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Third International Conference on}, year={2008}, month={April}, volume={}, number={}, pages={94-98}, keywords={Internet, power engineering computing, power gridsdata packets, delivery infrastructure, energy Internet, energy flows, self healing capabilities, smart grids}, doi={10.1109/DRPT.2008.4523385}, ISSN={}, } @ARTICLE{08Zha, title={A framework for operation and control of smart grids with distributed generation}, author={Zhang, X.P.}, journal={Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century, 2008 IEEE}, year={2008}, month={July}, volume={}, number={}, pages={1-5}, keywords={distributed power generation, flexible AC transmission systems, power grids, power system control, power system stability, wind powercoordinated control, distributed generation, flexible AC transmissions, global control, power system control, power system stability, smart grids, wind generation}, doi={10.1109/PES.2008.4596344}, ISSN={1932-5517}, } @ARTICLE{08HCMWYC, title={Computer network security management and authentication of smart grids operations}, author={Hamlyn, A. and Cheung, H. and Mander, T. and Lin Wang and Cungang Yang and Cheung, R.}, journal={Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century, 2008 IEEE}, year={2008}, month={July}, volume={}, number={}, pages={1-7}, keywords={computer network management, power engineering computing, power grids, power system security, telecommunication securityactions/commands requests, area electric power system, computer network security management, electricity power systems, microgrids, multiple security domains, network-controlled devices, open access competition, power-grid operations, security architecture, smart grids operation authentication}, doi={10.1109/PES.2008.4596900}, ISSN={1932-5517}, } @ARTICLE{08Voj, title={Smart Integration}, author={Vojdani, A.}, journal={Power and Energy Magazine, IEEE}, year={2008}, month={November-December }, volume={6}, number={6}, pages={71-79}, keywords={automatic meter reading, demand side management, electricity supply industry, power system economics, pricingUnited States, advanced metering infrastructure, demand response, demand-side management, differentiated pricing, electric utilities, in-home energy management systems, investments, peakload curtailment, power quality, programmable controllable thermostats, real-time pricing, service networks, smart devices, smart grid, smart metering, smart pricing}, doi={10.1109/MPE.2008.929744}, ISSN={1540-7977}, } @ARTICLE{05AW, title={Toward a smart grid: power delivery for the 21st century}, author={Massoud Amin, S. and Wollenberg, B.F.}, journal={Power and Energy Magazine, IEEE}, year={2005}, month={Sept.-Oct.}, volume={3}, number={5}, pages={ 34-41}, keywords={ parameter estimation, power system interconnection, power system reliability, power system security large-scale power delivery infrastructure, online parameter estimation, real-time adaptive control, reconfigurable aircraft control system, smart grid}, doi={10.1109/MPAE.2005.1507024}, ISSN={1540-7977}, } @ARTICLE{07Pul, title={The NETL Modern Grid Initiative: What Will the US Modern Grid Cost?}, author={Pullins, S.W.}, journal={Power Engineering Society General Meeting, 2007. 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International Conference on}, year={2007}, month={April}, volume={}, number={}, pages={12-17}, doi={10.1109/POWERENG.2007.4380134}, ISSN={}, } @ARTICLE{73Mey, title={Efficient Computer Solution for Kron and Kron-Early Loss Formulas}, author={Meyer W.S.