SPECIAL SECTION ON INNOVATIVE RESEARCH CONCEPTS FOR POWER DELIVERY ENGINEERING
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1 FEBRUARY 2017 VOLUME 32 NUMBER 1 ITPDE5 (ISSN ) SPECIAL SECTION ON INNOVATIVE RESEARCH CONCEPTS FOR POWER DELIVERY ENGINEERING GUEST EDITORIAL Special Section on Innovative Research Concepts for Power Delivery Engineering... G. T. Heydt and S. Suryanarayanan 207 SPECIAL SECTION PAPERS AnEmpiricalFourierTransform-BasedPowerTransformerDifferentialProtection......S.K.Murugan, S. P. Simon, K. Sundareswaran, P. S. R. Nayak, and N. P. Padhy 209 A Step Forward in Application of Dynamic Harmonic Domain: Phase Shifting Property of Harmonics E.Karami,G.B.Gharehpetian, and M. Madrigal 219 The Operation of a Power Transmission Line With Injected Third Harmonic Voltage.... R. Alaei and S. A. Khajehoddin 226 A Novel Decision Tree Regression-Based Fault Distance Estimation Scheme for Transmission Lines......A.Swetapadma and A. Yadav 234 High-Speed Protection Scheme Based on Initial Current Traveling Wave for Transmission Lines Employing Mathematical Morphology....F. Namdari and M. Salehi 246 Insulation Characteristics of c-c 4 F 8 -N 2 and CF 3 I-N 2 Mixtures as Possible Substitutes for SF 6 H. Zhao, X. Li, and H. Lin 254 Decentralized Mode-Adaptive Guidance and Control for DC Microgrid M.D.Cook, G. G. Parker, R. D. Robinett, and W. W. Weaver 263 A Proposal for a High-Voltage Transmission Line Directional Coupler...R. G. Olsen and Z. Li 272 High-Frequency, Half-Wavelength Power Transmission Scheme....Y. Wang, W. Xu, Y. W. Li, and T. Hao 279 Test Circuits for HVDC Circuit Breakers...N. A. Belda and R. P. P. Smeets 285 Real-Time Identification of Dynamic Events in Power Systems Using PMU Data, and Potential Applications Models, Promises, and Challenges....S. Brahma, R. Kavasseri, H. Cao, N. R. Chaudhuri, T. Alexopoulos, and Y. Cui 294 Graph Spectra Based Controlled Islanding for Low Inertia Power Systems...L. Ding, Z. Ma, P. Wall, and V. Terzija 302 ModifiedViterbiAlgorithmBasedDistributionSystemRestorationStrategyforGridResiliency......C.Yuan, M. S. Illindala, and A. S. Khalsa 310 Dynamic State Estimation-Based Protection: Status and Promise A.P.S.Meliopoulos, G. J. Cokkinides, P. Myrda, Y. Liu, R. Fan, L. Sun, R. Huang, and Z. Tan 320
2 IEEE TRANSACTIONS ON POWER DELIVERY, VOL. 32, NO. 1, FEBRUARY Guest Editorial Special Section on Innovative Research Concepts for Power Delivery Engineering I. THE SPECIAL SECTION POWER delivery has occupied an important part of electrical engineering since the inception of the electrical age over 100 years ago. In recent years, the appearance of a number of new technologies has intensified interest and spurred new challenges in power delivery. Perhaps, the greatest impetus in the field has come from the promotion of the Smart Grid objectives and the proliferation of distributed energy resources. The organizers of this special section deliberated and conjectured on the trajectory of power delivery research, the potential impact of research activities in technologies germane to power delivery, and the avenues for accelerating the acceptance of particularly promising and worthwhile technologies. Electric power and energy engineering is driven by growth, policy, economics, and new ideas in engineering. The latter driver, namely the new ideas, is