Energy efficiency improvements in electronic motors and drives
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Introduction: H.-J. Jahne: Energy Efficiency in a Competitive Economy.- R. Hamilton: Ethics & Answers: Engineering Efficiency for a Sustainable Future.- Technology Developments: D. Jackson: Integration of Motors and Drives.- T. Haring: Design of Motors for Inverter Operation.- D. Peters, J. Cowie, E. Brush: Die Casting Copper Motor Rotors: Mold Materials and Processing for Cost-Effective Manufacturing.- A. von Jouanne, B. Banerjee: Review of the System Compatibility and Ride-through Options for AC and DC Drives Including Multilevel Inverters.- T. Sawa, K. Hamada: Introduction to the Permanent Magnet Motor Market.- P. Caselotti, A. Conchetto, P. Tavner: High Efficiency Motors - Performance, Economy & Reliability, by Optimisation.- K. Dabala: The Influence of Selected Losses Components on Induction Squirrel-Cage Motor Efficiency.- H. Jussi, P. Juha, A. Jarmo: Inverter Fed High-Speed Solid-Rotor Induction Motors for Industrial Applications.- M. Bitchkov, N. Ilinski, V. Sementchuk: Switched Reluctance Drive for Mass Application.- B. Beck, D. Friesen: The Written-Pole Motor: High Efficiency - Low Start Current.- S. Garvey: Motor and Drive Integration with Passive Components Realised Using the Stator Core.- F. Abrahamsen, F. Blaabjerg, J. Pedersen: Efficiency Improvement of Variable Speed Electrical Drives for HVAC Applications.- A. Boglietti, M. Lazzari, M. Pastorelli: Higher Efficiency Drive for Fluid Treatments.- Motor System Characterisation and Applications: A. De Almeida, P. Fonseca: Characterisation of EU Motor Use.- D. Walters: Minimising Efficiency Loss Caused by Motor Rewinds.- L. Mukka, B. Engstrom: Improving Efficiency in Motor Driven Systems - The Iron Ore Industry.- W. Cory: Optimising Fan Systems for Energy Efficiency.- H. Auinger:Energy Optimized Drive Systems Design.- A. Mckane: Using Collaboration to Achieve Industrial Market Change.- Pump Design and Applications: G. Hovstadius: Pump Systems Effectiveness.- I. Metcalf: Driver Selection Matched to Demand: A Consideration for Maximising Lifecycle Costs by Using the Correct Driver.- N. Thorup: Environmental Impact Assessment (LCA) Energy and Re-cycling for a Circulator.- D. Reeves, H. Falkner: Promoting the Purchase of More Efficient Pumps, A SAVE Study.- I. Sintonen: On Site Testing.- H. Pedersen: SQ - Submersible Pump with Integrated Permanent Magnet Motor Drive.- Test Methods for Induction Motors: S. Williamson, H. Sambath: Induction Motor Efficiency Measurement.- J. Kline: Experience Factors When Testing for Efficiency and Correlating Results with Design.- J. Haataja, J. Pyrhonen: Approaching the Truth in Induction Motor Efficiency.- H. Auinger: Precise Efficiency Data for Electric Motors - an Illusion?.- E. Ogonowska-Schweitzer: Calorimetric Method to Measure Total Losses of the Induction Motor.- K. Bradley, A. Ferrah, R. Magill, P. Mcleod, J. Clare, P. Wheeler, P. Sewell: Precision Calorimetry for Stray Load Determination.- P. Sandholdt, E. Ritchie, J. Pederson: A Test and Measurement System for Test of Electrical Drive Systems.- P. Van Roy, B. Slaets, K. Hameyer, R. Belmans: Induction Motor Efficiency Standards.- Policies: P. Bertoldi, G. Kuehnemund: The European Negotiated Agreement to Improve Motor Efficiency.- A. Balducci: EPAct Legislation - The United States Experience of Minimum Efficiency Standards for Induction Motors.- N. Glew: The Challenge to Define the New IEC Test Method.- P. Scheihing, M. Rosenberg, S. Weil: Evaluating the Impact of a Government-Sponsored Motor Driven System