}, journal={1973 Power Industry Computer Application Conference}, year={1973}, volume={PAS-93}, pages={428--432} } @article{04LY, title = "Derivation of system loss sensitivity using optimization and application to improved ELD computation", journal = "International Journal of Electrical Power & Energy Systems", volume = "26", number = "6", pages = "461 - 464", year = "2004", note = "", issn = "0142-0615", doi = "DOI: 10.1016/j.ijepes.2003.12.005", url = "http://www.sciencedirect.com/science/article/B6V2T-4BJWY17-2/2/b341513f72c8c052fd6bf1967c5de31c", author = "Sang-Joong Lee and Seong-Deog Yang", keywords = "Optimization", keywords = "Loss sensitivity", keywords = "ELD formulation" } @ARTICLE{77Hap, title={Optimal power dispatch: A comprehensive survey}, author={Happ, H.H.}, journal={Power apparatus and systems, IEEE transactions on}, year={1977}, month={May}, volume={96}, number={3}, pages={ 841-854}, doi={}, ISSN={0018-9510}, } @ARTICLE{89NKS, title={New optimal power-dispatch algorithm using Fletcher's quadratic programming method}, author={Nanda, J. and Kothari, D.P. and Srivastava, S.C.}, journal={Generation, Transmission and Distribution, IEE Proceedings}, year={1989}, month={May}, volume={136}, number={3}, pages={153-161}, keywords={load dispatching, load flow, power system analysis computing, quadratic programmingbusbar voltage, line-flow limits, minimum cost of generation, minimum system-transmission losses, optimal power flow, optimal power-dispatch algorithm, quadratic programming method, reactive power generation, real power generation, system-operating constraints, transformer tap settings}, doi={}, ISSN={0143-7046}, } @ARTICLE{91HG, title={A survey of the optimal power flow literature}, author={Huneault, M. and Galiana, F.D.}, journal={Power Systems, IEEE Transactions on}, year={1991}, month={May}, volume={6}, number={2}, pages={762-770}, keywords={load dispatching, load flow, optimisationload dispatching, optimal power flow, optimization techniques, single flow-chart-type figure}, doi={10.1109/59.76723}, ISSN={0885-8950}, } @ARTICLE{08PJ, title={A survey of the optimal power flow methods}, author={Pandya, K.S. and Joshi, S.K.}, journal={Journal of Theoretical and Applied Technology}, year={2008}, pages={450-457}, } @ARTICLE{89Ame, title={A general-purpose version of the fast decoupled load flow}, author={van Amerongen, R.A.M.}, journal={Power Systems, IEEE Transactions on}, year={1989}, month={May}, volume={4}, number={2}, pages={760-770}, keywords={ iterative methods, load flow, power systems fast decoupled load flow, iteration scheme, power systems}, doi={10.1109/59.193851}, ISSN={0885-8950}, } @ARTICLE{90ABPS, title={Further developments in LP-based optimal power flow}, author={Alsac, O. and Bright, J. and Prais, M. and Stott, B.}, journal={Power Systems, IEEE Transactions on}, year={1990}, month={Aug}, volume={5}, number={3}, pages={697-711}, keywords={linear programming, load flow, power system analysis computing, power systems, schedulingLP, OPF, contingency, generator cost curves, linear programming, loss-minimization problem, optimal power flow, power systems, scheduling}, doi={10.1109/59.65896}, ISSN={0885-8950}, } @ARTICLE{57GS, title={Automatic Calculation of Load Flows}, author={Glimn, A. F. and Stagg, G. W.}, journal={Power Apparatus and Systems, Part III. Transactions of the American Institute of Electrical Engineers}, year={1957}, month={April }, volume={76}, number={3}, pages={817-825}, doi={10.1109/AIEEPAS.1957.4499665}, ISSN={0018-9510}, } @article{97LJS, author = {Li, Chao-An and Johnson, R. B. and Svoboda, A. J. }, citeulike-article-id = {712101}, journal = {Power Systems, IEEE Transactions on}, keywords = {dynamic-programming, energy, lagrangian-relaxation, sequential-unit-commitment, spinning-reserve-constraint, unit-commitment}, number = {1}, pages = {113--119}, posted-at = {2006-06-27 11:43:20}, priority = {2}, title = {A new unit commitment method}, url = {http://ieeexplore.ieee.org/xpls/abs\_all.jsp?arnumber=574930}, volume = {12}, year = {1997} } @ARTICLE{74Sto, title={Review of load-flow calculation methods}, author={Stott, B.