actually elements of research in transmission and distribution engineering. This special section deals with innovative topics, considered in the long term, for research in power delivery engineering. Some new ideas in engineering are in the short term and these might be characterized as implementation and commercialization of well-understood and well documented existing technologies. Other ideas are somewhat longer in their inherent time frame, and these might be termed notions for development and incremental innovation. Still longer term concepts fall into an area that may be high risk, may be controversial, and may have potentially problematic commercialization. These latter high risk ideas may have concomitant high impact and long lasting influence. This special section is intended to provide examples of highly innovative high risk type research topics in power delivery engineering within the scope of IEEE TRANSACTIONS ON POWER DELIVERY. The peer-reviewed articles in this special section showcase potentially high impact research topics or directions. In addition to encouraging interest among the readership, an objective is to identify the main characteristics of research that defines true innovation in the long term. II. PAPERS IN THE SPECIAL SECTION It is not an objective of this special section to discuss topics of questionable or impossible physics. Instead, the objective is to identify topics that are likely to result in a noteworthy impact on power industry in the next 30 to 50 years. The fourteen papers included in the special section are grouped into six areas listed below. Transmission engineering R. Olsen, A Proposal for a High Voltage Transmission Line Directional Coupler Y. Wang, W. Xu, Y. W. Li, and H. Tian, High-Frequency, Half-Wavelength Power Transmission Scheme Hardware issues N. A. Belda and R. P. P. Smeets, Test Circuits for HVDC Circuit Breakers H. Zhao, X. Li, and H. Lin, Insulation Characteristics of c-c4f8-n2 and CF3I-N2 Mixtures as Possible Substitutes for SF6 Microgrids M. D. Cook, G. G. Parker, R. D. Robinett III, and W. W. Weaver, Decentralized Mode-Adaptive Guidance and Control for DC Microgrids System analysis E. Karami, G. B. Gharehpetian, and M. Madrigal, A Step Forward in Application of Dynamic Harmonic Domain: Phase Shifting Property of Harmonics Protection engineering M. S. Kumar, S. P. Simon, K. Sundareswaran, P. S. R. Nayak, and N. P. Padhy, An Empirical Fourier Transform based Power Transformer Differential Protection A. P. S. Meliopoulos, G. Cokkinides, P. Myrda, Y. Liu, R. Fan, L. Sun, R. Huang, and Z. Tan, Dynamic State Estimation Based Protection: Status and Promise F. Namdari and M. Salehi, A High-Speed Protection Scheme Based on Initial Current Traveling wave for Transmission Lines Employing Mathematical Morphology A. Swetapadma, and A. Yadav, A Novel Decision Tree Regression Based Fault Distance Estimation Scheme for Transmission Lines Operations R. Alaei, and S. A. Khajehoddin, The Operation of a Power Transmission Line with Injected Third Harmonic Voltage S. Brahma, R. Kavasseri, H. Cao, and N. R. Chaudhuri, Real Time Identification of Dynamic Events in Power Digital Object Identifier /TPWRD IEEE. Personal use is permitted, but republication/redistribution requires IEEE permission. See standards/publications/rights/index.html for more information.
