Published August 3, 2015 | Version v1
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An Autonomic and Ubiquitous Framework for Smart Grid Management

  • 1. Salvador University - UNIFACS
  • 2. IFBA BA

Description

Smart grid is a network and telecommunications infrastructure with a set of applications and technical features such as interoperability with legacy systems, two-way communication, and ability to recover from failures, among others. Smart grid architecture is highly based on communications networks with new required and inherent advantages, such as greater efficiency and reliability to the system, allowing communication between intelligent devices in network. Among the challenges for the development of new generation network for smart grids, it is possible to highlight security, monitoring, management, control, quality of service and new technology updates. This paper focuses on investigating mechanisms for management and monitoring with ubiquitous and autonomic features aimed to better support smart grid solutions.

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References

  • F. Li, W. Qiao, H. Sun, H. Wan, J. Wang, Y. Xia, Z. Xu and P. Zhang, Smart transmission grid: Vision and framework, IEEE Trans. Smart Grid, vol.1, no.2, pp.168-177, 2010.
  • V. C. Gungor, D. Sahin, T. Kocak, S. Ergut, C. Buccella, C. Cecati and G. P. Hancke, Smart grid technologies: Communication technologies and standards, IEEE Trans. Industrial Informatics, vol.7, no.4, pp.529-539, 2011.
  • F. G. Calhau, J. Martins et al., Smart grid e IEC 61850: Novos desafios em redes e telecomunicacoes para o sistema eletrico, XXX SBrT – Simposio Brasileiro de Telecomunicacoes, Bras´ıfia-DF, 2012.
  • International Electrotechnical Commission, IEC 61850-5: Communication requirements for functions and device models, Technical Report, IEC, 2003.
  • X. Fang, S. Misra, G. Xue and D. Yang, Smart grid – The new and improved power grid: A survey, Communications Surveys & Tutorials, vol.14, no.4, pp.944-980, 2012.
  • C. A. M. Bastos, S. B. M. Joberto, J. A. S. Monteiro, A. Garcia, A. E. Ferreira, J. M. da Silva and W. d. C. Pinto Neto, Proteção e supervisão de sistemas elétricos numa estratégia smart grid com redes IP de nova geração, Revista de Sistemas e Computação – RSC, vol.1, pp.18-28, 2011.
  • V. Pothamsetty and S. Malik, Smart grid leveraging intelligent communications to transform the power infrastructure, Technical Report, Cisco, 2009.
  • F. Leccese, An overwiev on IEEE Std 2030, The 11th International Conference on Environment and Electrical Engineering (EEEIC), pp.340-345, 2012.
  • U.S. Department of Energy Office of Electricity Delivery and Energy Reliability by the National Energy Technology Laboratory, The modern grid strategy – A vision for the smart grid, Technical Report v2.0, 2009.
  • DNV KEMA Energy and Sustainability, PowerMatching City, http://www.powermatchingcity.nl/, 2011.
  • Electric Power Research Institute – EPRI, EPRI Intelligrid [Online], http://intelligrid.epri.com.
  • Bonneville Power Administration, Northwest Smart Grid Demonstration Pacific Project, http:// www.pnwsmartgrid.org, 2010.
  • Galvin Electricity Initiative, Mesa del Sol – A Path to Perfect Power, http://www.galvinpower.org, 2007.
  • R. Brown, Impact of smart grid on distribution system design, Power and Energy Society General Meeting – Conversion and Delivery of Electrical Energy in the 21st Century, pp.1-4, 2008.
  • M. Hashmi, S. Hanninen and K.Maki, Survey of smart grid concepts, architectures, and technological demonstrations worldwide, IEEE PES Conference on Innovative Smart Grid Technologies (ISGT Latin America), pp.1-7, 2011.