}, journal={Proceedings of the IEEE}, year={1974}, month={July}, volume={62}, number={7}, pages={ 916-929}, doi={}, ISSN={0018-9219}, } @ARTICLE{74SA, title={Fast Decoupled Load Flow}, author={Stott, B. and Alsac, O.}, journal={power apparatus and systems, ieee transactions on}, year={1974}, month={May }, volume={PAS-93}, number={3}, pages={859-869}, doi={10.1109/TPAS.1974.293985}, ISSN={0018-9510}, } @ARTICLE{07WMZT, title={On Computational Issues of Market-Based Optimal Power Flow}, author={Hongye Wang and Murillo-Sanchez, C.E. and Zimmerman, R.D. and Thomas, R.J.}, journal={Power Systems, IEEE Transactions on}, year={2007}, month={Aug. }, volume={22}, number={3}, pages={1185-1193}, keywords={load dispatching, load flow, power markets, power system interconnection, reactive poweractive power flow, constrained cost variable, deregulated electricity market calls, large-scale power system models, market-based optimal power flow, nonsmooth costing, reactive power flow, real-time dispatching requirement, robust optimal power flow, satisfactory worst-case performance, step-controlled primal-dual interior point method, trust-region-based augmented Lagrangian method, voltage support}, doi={10.1109/TPWRS.2007.901301}, ISSN={0885-8950}, } @ARTICLE{05SRA, title={Cumulant based stochastic optimal power flow (S-OPF) for variance optimization}, author={Schellenberg, A. and Rosehart, W. and Aguado, J.}, journal={Power Engineering Society General Meeting, 2005. IEEE}, year={2005}, month={June}, volume={}, number={}, pages={ 473-478 Vol. 1}, keywords={ costing, higher order statistics, load flow, optimisation, power system economics, stochastic processes Monte Carlo simulations, active power generation, cumulant method, stochastic optimal power flow, variance minimization objective function, variance optimization}, doi={10.1109/PES.2005.1489589}, ISSN={ }, } @ARTICLE{00YL, title={Stochastic optimal power flow: formulation and solution}, author={Taiyou Yong and Lasseter, R.H.}, journal={Power Engineering Society Summer Meeting, 2000. IEEE}, year={2000}, month={}, volume={1}, number={}, pages={237-242 vol. 1}, keywords={electricity supply industry, load flow, power systems, stochastic processesBender's decomposition, contingency screening, deregulated power market, electric power system uncertainties, electric power systems, linear stochastic OPF problem, reserve price, stochastic optimal power flow}, doi={10.1109/PESS.2000.867521}, ISSN={}, } @Article{05Mar, title = {Statistical Mechanics of Resource Allocation}, author = {Andrea De Martino}, journal = {Progress of Theoretical Physics Supplement}, volume = {157}, number = {}, pages = {308-311}, numpages = {3}, year = {2005}, url = {http://ptp.ipap.jp/link?PTPS/157/308/}, doi = {10.1143/PTPS.157.308}, publisher = {Progress of Theoretical Physics} } @ARTICLE{05PS, title={Competing Resource Allocation in Two-Dimension}, author={Tin Yau Pang and Szeto, K.Y.}, journal={Neural Networks and Brain, 2005. ICNN&B '05. International Conference on}, year={2005}, month={Oct.}, volume={3}, number={}, pages={1670-1675}, keywords={econophysics, resource allocationMonte Carlo simulation, econophysics, market dominance, resource allocation, statistical physics}, doi={10.1109/ICNNB.2005.1614951}, ISSN={}, } @ARTICLE{03LCN, title={Dynamical scheduling of digital control systems}, author={Qian Lin and Chen, P.C.Y. and Poo Aun Neow}, journal={Systems, Man and Cybernetics, 2003. IEEE International Conference on}, year={2003}, month={Oct.}, volume={5}, number={}, pages={ 4098-4103 vol.5}, keywords={ digital control, dynamic scheduling, optimisation, performance index, real-time systems, signal sampling, task analysis CPU time allocation, convex function, current cutoff frequency, digital control systems, dynamic scheduling algorithm, irregular sampling, online-frequency-dependent performance change-rate, optimization problem, performance index, real-time systems, sampling frequency, task current importance, task current requirement}, doi={}, ISSN={1062-922X }, } @ARTICLE{07ECBP, title={An Optimal Reactive Power Dispatch Model for Deregulated Electricity Markets}, author={El-Samahy, I. and Canizares, C.A. and Bhattacharya, K. and Pan, J.