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Leonard L Grigsby - One of the best experts on this subject based on the ideXlab platform.
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Electric Power generation transmission and distribution
2007Co-Authors: Leonard L GrigsbyAbstract:Part I: Electric Power Generation: Nonconventional Methods, S. Rahman Wind Power, V. Nelson Photovoltaic Fundamentals, R.A. Messenger Advanced Energy Technologies, S. Rahman Water, V. Nelson Part II: Electric Power Generation: Conventional Methods, R. Ramakumar HydroElectric Power Generation, S.R. Brockschink, J.H. Gurney, and D.B. Seely Synchronous Machinery, P.I. Nippes Thermal Generating Plants, K.H. Sebra Distributed Utilities, J.R. Kennedy and R. Ramakumar Part III: Transmission System, G.G. Karady Concept of Energy Transmission and Distribution, G.G. Karady Transmission Line Structures, J.C. Pohlman Insulators and Accessories, G.G. Karady and R.G. Farmer Transmission Line Construction and Maintenance, J. Green, D. Chipman, and Y. Gill Insulated Power Cables Used in Underground Applications, M.L. Dyer Transmission Line Parameters, M. Reta-Hernandez Sag and Tension of Conductor, D.A. Douglass and F. Ridley Thrash Corona and Noise, G.N. Trinh Geomagnetic Disturbances and Impacts upon Power System Operation, J.G. Kappenman Lightning Protection, W.A. Chisholm Reactive Power Compensation, R.S. Thallam and G. Joos Environmental Impact of Transmission Lines, G.G. Karady Transmission Line Reliability Methods, B. Keel, V.C. Patel, and H. Stewart Nunn II High-Voltage Direct Current Transmission System, G.G. Karady and G. Joos Transmission Line Structures, R.E. Nickerson, P.M. Kandaris, and A.M. DiGioia, Jr. Advanced Technology High-Temperature Conductors, J.R. Hunt Part IV: Distribution Systems, W.H. Kersting Power System Loads, R.R. Shoults and Larry D. Swift Distribution System Modeling and Analysis, W.H. Kersting Power System Operation and Control, G.L. Clark and Simon W. Bowen Hard-to-Find Information (on Distribution System Characteristics and Protection), J. Burke Real-Time Control of Distributed Generation, M. Dilek and R.P. Broadwater Distribution Short-Circuit Protection, T.A. Short Part V: Electric Power Utilization, A.P. Hanson Metering of Electric Power and Energy, J.V. Grubbs Basic Electric Power Utilization: Loads, Load Characterization and Load Modeling, A.P. Hanson Electric Power Utilization: Motors, C.A. Gross Linear Electric Motors, J.F. Gieras Part VI: Power Quality, S. Mark Halpin Introduction, S. Mark Halpin Wiring and Grounding for Power Quality, Christopher J. Melhorn Harmonics in Power Systems, S. Mark Halpin Voltage Sags, Math H.J. Bollen Voltage Fluctuations and Lamp Flicker in Power Systems, S. Mark Halpin Power Quality Monitoring, P. Coleman
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Electric Power Generation, Transmission, and Distribution - Electric Power Generation, Transmission, and Distribution
2007Co-Authors: Leonard L GrigsbyAbstract:Part I: Electric Power Generation: Nonconventional Methods, S. Rahman Wind Power, V. Nelson Photovoltaic Fundamentals, R.A. Messenger Advanced Energy Technologies, S. Rahman Water, V. Nelson Part II: Electric Power Generation: Conventional Methods, R. Ramakumar HydroElectric Power Generation, S.R. Brockschink, J.H. Gurney, and D.B. Seely Synchronous Machinery, P.I. Nippes Thermal Generating Plants, K.H. Sebra Distributed Utilities, J.R. Kennedy and R. Ramakumar Part III: Transmission System, G.G. Karady Concept of Energy Transmission and Distribution, G.G. Karady Transmission Line Structures, J.C. Pohlman Insulators and Accessories, G.G. Karady and R.G. Farmer Transmission Line Construction and Maintenance, J. Green, D. Chipman, and Y. Gill Insulated Power Cables Used in Underground Applications, M.L. Dyer Transmission Line Parameters, M. Reta-Hernandez Sag and Tension of Conductor, D.A. Douglass and F. Ridley Thrash Corona and Noise, G.N. Trinh Geomagnetic Disturbances and Impacts upon Power System Operation, J.G. Kappenman Lightning Protection, W.A. Chisholm Reactive Power Compensation, R.S. Thallam and G. Joos Environmental Impact of Transmission Lines, G.G. Karady Transmission Line Reliability Methods, B. Keel, V.C. Patel, and H. Stewart Nunn II High-Voltage Direct Current Transmission System, G.G. Karady and G. Joos Transmission Line Structures, R.E. Nickerson, P.M. Kandaris, and A.M. DiGioia, Jr. Advanced Technology High-Temperature Conductors, J.R. Hunt Part IV: Distribution Systems, W.H. Kersting Power System Loads, R.R. Shoults and Larry D. Swift Distribution System Modeling