Non-cooperative Stochastic Differential Game Theory of Generalized Markov Jump Linear Systems Non-cooperative Stochastic Differential Game Theory of Generalized Markov Jump Linear Systems
Studies in Systems, Decision and Control

Non-cooperative Stochastic Differential Game Theory of Generalized Markov Jump Linear Systems

    • USD 129.99
    • USD 129.99

Descripción editorial

This book systematically studies the stochastic non-cooperative differential game theory of generalized linear Markov jump systems and its application in the field of finance and insurance. The book is an in-depth research book of the continuous time and discrete time linear quadratic stochastic differential game, in order to establish a relatively complete framework of dynamic non-cooperative differential game theory. It uses the method of dynamic programming principle and Riccati equation, and derives it into all kinds of existence conditions and calculating method of the equilibrium strategies of dynamic non-cooperative differential game. Based on the game theory method, this book studies the corresponding robust control problem, especially the existence condition and design method of the optimal robust control strategy. The book discusses the theoretical results and its applications in the risk control, option pricing, and the optimal investment problem in the field of finance and insurance, enriching the achievements of differential game research. This book can be used as a reference book for non-cooperative differential game study, for graduate students majored in economic management, science and engineering of institutions of higher learning.

GÉNERO
Técnicos y profesionales
PUBLICADO
2016
2 de septiembre
IDIOMA
EN
Inglés
EXTENSIÓN
202
Páginas
EDITORIAL
Springer International Publishing
VENDEDOR
Springer Nature B.V.
TAMAÑO
5.6
MB
Green IT Engineering: Concepts, Models, Complex Systems Architectures Green IT Engineering: Concepts, Models, Complex Systems Architectures
2016
Estimation and Control for Networked Systems with Packet Losses without Acknowledgement Estimation and Control for Networked Systems with Packet Losses without Acknowledgement
2016
Finite Frequency Analysis and Synthesis for Singularly Perturbed Systems Finite Frequency Analysis and Synthesis for Singularly Perturbed Systems
2016
Advanced Control of Electrical Drives and Power Electronic Converters Advanced Control of Electrical Drives and Power Electronic Converters
2016
Synchronization Control for Large-Scale Network Systems Synchronization Control for Large-Scale Network Systems
2016
Broadband Wireless Communications for Railway Applications Broadband Wireless Communications for Railway Applications
2016