3 208 IEEE TRANSACTIONS ON POWER DELIVERY, VOL. 32, NO. 1, FEBRUARY 2017 Systems using PMU Data, and Potential Applications Models, Promises, and Challenges L. Ding, Z. Ma, P. Wall, and V. Terzija, Graph Spectra Based Controlled Islanding for Low Inertia Power Systems C. Yuan, M. S. Illindala, and A. S. Khalsa, Modified Viterbi Algorithm Based Distribution System Restoration Strategy for Grid Resiliency. III. SOME DETAILS ON THE SPECIAL SECTION Special thanks goes to the members of an editorial board who helped assemble the special section: Prof. Sukumar Brahma, New Mexico State University, Las Cruces, NM, USA Prof. Elias Kyriakides, University of Cyprus, Nicosia, Cyprus Dr. Manish Mohanpurkar, Idaho National Laboratories, Idaho Falls, ID, USA Prof. Kai Strunz, Technical University of Berlin, Berlin, Germany Dr. Eknath Vittal, Electric Power Research Institute, Palo Alto, CA, USA Prof. Neville Watson, University of Canterbury, Canterbury, New Zealand Mr. Steven Whisenant, Duke Energy, Charlotte, NC, USA Thanks also goes to the many reviewers that diligently evaluated the many submissions to the special section, ultimately resulting in the selected papers. The concept of this special section is to spur innovative research. The organizers of this special section had a rewarding experience in reading and assisting with the editorial and review processes. We hope the readership of this transactions benefits from the research innovations presented in this special section. G. T. HEYDT, Guest Editor School of Electrical, Computer and Energy Engineering Arizona State University Tempe, AZ USA S. SURYANARAYANAN, Guest Editor Department of Electrical, and Computer Engineering Colorado State University Fort Collins, CO USA Gerald Thomas Heydt (S 62 M 64 SM 80 F 91 LF 00) received the Ph.D. degree from Purdue University, West Lafayette, IN, USA, in He is currently working as a Professor at Arizona State University, Tempe, AZ, USA. Prof. Heydt is a member of the National Academy of Engineering. Siddharth Suryanarayanan (S 00 M 04 SM 10) received the Ph.D. degree in electrical engineering from Arizona State University, Tempe, AZ, USA, in He is the Lisa and Desi Rhoden Endowed Associate Professor of Electrical and Computer Engineering at Colorado State University, Fort Collins, CO, USA, where he supervises sponsored research activities and teaches in the area of electric power systems engineering.
4 CALL FOR PAPERS A Special section for the IEEE Transactions on Power Delivery Innovative Research Concepts for Power Delivery Engineering Guest co-editors-in-chief: Gerald T. Heydt School of Electrical, Computer and Energy Engineering Arizona State University PO Box Tempe, AZ heydt@asu.edu Telephone: Siddharth Suryanarayanan Department of Electrical and Computer Engineering Colorado State University Fort Collins, CO sid@colostate.edu Telephone: Editor in chief: Dr. Wilsun Xu Electric power and energy engineering is driven by growth, policy, economics, and new engineering ideas. The latter driver, namely the new ideas, is actually elements of research in engineering. This special section deals with the general topic of long term innovative topics for research in power delivery engineering. Some engineering ideas are in the short term and these might be characterized as implementation and commercialization of well-understood existing technologies. Other ideas are somewhat longer in their inherent time frame, and these might be termed ideas for development and incremental innovation. Still longer term concepts fall into an area that may be high risk, may be controversial, and may have potentially problematic commercialization. These latter high risk ideas may have concomitant high impact and long lasting influence. This special section is intended to provide examples of innovative research topics in power delivery engineering within the scope of IEEE Transactions on Power Delivery, and these are the topics that fall into the highly innovative, high risk type of long term concepts in this field. The peer-reviewed articles will showcase potentially high impact research topics or directions. In addition to encouraging interest among the readership, an objective is to identify the main characteristics of research that make the research innovative in the long term. It is not an objective to discuss topics of questionable or impossible physics. Instead, the objective is to identify topics that are likely to result in a noteworthy impact on power industry in the next 30 to 50 years. Example topics of interest to this special section are Groundbreaking concepts in power system protection, power electronic apparatus, advanced instrumentation, and other innovative technologies in power transmission and distribution engineering New paradigms for power distribution including inventions to encourage customer participation Novel technologies and apparatus for bulk power transmission
5 Creative integration of new technologies such as satellite based systems, electronic components, high-speed computing, and direct digital control Innovative applications of modern mathematical methods for power delivery engineering. Timeline / procedure This call for paper does not require the submission of extended abstracts. The deadline for full paper submission is March 21, Papers must be submitted as per the IEEE Power and Energy Society Authors Kit found at: Papers should be submitted at the usual submission site for the IEEE Transactions on Power Delivery, After logging in proceed to the Authors center and then to Click here to submit a new manuscript. You will then be prompted through a seven step process to submit a paper. At the first step, please select the paper type option Special issue: Innovative Research Concepts for Power Delivery Engineering. Any changes on deadlines or other updates related to this special section will be announced in the PWRD resource site: Reviews All papers will be rigorously reviewed as any IEEE PES transactions paper. The publication date for the special section is targeted in approximately the September-October 2016 time frame.
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