03436nam a2200433 i 45000010009000000050017000090070015000260080041000410100015000820200026000970200029001230200030001520350013001820400038001950500011002332450118002442640081003622640011004433000063004543360021005173370023005383380032005613470024005934900031006175050894006485201060015425880055026026500022026576500027026796500030027066500028027366500027027646550028027917000026028197000029028457000048028748300019029228560061029412193934320251124091002.0cr mn#nnnaucua131101t2013 gw gob 001 0 eng d a2019770318 a9783642381348 (ebook) a9783642381331 (hardback) a9783662524473 (paperback) a21939343 aDLCbengepnerdacDLCdDLCdUIAM 4aTK310500aOptimization and Security Challenges in Smart Power Grids /cVijay Pappu, Marco Carvalho, Panos Pardalos, editors 1aBerlin, Heidelberg :bSpringer Berlin Heidelberg :bImprint: Springer,c2013 4c©2013 a1 online resource (viii, 220 pages) :bcolor illustrations atext2rdacontent acomputer2rdamedia aonline resource2rdacarrier atext filebPDF2rda1 aEnergy Systems,x1867-89980 aChapter 1: Optimization Approaches to Security-Constrained Unit Commitment and Economic Dispatch with Uncertainty Analysis -- Chapter 2: Homeostatic Control and the Smart Grid: Applying Lessons from Biology -- Chapter 3: Operator's Interruption Cost-Based Sectionalization Method for 3-Feeder Radial Distribution Architecture -- Chapter 4: The Role of Flexible Demands in Smart Energy Systems -- Chapter 5: Smart Grid Tamper Detection using Learned Event Patterns -- Chapter 6: Automating Electric Substations using IEC 61850 -- Chapter 7: Phasor Measurement Unit and Phasor Data Concentrator Cyber Security -- Chapter 8: Infrastructure Security for Smart Electric Grid: A Survey -- Chapter 9: Known Secure Sensor Measurements Concept and Its Application for Critical Infrastructure Systems -- Chapter 10: Data Diodes in Architectures to Support Trustworthy Physical Cyber Infrastructures. aThis book provides an overview of state-of-the-art research on "Systems and Optimization Aspects of Smart Grid Challenges." The authors have compiled and integrated different aspects of applied systems optimization research to smart grids, and also describe some of its critical challenges and requirements. The promise of a smarter electricity grid could significantly change how consumers use and pay for their electrical power, and could fundamentally reshape the current Industry. Gaining increasing interest and acceptance, Smart Grid technologies combine power generation and delivery systems with advanced communication systems to help save energy, reduce energy costs and improve reliability. Taken together, these technologies support new approaches for load balancing and power distribution, allowing optimal runtime power routing and cost management. Such unprecedented capabilities, however, also present a set of new problems and challenges at the technical and regulatory levels that must be addressed by Industry and the Research Community. aDescription based on publisher-supplied MARC data. 0aSmart power grids 0aIndustrial engineering 0aMathematical optimization 0aOptical data processing 0aProduction engineering 7aElectronic books (Form)1 aPappu, Vijay,eeditor1 aCarvalho, Marco,eeditor1 aPardalos, P. M.q(Panos M.),d1954-eeditor 0aEnergy Systems41uhttps://link.springer.com/book/10.1007/978-3-642-38134-8