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        Iet Renewable Power Generation

        Iet Renewable Power GenerationSCIE

        國際簡稱:IET RENEW POWER GEN  參考譯名:可再生能源發電

        • 中科院分區

          4區

        • CiteScore分區

          Q2

        • JCR分區

          Q2

        基本信息:
        ISSN:1752-1416
        E-ISSN:1752-1424
        是否OA:開放
        是否預警:否
        TOP期刊:否
        出版信息:
        出版地區:ENGLAND
        出版商:Wiley
        出版語言:English
        出版周期:Semi-monthly
        出版年份:2007
        研究方向:工程技術-工程:電子與電氣
        評價信息:
        影響因子:2.6
        H-index:62
        CiteScore指數:6.8
        SJR指數:0.859
        SNIP指數:0.879
        發文數據:
        Gold OA文章占比:78.03%
        研究類文章占比:95.51%
        年發文量:245
        自引率:0.1153...
        開源占比:0.428
        出版撤稿占比:0
        出版國人文章占比:0.23
        OA被引用占比:0.0260...
        英文簡介 期刊介紹 CiteScore數據 中科院SCI分區 JCR分區 發文數據 常見問題

        英文簡介Iet Renewable Power Generation期刊介紹

        IET Renewable Power Generation (RPG) brings together the topics of renewable energy technology, power generation and systems integration, with techno-economic issues. All renewable energy generation technologies are within the scope of the journal.

        Specific technology areas covered by the journal include:

        Wind power technology and systems

        Photovoltaics

        Solar thermal power generation

        Geothermal energy

        Fuel cells

        Wave power

        Marine current energy

        Biomass conversion and power generation

        What differentiates RPG from technology specific journals is a concern with power generation and how the characteristics of the different renewable sources affect electrical power conversion, including power electronic design, integration in to power systems, and techno-economic issues. Other technologies that have a direct role in sustainable power generation such as fuel cells and energy storage are also covered, as are system control approaches such as demand side management, which facilitate the integration of renewable sources into power systems, both large and small.

        The journal provides a forum for the presentation of new research, development and applications of renewable power generation. Demonstrations and experimentally based research are particularly valued, and modelling studies should as far as possible be validated so as to give confidence that the models are representative of real-world behavior. Research that explores issues where the characteristics of the renewable energy source and their control impact on the power conversion is welcome. Papers covering the wider areas of power system control and operation, including scheduling and protection that are central to the challenge of renewable power integration are particularly encouraged.

        The journal is technology focused covering design, demonstration, modelling and analysis, but papers covering techno-economic issues are also of interest. Papers presenting new modelling and theory are welcome but this must be relevant to real power systems and power generation. Most papers are expected to include significant novelty of approach or application that has general applicability, and where appropriate include experimental results. Critical reviews of relevant topics are also invited and these would be expected to be comprehensive and fully referenced.

        Current Special Issue. Call for papers:

        Power Quality and Protection in Renewable Energy Systems and Microgrids - https://digital-library.theiet.org/files/IET_RPG_CFP_PQPRESM.pdf

        Energy and Rail/Road Transportation Integrated Development - https://digital-library.theiet.org/files/IET_RPG_CFP_ERTID.pdf

        期刊簡介Iet Renewable Power Generation期刊介紹

        《Iet Renewable Power Generation》自2007出版以來,是一本工程技術優秀雜志。致力于發表原創科學研究結果,并為工程技術各個領域的原創研究提供一個展示平臺,以促進工程技術領域的的進步。該刊鼓勵先進的、清晰的闡述,從廣泛的視角提供當前感興趣的研究主題的新見解,或審查多年來某個重要領域的所有重要發展。該期刊特色在于及時報道工程技術領域的最新進展和新發現新突破等。該刊近一年未被列入預警期刊名單,目前已被權威數據庫SCIE收錄,得到了廣泛的認可。

        該期刊投稿重要關注點:

        Cite Score數據(2024年最新版)Iet Renewable Power Generation Cite Score數據

        • CiteScore:6.8
        • SJR:0.859
        • SNIP:0.879
        學科類別 分區 排名 百分位
        大類:Energy 小類:Renewable Energy, Sustainability and the Environment Q2 96 / 270

        64%

        CiteScore 是由Elsevier(愛思唯爾)推出的另一種評價期刊影響力的文獻計量指標。反映出一家期刊近期發表論文的年篇均引用次數。CiteScore以Scopus數據庫中收集的引文為基礎,針對的是前四年發表的論文的引文。CiteScore的意義在于,它可以為學術界提供一種新的、更全面、更客觀地評價期刊影響力的方法,而不僅僅是通過影響因子(IF)這一單一指標來評價。

        歷年Cite Score趨勢圖

        中科院SCI分區Iet Renewable Power Generation 中科院分區

        中科院 2023年12月升級版 綜述期刊:否 Top期刊:否
        大類學科 分區 小類學科 分區
        工程技術 4區 ENERGY & FUELS 能源與燃料 ENGINEERING, ELECTRICAL & ELECTRONIC 工程:電子與電氣 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY 綠色可持續發展技術 4區 4區 4區

