmonic frequency rectifier basically the same. Frequency Converter 1.3 Frequency converter is AC / AC Converter behalf of equipment, when used as motor speed control devices, which contain a change with the output frequency band edge, as for the frequency change, the more complicated harmonic content. Universal Converter 1.4 GM converter input circuits are all from the diode bridge rectifier and DC capacitor components in Figure 3 (a) shows, this circuit impedance input current waveform with the different big difference. In the source impedance relatively small cases, the waveform for the lanky Zhaier high-waveform in Figure 3 (b) solid line shows the contrary, when the source impedance relatively large, its waveform for the dwarf and wide flat waveform Figure 3 (b) shown in dotted line. In addition to these typical converter will be a great number of harmonics, household appliances is not to be ignored harmonic sources. Such as television sets, battery chargers. Although their individual capacity little, but because a lot of volume, they injected into the power supply system to the harmonic components can not be ignored. 2 harmonic hazards Harmonic hazards of the public network include: 1) make a public network components have additional harmonic loss and reduce the power generation, power transmission equipment efficiency, a large number of 3rd harmonic flow neutral line, the line will cause overheating or even a fire; 2) impact of the normal work of electrical equipment, in addition to additional wear and tear caused, and also enable a motor mechanical vibration, noise and over-voltage, transformer partial serious overheating, capacitors, cables and other equipment overheating, insulation aging, shortened life expectancy, resulting damage; 3) common cause in the local power grid and parallel resonant series resonance, so that harmonic magnification so that the aforementioned hazards greatly increase, or even lead to serious accidents; 4) will lead to protection and automatic device misoperation, and electrical measuring instrument measurement inaccurate; 5) to neighbouring interfere with communications systems, light, noise and lower the quality of communication, information led to heavy loss of the communications systems do not work properly. 3 harmonic management principles To improve power quality, we must strengthen the management of the harmonics. In restricted to the utility grid harmonic source harmonic current injection, will be allowed to limit the harmonic voltage within the scope of the principle. First it is necessary to have systems in the harmonic sources and distribution, in the harmonic limit its scope in order to allow access, not curing the management measures must be taken to prevent the spread of harmonics. For this reason the International Electrotechnical Commission (IEC) and the United States have recommended IEEE standards such as IEEE provisions of the current standard harmonic limits shown in Table 1. China Power Grid with the actual level and the standard of other developed countries voltage distortion sine-rate provisions in table 2. Table 1 harmonic current limits (IEEE519-1992 Provisions) Isc / IL H <11 11 35THD <> 100015.07.06.02.51.420.0 Table 2 voltage distortion sine-rate limits Supply voltage / kV voltage distortion sine-rate limits / or 0.3856% 1043531101.5 4 harmonic comprehensive management At present, China's electric power system harmonics on the management is "pollution first, treatment after" the passive situation,

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