}, journal={Power Engineering Society General Meeting, 2007. IEEE}, year={2007}, month={June}, volume={}, number={}, pages={1-7}, keywords={power generation dispatch, power generation scheduling, power markets, reactive power32-bus CIGRE benchmark system, deregulated electricity market, economical aspects, optimal reactive power dispatch model, power generation rescheduling}, doi={10.1109/PES.2007.385656}, ISSN={1932-5517}, } @ARTICLE{07WZZ, title={State Transition Graph of Cascading Electrical Power Grids}, author={Zhi-gang Wu and Qing Zhong and Yao Zhang}, journal={Power Engineering Society General Meeting, 2007. IEEE}, year={2007}, month={June}, volume={}, number={}, pages={1-7}, keywords={graph theory, power grids, power system reliabilityIEEE 9-bus sample system, cascading failure analysis, electrical power grid, electrical power system DC flow, state transition graph}, doi={10.1109/PES.2007.385867}, ISSN={1932-5517}, } @book{96WW, address = {New York}, author = {Wood, Allen J. and Wollenberg, Bruce F. }, citeulike-article-id = {2317097}, edition = {Second}, keywords = {wollenberg}, posted-at = {2008-02-01 01:51:56}, priority = {2}, title = {Power Generation Operation And Control}, year = {1996} } @ARTICLE{03EHS, title={Stochastic power flow analysis of electrical distributed generation systems}, author={El-Khattam, W. and Hegazy, Y.G. and Salama, M.M.A.}, journal={Power Engineering Society General Meeting, 2003, IEEE}, year={2003}, month={July}, volume={2}, number={}, pages={-1144 Vol. 2}, keywords={ Monte Carlo methods, Newton-Raphson method, distributed power generation, load flow, power system simulation, stochastic processes Monte Carlo simulation, Newton-Raphson solution, electrical distributed generation system, power flow algorithm, power flow equation, random parameter, stochastic power flow analysis}, doi={}, ISSN={ }, } @ARTICLE{02ZT, title={Adaptive Power Flow Method for Distribution Systems with Dispersed Generation}, author={Zhu, Y. and Tomsovic, K.}, journal={Power Engineering Review, IEEE}, year={2002}, month={May }, volume={22}, number={5}, pages={72-72}, abstract={Recently, there has been great interest in the integration of dispersed generation units at the distribution level. This requires new analysis tools for understanding system performance. This paper presents an adaptive distributed power flow solution method based on the compensation-based method. The comprehensive distributed system model includes three-phase nonlinear loads, lines, capacitors, transformers, and dispersed generation units. The numerical properties of the compensation-based power flow method are compared and analyzed under different situations, such as load unbalance, sudden increase of one-phase loads, degree of meshed loops, number of generator nodes and so on. Based on these analyses, an adaptive compensation-based power flow method is proposed that is fast and reliable while maintaining necessary accuracy. It is illustrated that this adaptive method is especially appropriate for simulation of slow dynamics.}, doi={10.1109/MPER.2002.4312238}, ISSN={0272-1724}, } @ARTICLE{07KSS, title={Development of Three-Phase Unbalanced Power Flow Using PV and PQ Models for Distributed Generation and Study of the Impact of DG Models}, author={Khushalani, S. and Solanki, J.M. and Schulz, N.N.