        中科院分區表 是以客觀數據為基礎,運用科學計量學方法對國際、國內學術期刊依據影響力進行等級劃分的期刊評價標準。它為我國科研、教育機構的管理人員、科研工作者提供了一份評價國際學術期刊影響力的參考數據,得到了全國各地高校、科研機構的廣泛認可。

        中科院分區表 將所有期刊按照一定指標劃分為1區、2區、3區、4區四個層次,類似于“優、良、及格”等。最開始,這個分區只是為了方便圖書管理及圖書情報領域的研究和期刊評估。之后中科院分區逐步發展成為了一種評價學術期刊質量的重要工具。

        歷年中科院分區趨勢圖

        JCR分區Iet Renewable Power Generation JCR分區

        2023-2024 年最新版
        按JIF指標學科分區 收錄子集 分區 排名 百分位
        學科:ENERGY & FUELS SCIE Q3 113 / 170

        33.8%

        學科:ENGINEERING, ELECTRICAL & ELECTRONIC SCIE Q2 157 / 352

        55.5%

        學科:GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY SCIE Q3 66 / 91

        28%

        按JCI指標學科分區 收錄子集 分區 排名 百分位
        學科:ENERGY & FUELS SCIE Q3 113 / 173

        34.97%

        學科:ENGINEERING, ELECTRICAL & ELECTRONIC SCIE Q3 200 / 354

        43.64%

        學科:GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY SCIE Q3 65 / 91

        29.12%

        JCR分區的優勢在于它可以幫助讀者對學術文獻質量進行評估。不同學科的文章引用量可能存在較大的差異,此時單獨依靠影響因子(IF)評價期刊的質量可能是存在一定問題的。因此,JCR將期刊按照學科門類和影響因子分為不同的分區,這樣讀者可以根據自己的研究領域和需求選擇合適的期刊。

        歷年影響因子趨勢圖

        發文數據

        2023-2024 年國家/地區發文量統計
        • 國家/地區數量
        • CHINA MAINLAND268
        • India153
        • Iran103
        • USA64
        • England47
        • Australia42
        • Denmark39
        • Spain35
        • Canada32
        • Egypt32

        本刊中國學者近年發表論文

        • 1、A dynamic equivalent aggregation method of wind turbine systems with a full-scale power converter for electromagnetic transient simulations

          Author: Xue, Yicheng; Zhang, Zheren; Xu, Zheng

          Journal: IET RENEWABLE POWER GENERATION. 2023; Vol. 17, Issue 1, pp. 36-51. DOI: 10.1049/rpg2.12259

        • 2、Modelling and simulation analysis of MMC-HVDC system based on transient energy flow

          Author: Yan, Jun; Chen, Lixu; Xu, Jianzhong; Zhao, Chengyong; Jia, Xiufang

          Journal: IET RENEWABLE POWER GENERATION. 2023; Vol. 17, Issue 1, pp. 6-17. DOI: 10.1049/rpg2.12341

        • 3、Segmented transmission delay based decoupling for parallel simulation of a distribution network

          Author: Wei, Songtao; Gu, Wei; Liu, Wei; Zou, Dehu

          Journal: IET RENEWABLE POWER GENERATION. 2023; Vol. 17, Issue 1, pp. 124-136. DOI: 10.1049/rpg2.12370

        • 4、A fractional time-step simulation method suitable for the associated discrete circuit model of power electronic system

          Author: Wu, Pan; Xu, Jin; Wang, Keyou; Li, Zirun; Li, Guojie

          Journal: IET RENEWABLE POWER GENERATION. 2023; Vol. 17, Issue 1, pp. 176-185. DOI: 10.1049/rpg2.12379

        • 5、Parallel electromagnetic transient simulation of power systems with a high proportion of renewable energy based on latency insertion method

          Author: Wang, Qiguo; Xu, Jin; Wang, Keyou; Wu, Pan; Chen, Weiran; Li, Zirun

          Journal: IET RENEWABLE POWER GENERATION. 2023; Vol. 17, Issue 1, pp. 110-123. DOI: 10.1049/rpg2.12385

        • 6、Two-stage voltage control strategy in distribution networks with coordinated multimode operation of PV inverters

          Author: Li, Shiwei; Wu, Hongbin; Zhou, Yiyao; Bi, Rui; Qi, Xianjun; Sun, Ming; Xu, Bin

          Journal: IET RENEWABLE POWER GENERATION. 2023; Vol. 17, Issue 1, pp. 66-82. DOI: 10.1049/rpg2.12421

        • 7、Shifted frequency-based electromagnetic transient simulation for AC power systems in symmetrical component domain

          Author: Gao, Shilin; Song, Yankan; Chen, Ying; Yu, Zhitong; Tan, Zhendong

          Journal: IET RENEWABLE POWER GENERATION. 2023; Vol. 17, Issue 1, pp. 83-94. DOI: 10.1049/rpg2.12418

        • 8、Modified average-value model for high-performance fault transient simulation of AC-DC hybrid power networks

          Author: Hong, Zeqi; Xu, Yin; He, Jinghan; Zhang, Dahai

          Journal: IET RENEWABLE POWER GENERATION. 2023; Vol. 17, Issue 1, pp. 95-109. DOI: 10.1049/rpg2.12437

        投稿常見問題

        通訊方式:WILEY, 111 RIVER ST, HOBOKEN, USA, NJ, 07030-5774。

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