Formulating Principal-Agent Service Contracts for a Revenue Generating Unit

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This book examines contractual options for a performance based contract between an owner of a revenue generating unit and a repair agent for such unit. The framework of the analysis is that of economists' principal-agent problem. The contractual options of a principal and an agent are modeled as a Markov process with an undetermined time horizon. For a risk neutral principal, the authors identify the conditions under which a principal contracts with a risk-neutral, risk-averse, or risk-seeking agent and derive the principal's optimal offer together with the agent's optimal service capacity response. In essence, the book provides an extensive formulating analysis of principal-agent contracts given any exogenous parameter values. Ultimately a small number of formulas cover a large spectrum of principal-agent conditions.


Examines the contractual options between an owner of a revenue generating unit and a provider of repair service for this unit Identifies the exogenous conditions exhaustively under which a risk-neutral principal contracts with a risk-neutral, risk-averse or risk-seeking agent Provides an extensive formulating analysis of principal-agent contracts given any exogenous parameter values

Autorentext
Shuo Zeng received the B.E. degree in Automation in 2004 and the M.E. degree in Computer Science in 2007 from Tsinghua University, China. He is currently a doctoral student in the Management Information Systems Department at the University of Arizona. His research interests include principal-agent contract design and the application of game theory in operations management.Moshe Dror was born in Kazan, Russia, spent his early childhood in Poland, and grew up in Israel. His professional education has been completed in the U.S.A. He is married to Dr. Malcah Yaeger-Dror. Dr. Moshe Dror has received an M.Sc. degree in Mathematical Methods and an I.E. degree -- both from Columbia University. He also received a Ph.D. in Management Science from University of Maryland. He has conducted well-documented research on a variety of topics in logistics, scheduling, manufacturing, cooperative game theory/cost allocation, and on applications of agent theory in project management. He has published numerous book chapters and over 100 papers in the primary refereed journals which focus on management of operations -- Management Science, Operations Research, Naval Research Logistics, IIE Transactions, Transportation Science, among others. He has also published in a number of mathematical and computer science journals such as SIAM J. on Discrete Mathematics, J. of Complexity, ORDER, IPL, Discrete Mathematics, Discrete Applied Mathematics, Discrete Optimization, International Journal of Computational Geometry & Applications, J. of Applied Probability, in addition to publications in a major economics journals I.J. of Game Theory and Games & Economic Behavior. He has edited a book on ARC ROUTING: Theory, Solutions, and Applications (2000), and co-edited a book MODELING UNCERTAINTY: An Examination of Stochastic Theory, Methods, and Applications (2002). He hasalso edited 3 special issues of journals (Operations Research, EJOR, and IIE Transactions). In Summer 2010 he organized and co-chaired an NSF and AFOSR/RSL supported conference on Behavioral & Quantitative Game Theory Workshop on Future Directions, Newport Beach, California.

Inhalt

Introduction.- The Basic Principal-Agent.- Risk-Neutral Agent.- Risk-Averse Agent.- Risk-Seeking Agent.- Summary.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783319186719
    • Auflage 2016
    • Sprache Englisch
    • Genre Allgemeines & Lexika
    • Lesemotiv Verstehen
    • Größe H235mm x B155mm x T8mm
    • Jahr 2015
    • EAN 9783319186719
    • Format Kartonierter Einband
    • ISBN 331918671X
    • Veröffentlichung 14.07.2015
    • Titel Formulating Principal-Agent Service Contracts for a Revenue Generating Unit
    • Autor Moshe Dror , Shuo Zeng
    • Untertitel SpringerBriefs in Operations Management
    • Gewicht 224g
    • Herausgeber Springer International Publishing
    • Anzahl Seiten 140

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