}, journal={Power Systems, IEEE Transactions on}, year={2007}, month={Aug. }, volume={22}, number={3}, pages={1019-1025}, keywords={load flow, power distribution, power factor, power system analysis computingPQ model, PV model, distributed generators, radial distribution analysis package, shipboard power systems, three-phase load flow analysis, unbalanced power flow}, doi={10.1109/TPWRS.2007.901476}, ISSN={0885-8950}, } @ARTICLE{95CS, title={A three-phase power flow method for real-time distribution system analysis}, author={Cheng, C.S. and Shirmohammadi, D.}, journal={Power Systems, IEEE Transactions on}, year={1995}, month={May}, volume={10}, number={2}, pages={671-679}, doi={10.1109/59.387902}, ISSN={0885-8950}, } @Article{08NA, author={Newcomer, Adam and Apt, Jay}, title={Implications of generator siting for CO2 pipeline infrastructure}, journal={Energy Policy}, year=2008, volume={36}, number={5}, pages={1776-1787}, month={May}, url={http://ideas.repec.org/a/eee/enepol/v36y2008i5p1776-1787.html} } @article{07BM, author = {Steffen Bohn and Marcelo O. Magnasco}, collaboration = {}, title = {Structure, Scaling, and Phase Transition in the Optimal Transport Network}, publisher = {APS}, year = {2007}, journal = {Physical Review Letters}, volume = {98}, number = {8}, eid = {088702}, numpages = {4}, pages = {088702}, url = {http://link.aps.org/abstract/PRL/v98/e088702}, doi = {10.1103/PhysRevLett.98.088702} } @article{04ON, title = "Heuristic methods for wind energy conversion system positioning", journal = "Electric Power Systems Research", volume = "70", number = "3", pages = "179 - 185", year = "2004", note = "", issn = "0378-7796", doi = "DOI: 10.1016/j.epsr.2003.12.006", url = "http://www.sciencedirect.com/science/article/B6V30-4BHVHHP-1/2/816cbce3b5a17d85474c36656f1b69f6", author = "U. Aytun Ozturk and Bryan A. Norman", keywords = "Wind farm", keywords = "Heuristic optimization", keywords = "Power generation" } @ARTICLE{04DATD, title={A fuzzy model for wind speed prediction and power generation in wind parks using spatial correlation}, author={Damousis, I.G. and Alexiadis, M.C. and Theocharis, J.B. and Dokopoulos, P.S.}, journal={Energy conversion, ieee transactions on}, year={2004}, month={June}, volume={19}, number={2}, pages={ 352-361}, keywords={ fuzzy logic, genetic algorithms, load forecasting, power engineering computing, wind power 30 km, 30 min to 2 hour, fuzzy logic, genetic algorithm, power generation, spatial correlation, wind forecasting, wind speed prediction, wind turbine clusters}, doi={10.1109/TEC.2003.821865}, ISSN={0885-8969}, } @misc{08BV, title={The N - k Problem in Power Grids: New Models, Formulations and Computation}, author={Daniel Bienstock and Abhinav Verma}, url={http://www.optimization-online.org/DB_HTML/2008/08/2057.html}, } @ARTICLE{92CIS, title={Voltage collapse proximity indicator: behaviour and implications }, author={Chebbo, A.M. and Irving, M.R. and Sterling, M.J.H.}, journal={Generation, Transmission and Distribution, IEE Proceedings}, year={1992}, month={May}, volume={139}, number={3}, pages={241-252}, keywords={power systems, stabilityload points, optimal impedance solution, power transmission system, two-bus system, voltage collapse proximity indicator, voltage stability}, doi={}, ISSN={0143-7046}, } @INPROCEEDINGS{03VL, author = {Pascal O. Vontobel and Hans-andrea Loeliger}, title = {On factor graphs and electrical networks}, booktitle = {in Mathematical Systems Theory in Biology, Communication, Computation, and Finance, IMA Volumes in Math}, year = {2003}, publisher = {Springer Verlag} } @ARTICLE{03VLa, title={Factor graphs and dynamical electrical networks}, author={Vontobel, P.O. and Loeliger, H.-A.}, journal={Information Theory Workshop, 2003. Proceedings. 