Optimal Resource Allocation

Optimal Resource Allocation
Author: Igor A. Ushakov
Publisher: John Wiley & Sons
Total Pages: 165
Release: 2013-05-17
Genre: Mathematics
ISBN: 1118400704

A UNIQUE ENGINEERING AND STATISTICAL APPROACH TO OPTIMAL RESOURCE ALLOCATION Optimal Resource Allocation: With Practical Statistical Applications and Theory features the application of probabilistic and statistical methods used in reliability engineering during the different phases of life cycles of technical systems. Bridging the gap between reliability engineering and applied mathematics, the book outlines different approaches to optimal resource allocation and various applications of models and algorithms for solving real-world problems. In addition, the fundamental background on optimization theory and various illustrative numerical examples are provided. The book also features: An overview of various approaches to optimal resource allocation, from classical Lagrange methods to modern algorithms based on ideas of evolution in biology Numerous exercises and case studies from a variety of areas, including communications, transportation, energy transmission, and counterterrorism protection The applied methods of optimization with various methods of optimal redundancy problem solutions as well as the numerical examples and statistical methods needed to solve the problems Practical thoughts, opinions, and judgments on real-world applications of reliability theory and solves practical problems using mathematical models and algorithms Optimal Resource Allocation is a must-have guide for electrical, mechanical, and reliability engineers dealing with engineering design and optimal reliability problems. In addition, the book is excellent for graduate and PhD-level courses in reliability theory and optimization.

Optimal Resource Allocation in Coordinated Multi-Cell Systems

Optimal Resource Allocation in Coordinated Multi-Cell Systems
Author: Emil Björnson
Publisher: Now Pub
Total Pages: 282
Release: 2013
Genre: Technology & Engineering
ISBN: 9781601986382

Optimal Resource Allocation in Coordinated Multi-Cell Systems provides a solid grounding and understanding for optimization of practical multi-cell systems and will be of interest to all researchers and engineers working on the practical design of such systems.

Real-Time Optimization

Real-Time Optimization
Author: Dominique Bonvin
Publisher: MDPI
Total Pages: 255
Release: 2018-07-05
Genre: Electronic book
ISBN: 303842448X

This book is a printed edition of the Special Issue "Real-Time Optimization" that was published in Processes

Plant Resource Allocation

Plant Resource Allocation
Author: Fakhri A. Bazzaz
Publisher: Elsevier
Total Pages: 319
Release: 1997-07-23
Genre: Science
ISBN: 0080539076

Plant Resource Allocation is an exploration of the latest insights into the theory and functioning of plant resource allocation. An international team of physiological ecologists has prepared chapters devoted to the fundamental topics of resource allocation. Comprehensive coverage of all aspects of resource allocation in plants All contributors are leaders in their respective fields

Optimal Resource Allocation in Coordinated Multi-cell Systems

Optimal Resource Allocation in Coordinated Multi-cell Systems
Author: Emil Björnson
Publisher:
Total Pages: 269
Release: 2013
Genre: Antennas (Electronics)
ISBN: 9781601986399

The use of multiple antennas at base stations is a key component in the design of cellular communication systems that can meet high-capacity demands in the downlink. Under ideal conditions, the gain of employing multiple antennas is well-recognized : the data throughput increases linearly with the number of transmit antennas if the spatial dimension is utilized to serve many users in parallel. The practical performance of multi-cell systems is, however, limited by a variety of nonidealities, such as insufficient channel knowledge, high computational complexity, heterogeneous user conditions, limited backhaul capacity, transceiver impairments, and the constrained level of coordination between base stations.