征稿启事 | Call for Papers IEEE Transactions on Power Systems

发表于 讨论求助 2023-05-10 14:56:27

在当前全球能源安全问题突出、环境污染问题严峻的大背景下,大力发展风电、太阳能发电、水电等可再生能源,实现能源生产向可再生能源转型,是我国乃至全球能源与经济实现可持续发展的重大需求。特别的,10 余年来,我国可再生能源发展迅猛,目前已经成为风电和光伏装机容量最大的国家,未来仍将持续快速增长。据有关机构预测,到2030 年至2050 年,我国可再生能源的发电量占比达30%以上,而局部地区非水可再生能源发电量占比也超过30%,高比例可再生能源并网将成为未来电力系统的重要特征。

清华大学电机系康重庆教授和奥尔堡大学Zhe Chen教授在IEEE Transactions on Power Systems上主办“高比例可再生能源电力系统”(Enabling very high penetration renewable energy integration into future power systems)专刊,希望大家不 吝赐稿。在2017年3月15日之前需要提交不超过两页纸的长摘要(Extended Abstract)。以下是相应的征稿通知:


Call for Papers

IEEE Transactions on Power Systems

 

SpecialSection on

Enabling very high penetration renewable energy integration into future power systems

 

Renewable energy techniques such as wind power, photovoltaic and concentrated solar power are regarded as the main solution toachieve power system sustainability and energy supply security. Recent years, renewable energy is experiencing a rapid growth, large number of renewable generations have been invested to power systems. In addition to the large centralized renewable generations connected to transmission grids, many distributed renewables areoperated to partially supply the load in distribution systems. Countries aroundthe world set aggressive goal for the very high penetration of renewables infuture power systems. However, uncertainty and variability of very high penetration renewables will fundamentally change the way that the power system balances the generation and load, in terms of both planning in long time scaleand operation in short time scale, and in both transmission and distribution networks. Furthermore, new enablers such as storage, demand response and FACTdevices are being introduced into power systems to facilitate the integration of very high penetration renewables. Such huge transition of power system callsfor innovative methodologies for planning and operation of transmission and distribution networks.

 

This Special Section in IEEE Transactions onPower Systems will address this promising and dynamic area of research and development, while focusing on the new theoretical insights, innovative modeling techniqueand novel optimizing methodologies. Submitted papers should have original contributions to the studies of significant amount of renewables integrationinto transmission systems and/or distribution systems. Survey/review papers arealso welcome. Topics of interest include, but are not limited to:

  • Energy forecasting and its impact on renewable energy accommodation.

  • Analysis on the structure of future power system with very high share renewables.

  • Power system analysis methods and tools for significant amount of renewable integration

  • Methodologies of modeling and analyzing the special-temporal uncertainty and correlation of large scale renewable energy.

  • Power system planning methods and tools with high renewable penetration

  • Transmission system operation methods and industry case studies with very high renewable penetration

  • Distribution system operation methods and industry case studies with very high renewable penetration

  • Planning and operation methods and tools for hybrid energy systems to increase renewable integration level in the future energy systems

  • Coordinative planning and operation methodology of power system towards very high penetration renewables, including generation-network-load coordination,     transmission-distribution coordination, AC and DC interconnection.

  • Novel mathematical methods for power system planning and operation optimization     with very high penetration renewables.

  • Flexibility resources, including Demand response, Distributed energy storage, and     multiple energy for power system operation with very high renewables     penetration.

  • Design and application of power system control methods for better integration of renewables.

  • Transmission and Distribution system reconfiguration with high penetration renewables.

  • Power system stability issues and improvement methods with very high share     renewables.

  • Situational awareness technique for power system with significant uncertainty.

  • Design and application of competitive electricity market structures for very high     renewable integration

 

This Special Section solicits original workthat is not under consideration for publication in other venues. Extended abstracts of up to two pages are requested for the first round of reviews. Authors of selected extended abstracts will be invited to submit full papers,of up to eight pages, in a second round of reviews. Prospective authors should refer to http://www.ieee-pes.org/publications/information-for-authors for guidelines on content and formatting of submissions. Please submit a PDFversion of the extended abstract, including a cover letter with the authors'contact information to the Guest Editor-in-Chief of this Special Section viae-mail:


Guest Editorial Board:

 

Chongqing Kang(Guest Editor-in-Chief), Tsinghua University, China(cqkang@tsinghua.edu.cn)

Zhe Chen(Guest Editor-in-Chief), Aalborg University, Denmark (zch@et.aau.dk)


Ning Zhang,Tsinghua University, China (ningzhang@tsinghua.edu.cn)

OriolGomis-Bellmunt, Polytechnic University of Catalonia, Spain (ogomis@irec.cat)

Yilu Liu,University of Tennessee, USA (liu@utk.edu)

Mike Barnes,Manchester University, UK (mike.barnes@manchester.ac.uk)

Jie Yan, NorthChina Electric Power University, China (yanjie@ncepu.edu.cn)

Weihao Hu,Aalborg University, Denmark (whu@et.aau.dk)

 

Important Dates:

 

March 15th, 2017:  Deadline for extended abstract submission

April 15st, 2017: Decision notification for invitingfull paper submissions

August 1st, 2017:  Deadline for full paper submission

October 1st, 2017:  Notification of final decisions

December 1st, 2017:  Publication materials due

 

Editor-in-Chief of IEEETransactions on Power Systems:

Nikos Hatziargyriou, NationalTechnical University of Athens, Greece


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