2003 IEEE}, year={2003}, month={March-4 April}, volume={}, number={}, pages={ 218-221}, keywords={ graph theory, message passing, network analysis Forney-style factor graphs, Kalman filter, artificial intelligence, capacitors, coding theory, dynamic electrical networks, dynamical electrical networks, inductors, max-product algorithm, message passing, signal processing, sum-product algorithm}, doi={}, ISSN={}, } @article {06Hol, author = "Holmgren, Ake J.", title = "Using Graph Models to Analyze the Vulnerability of Electric Power Networks", journal = "Risk Analysis", volume = "26", year = "August 2006", abstract = "In this article, we model electric power delivery networks as graphs, and conduct studies of two power transmission grids, i.e., the Nordic and the western states (U.S.) transmission grid. We calculate values of topological (structural) characteristics of the networks and compare their error and attack tolerance (structural vulnerability), i.e., their performance when vertices are removed, with two frequently used theoretical reference networks (the Erdös-Rényi random graph and the Barabási-Albert scale-free network). Further, we perform a structural vulnerability analysis of a fictitious electric power network with simple structure. In this analysis, different strategies to decrease the vulnerability of the system are evaluated. Finally, we present a discussion on the practical applicability of graph modeling.", pages = "955-969(15)", url = "http://www.ingentaconnect.com/content/bpl/risk/2006/00000026/00000004/art00009" } @ARTICLE{79Rez, title={Concavity and sensitivity of electrical resistance functions}, author={Reza, F.}, journal={Electronics Letters}, year={1979}, month={24}, volume={15}, number={11}, pages={305-306}, keywords={linear network analysis, passive networks, sensitivity analysiscircuit sensitivity, concave behaviour, input resistance function, linear network analysis, linear passive resistive networks, passive networks, sensitivity analysis}, doi={10.1049/el:19790215}, ISSN={0013-5194}, } @ARTICLE{69Sch, title={Concavity of Resistance Functions}, author={ Schneider, A.}, journal={Circuit Theory, IEEE Transactions on}, year={1969}, month={May}, volume={16}, number={2}, pages={ 253-254}, keywords={null Concave downward resistance functions, Potentiometers, Resistance networks}, ISSN={0018-9324}, } @ARTICLE{56SH, author = {{Shannon}, C.~E. and {Hagelbarger}, D.~W.}, title = "{Concavity of Resistance Functions}", journal = {Journal of Applied Physics}, year = 1956, month = jan, volume = 27, pages = {42-43}, doi = {10.1063/1.1722193}, adsurl = {http://adsabs.harvard.edu/abs/1956JAP....27...42S}, adsnote = {Provided by the SAO/NASA Astrophysics Data System} } @article{02Von, author = {Vontobel, P. O.}, journal = {Post-Diploma Project at ETH Zurich}, keywords = {electric-network, factor-graph, gabp, kalman-filter}, title = {Kalman Filtering, Factor Graphs and Electrical Networks}, url = {http://www.hpl.hp.com/personal/Pascal_Vontobel/publications/papers/pvto-2002-1.pdf}, year = 2002 } @ARTICLE{07Ili, title={From Hierarchical to Open Access Electric Power Systems}, author={Ilic, M.D.}, journal={Proceedings of the IEEE}, year={2007}, month={May }, volume={95}, number={5}, pages={1060-1084}, keywords={large-scale systems, power grids, power system control, power system measurementcorrective control, information-based multilayered dynamic energy control protocols, just-in-place electricity services, large-scale dynamic systems, multiscale dynamics, open access electric power systems, open access just-in-time electricity services, preventive control}, doi={10.1109/JPROC.2007.894711}, ISSN={0018-9219}, } @inbook{05Sau, title={Applied Mathematics for Restructured Electric Power Systems}, chapter={Reactive Power and Voltage Control Issues in Electric Power Systems}, pages={11-24}, year={2005}, author={Sauer, P.}, doi={10.1007/0-387-23471-3_2}, url={http://www.springerlink.com/content/g0636j51m265vk87},} @inbook{05ZS, title={Applied Mathematics for Restructured Electric Power Systems}, chapter={Robust Control of Large Power Systems VIA Convex Optimization}, pages={139-158}, year={2005}, author={Zecevic, A.I. and Siljak, D.D.