  • J. Li, From strong to smart: The chinese smart grid and its relation with the globe, Asia Energy Platform News, pp.1-10, 2009.
  • State Grid Corporation of China, SGCC framework and roadmap for strong and smart grid standards, Technical Report, 2010.
  • Smart Grid News Brasil, Smart Grid: Piloto Envolve Mil Clientes em S˜ao Paulo, http://smartgridnews. com.br/smart-grid-piloto-envolve-mil-clientes-em-sao-paulo/, 2012.
  • S. A. Light, Programa Smart Grid Light, http://www.smartgridlight.com.br/, 2012.
  • C. E. de Minas Gerais CEMIG, Projeto Cidades do Futuro, http://www.cemig.com.br/pt-br/, 2013.
  • Smart Grid News Brasil, CESAR e Abinee., Do Primeiro Passo Para Smart Grid no Brasil, http://smartgridnews.com.br/cesar-e-abinee-dao-primeiro-passo-para-smart-grid-no-brasil/, 2012.
  • D. M. Falcao, Integracao de tecnologias para viabilizacao da smart grid, III Simposio Brasileiro de Sistemas Eletricos, Belem, Para, pp.1-5, 2010.
  • B. S. Hartono, Budiyanto and R. Setiabudy, Review of microgrid technology, International Conference on QiR (Quality in Research), pp.127-132, 2013.
  • A. P. Leite, C. L. T. Borges and D. M. Fal¸c˜ao, Probabilistic wind farms generation model for reliability studies applied to brazilian sites, IEEE Trans. Power Systems, vol.21, no.4, pp.1493-1501, 2006.
  • V. F. Martins and C. L. T. Borges, Active distribution network integrated planning incorporating distributed generation and load response uncertainties, IEEE Trans. Power Systems, vol.26, no.4, pp.2164-2172, 2011.
  • C. L. T. Borges and E. Cantarino, Microgrids reliability evaluation with renewable distributed generation and storage systems, IFAC World Congress, vol.18, pp.11695-11700, 2011.
  • C. L. T. Borges, An overview of reliability models and methods for distribution systems with renewable energy distributed generation, Renewable & Sustainable Energy Reviews, vol.16, no.6, pp.4008- 4015, 2012.
  • R. Lasseter, Microgrid: A conceptual solution, The 35th Annual IEEE Power Electronics Specialists Conference, pp.4285-4290, 2004.
  • W. Xu, K.Mauch and S.Martel, An assessment of distributed generation islanding detection methods and issues for Canada, CETC-Varennes 2004-074 (TR) 411-INVERT.
  • L. T. de Meneses, Automacao da Detecao de Fraudes em Sistemas de Medio de Energia Eletrica Utilizando Logica Fuzzy em Ambientes SCADA, Tese de Mestrado, Universidade Federal do Rio Grande do Norte, RN, Brazil, 2011.
  • A. Giani, E. Bitar, M. Garcia, M. McQueen, P. Khargonekar and K. Poolla, Smart grid data integrity attacks: Characterizations and countermeasures, Cyber and Physical Security and Privacy, pp.232- 237, 2011.
  • R. E. Mackiewicz, Overview of IEC 61850 and benefits, 2005/2006 IEEE PES Transmission and Distribution Conference and Exhibition, pp.376-383, 2006.
  • G. Igarashi, Estudo da IEC 61850 e o seu impacto no sistema de automacao de subestacoes, Tese de Mestrado, Escola Polit´ecnica – USP, SP, Brasil, 2008.
  • A. Apostolov and M. Paulino, Smart grids – Redes inteligentes, Cap´ıtulo XII – Interfaces de Comunicacao no Smart Grid, pp.22-32, 2012.
  • International Electrotechnical Commission, IEC 61850-1 network and systems in substations – Introduction and overview, Technical Report, IEC, 2003.
  • N. Ziviani, Projeto de Algoritmos: Com Implementacoes em Pascal e C. Thomson Learning, 2th Edition, 2004.
  • International Electrotechnical Commission, IEC61850-7-1: Communication network and systems for power utility automation, basic communication structure – Principles and models, Technical Report, IEC, 2011.