and Analysis, W.H. Kersting Power System Operation and Control, G.L. Clark and Simon W. Bowen Hard-to-Find Information (on Distribution System Characteristics and Protection), J. Burke Real-Time Control of Distributed Generation, M. Dilek and R.P. Broadwater Distribution Short-Circuit Protection, T.A. Short Part V: Electric Power Utilization, A.P. Hanson Metering of Electric Power and Energy, J.V. Grubbs Basic Electric Power Utilization: Loads, Load Characterization and Load Modeling, A.P. Hanson Electric Power Utilization: Motors, C.A. Gross Linear Electric Motors, J.F. Gieras Part VI: Power Quality, S. Mark Halpin Introduction, S. Mark Halpin Wiring and Grounding for Power Quality, Christopher J. Melhorn Harmonics in Power Systems, S. Mark Halpin Voltage Sags, Math H.J. Bollen Voltage Fluctuations and Lamp Flicker in Power Systems, S. Mark Halpin Power Quality Monitoring, P. Coleman
Gong Zhi-hon - One of the best experts on this subject based on the ideXlab platform.
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Transmission of direct current and alternating current and their advantages and disadvantages
2007Co-Authors: Gong Zhi-honAbstract:The following paper compares the advantages and disadvantages between current and alternating current transmission,illustrates present condition and long-term potential of direct current transmission in our country,introduces the methods to reduce the loss of transmission line Power and voltage,and analyzes the causes of using high-voltage Power transmission in long-term Power transmission,in order to reduce the loss of transmission line Power and increase Electric Power Utilization efficiency.
Chung-yuen Won - One of the best experts on this subject based on the ideXlab platform.
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Novel high efficiency bidirectional converter using Power sharing method for V2G
2012 IEEE Vehicle Power and Propulsion Conference, 2012Co-Authors: Kyu-dong Kim, Jun-gu Kim, Yong-chae Jung, Chung-yuen WonAbstract:According to the growth of Electric vehicle industry, the demand of new battery energy storage systems for vehicle-to-grid has been increased rapidly to improve Electric Power Utilization. Projected BESS penetration levels across utility customer are a promising clue that BESS may dominate the market in the near future. In this paper, a novel BESS system with V2G function for onboard charger which composed of a bidirectional DC/DC converter using voltage compensation configuration is proposed and the mode of charging/discharging is verified by simulation.
Soniya N - One of the best experts on this subject based on the ideXlab platform.
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Analysis of Bidirectional Converter for Power Sharing From Vehicle to Grid
Imperial journal of interdisciplinary research, 2017Co-Authors: Sasikumar S, Krishnamoorthi K, Soniya NAbstract:Abstract - According to the growth of Electric vehicle industry, the demand of new battery energy storage systems for vehicle to-grid has been increased rapidly to improve Electric Power Utilization. Projected BESS penetration levels across utility customer are a promising clue that BESS may dominate the market in the near future. In this paper, a novel BESS system with V2G function for on-board charger which composed of a bidirectional DC/DC converter using voltage compensation configuration is proposed and the mode of charging/discharging is verified by simulation. Keywords: Bidirectional DC-DC converter, NBDC, NBDC with Coupled Inductor and IBDC. .
Donald J. Smythe - One of the best experts on this subject based on the ideXlab platform.
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The Great Merger Movement and the Diffusion of Electric Power Utilization in American Manufacturing, 1899-1909: A Simple Test of the Schumpeterian Hypothesis
Eastern Economic Journal, 2001Co-Authors: Donald J. SmytheAbstract:The great merger movement at the turn of the century significantly increased the concentration of many American manufacturing industries. It occurred just as many of them were beginning to electrify their production processes. The conjunction of these two events suggests a simple test of Schumpeter's hypothesis that a high degree of industry concentration is conducive to rapid technological innovation. This paper uses a sample of industries from the Twelfth and Thirteenth Censuses of Manufactures to test whether the great merger movement accelerated the electrification process in American manufacturing industries. The results offer some tentative support for the Schumpeterian hypothesis.