}, doi={10.1007/0-387-23471-3_7}, url={http://www.springerlink.com/content/r360pm07567650x1},} @inbook{05Ili, title={Applied Mathematics for Restructured Electric Power Systems}, chapter={Automating Operation of Large Electric Power Systems Over Broad Ranges of Supply/Demand and Equipment Status}, pages={105-137}, year={2005}, author={Ilic, Marija}, doi={10.1007/0-387-23471-3_6}, url={http://www.springerlink.com/content/r360pm07567650x1},} @ARTICLE{04EKS, title={Voltage-drop-constrained optimization of power distribution network based on reliable maximum current estimates}, author={Evmorfopoulos, N.E. and Karampatzakis, D.P. and Stamoulis, G.I.}, journal={Computer Aided Design, 2004. ICCAD-2004. IEEE/ACM International Conference on}, year={2004}, month={Nov.}, volume={}, number={}, pages={ 479-484}, keywords={ VLSI, circuit optimisation, electric potential, integrated circuit design, integrated circuit reliability power distribution network, power grid design, reliable maximum current estimates, voltage drop tolerances, voltage-drop-constrained optimization}, doi={}, ISSN={1092-3152 }, } @ARTICLE{07DCLN, author = {{Dobson}, I. and {Carreras}, B.~A. and {Lynch}, V.~E. and {Newman}, D.~E. }, title = "{Complex systems analysis of series of blackouts: Cascading failure, critical points, and self-organization}", journal = {Chaos}, keywords = {power transmission faults, failure analysis, risk analysis, power system simulation, large-scale systems, self-organised criticality, statistical analysis}, year = 2007, month = jun, volume = 17, number = 2, pages = {026103-+}, doi = {10.1063/1.2737822}, adsurl = {http://adsabs.harvard.edu/abs/2007Chaos..17b6103D}, adsnote = {Provided by the SAO/NASA Astrophysics Data System} } @INPROCEEDINGS{08HT, author={P. Hines and S. Talukdar}, title= {Reciprocally Altruistic Agents for the Mitigation of Cascading Failures in Electrical Power Networks}, booktitle={Proc. of the International Conference on Infrastructure Systems, Rotterdam}, year={2008}, url={http://www.cems.uvm.edu/~phines/pdfs/2008/Hines_2008_nginfras.pdf} } @article{08WBAF, title = "An economic welfare analysis of demand response in the PJM electricity market", journal = "Energy Policy", volume = "36", number = "10", pages = "3692 - 3702", year = "2008", note = "", issn = "0301-4215", doi = "DOI: 10.1016/j.enpol.2008.06.036", url = "http://www.sciencedirect.com/science/article/B6V2W-4T4J1FM-1/2/6ba12e3babe4660d0f41dc22051bebec", author = "Rahul Walawalkar and Seth Blumsack and Jay Apt and Stephen Fernands", keywords = "Demand-response programs", keywords = "Electricity markets", keywords = "Net social welfare" } @phdthesis{06Hin, author={Hines, P.}, title={A decentralized approach to reducing the social costs of cascading failures}, school={Carnegie Institute of Technology}, year={2006}, eprint={http://www.cems.uvm.edu/\~phines/pdfs/HinesThesis\_final.pdf} } @misc{08BV, author={Bienstock D., Verma A.}, title={The N-k Problem in Power Grids: New Models, Formulations and Computations}, eprint={http://www.columbia.edu/\~dano/papers/nmk.pdf}, } @book{98Bol, author = {Bollobas, Bela }, keywords = {book, graph-theory, resistance}, month = {July}, publisher = {Springer}, title = {Modern Graph Theory}, year = {1998} } @article{08GBS, author = {Ghosh,, Arpita and Boyd,, Stephen and Saberi,, Amin}, title = {Minimizing Effective Resistance of a Graph}, journal = {SIAM Rev.}, volume = {50}, number = {1}, year = {2008}, issn = {0036-1445}, pages = {37--66}, doi = {http://dx.doi.org/10.1137/050645452}, publisher = {Society for Industrial and Applied Mathematics}, address = {Philadelphia, PA, USA}, } @inproceedings{08LPR, author = {Lesieutre,, Bernard C. and Pinar,, Ali and Roy,, Sandip}, title = {Power System Extreme Event 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