  • B. Nicola, B. Leonardo, C. Casari, L. Vangelista and M. Zorzi, The deployment of a smart monitoring system using wireless sensores and actuator networks, The 1st IEEE International Conference on Smart Grid Communications (SmartGridComm), pp.49-54, 2010.
  • M. M. Fouda, N. Kato, A. Takeuchi, N. Iwasaki and Y. Nozaki, Toward intelligent machine-tomachine communications in smart grid, Communications Magazine, vol.49, no.4, pp.60-65, 2011.
  • S. K. Chai and A. Sekar, Graph theory application to deregulated power system, Proc. of the 33rd IEEE Southeastern Symposium on System Theory, pp.117-121, 2001.
  • R Core Team, R: A Language and Environment for Statistical Computing, R Foundation for Statistical Computing, Vienna, Austria, http://www.R-project.org/, 2013.
  • S. Massoud Amin and B. F. Wollenberg, Toward a smart grid: Power delivery for the 21st century, Power and Energy Magazine, vol.3, no.5, pp.34-41, 2005.
  • F. Calhau, R. Bezerra and J. Martins, Especificação de Requisitos e Modelagem Conceitual de um Arcabouço para o Suporte de Soluções Smart Grid, VIII CONNEPI – Congresso Norte Nordeste de Pesquisa e Inovação, Salvador, Bahia, 2013.
  • J. P. Martin-Flatin, G. Jakobson and L. Lewis, Event correlation in integrated management: Lessons learned and outlook, J. Netw. Syst. Manage., vol.15, no.4, pp.481-502, 2007.
  • Bezerra, Romildo Martins da Silva, Uma proposta para a gerência autonômica e escalável de redes de computadores, Tese (Doutorado em Ciência da Computação) – UFBA/UNIFACS/UEFS – Doutorado Multiinstitucional em Ciência da Computação, 2012.
  • L. Zhou, J. Rodrigues and L. Oliveira, QoE-driven power scheduling in smart grid: Architecture, strategy, and methodology, IEEE Communications Magazine, vol.50, no.5, pp.136-141, 2012.
  • A. L. Dimeas, S. I. Hatzivasiliadis and N. D. Hatziargyriou, Control agents for enabling customerdriven microgrids, Power & Energy Society General Meeting, pp.1-7, 2009.
  • M. Pipattanasomporn, H. Feroze and S. Rahman, Multi-agent systems in a distributed smart grid: Design and implementation, Power Systems Conference and Exposition, pp.1-8, 2009.
  • P. Horn, Autonomic Computing: Ibms Perspective on the State of Information Technology, 2001.
  • A. G. Ganek and T. A. Corbi, The dawning of the autonomic computing era, IBM Systems Journal, vol.42, no.1, pp.5-18, 2003.
  • J. O. Kephart, Research challenges of autonomic computing, Proc. of the 27th International Conference on Software Engineering, New York, NY, USA, pp.15-22, 2005.
  • Z. Jrad, F. Krief, L. Dehni and Y. Bennani, Artificial intelligence techniques in the dynamic negotiation of QoS: A user interface for the internet new generation, Autonomic Networking Lecture Notes in Computer Science, vol.4195, pp.146-158, 2006.
  • M. Parashar, Autonomic Computing: Concepts, Infrastructure and Applications, M. Parashar and S. Hariri (eds.), Taylor & Francis, Inc., Bristol, PA, USA, 2007.
  • M. Ben-Ari, Principles of Concurrent and Distributed Programming, Prentice Hall, 1990.
  • International Electrotechnical Commission, IEC 61850-5: Communication requirements for functions and device models, Technical Report, IEC, 2003.
  • R. M. S. Bezerra, F. G. Calhau, F. M. S. Nascimento and J. S. B. Martins, A framework to support smart grid solutions with ubiquitous, autonomic and real-time features targeting the sustainable use of renewable power, Cyber Journals: Multidisciplinary Journals in Science and Technology, vol.3, pp.10-16, 2013.
  • Centro de Gestao e Estudos Estrategicos – Ciencia, Tecnologia e Inovacao, Redes eletricas inteligentes: Contexto nacional, SERIE DOCUMENTOS TECNICOS DEZEMBRO – No 16, 2012.