Distributed Linear Programming Models in a Smart Grid Distributed Linear Programming Models in a Smart Grid
Power Electronics and Power Systems

Distributed Linear Programming Models in a Smart Grid

    • $109.99
    • $109.99

Publisher Description

This book showcases the strengths of Linear Programming models for Cyber Physical Systems (CPS), such as the Smart Grids. Cyber-Physical Systems (CPS) consist of computational components interconnected by computer networks that monitor and control switched physical entities interconnected by physical infrastructures. A fundamental challenge in the design and analysis of CPS is the lack of understanding in formulating constraints for complex networks. We address this challenge by employing collection of Linear programming solvers that models the constraints of sub-systems and micro grids in a distributed fashion.
The book can be treated as a useful resource to adaptively schedule resource transfers between nodes in a smart power grid. In addition, the feasibility conditions and constraints outlined in the book will enable in reaching optimal values that can help maintain the stability of both the computer network and the physical systems. It details the collection of optimization methods that are reliable for electric-utilities to use for resource scheduling, and optimizing their existing systems or sub-systems. The authors answer to key questions on ways to optimally allocate resources during outages, and contingency cases (e.g., line failures, and/or circuit breaker failures), how to design de-centralized methods for carrying out tasks using decomposition models; and how to quantify un-certainty and make decisions in the event of grid failures.
• The only book to focus on Linear Programming Methods for Cyber Physical Systems;• Features AMPL codes that show how to formulate IEEE test grid systems;• Includes code that can be used to tackle problems such as resource allocation, decomposition of a major grid into micro grids, and addressing uncertainty under renewable penetration scenarios.

GENRE
Professional & Technical
RELEASED
2017
March 31
LANGUAGE
EN
English
LENGTH
238
Pages
PUBLISHER
Springer International Publishing
SELLER
Springer Nature B.V.
SIZE
5.2
MB
Computational Intelligence Applications In Smart Grids: Enabling Methodologies For Proactive And Self-organizing Power Systems Computational Intelligence Applications In Smart Grids: Enabling Methodologies For Proactive And Self-organizing Power Systems
2014
Applications of Modern Heuristic Optimization Methods in Power and Energy Systems Applications of Modern Heuristic Optimization Methods in Power and Energy Systems
2020
Life System Modeling and Intelligent Computing Life System Modeling and Intelligent Computing
2010
Parallel Processing and Applied Mathematics Parallel Processing and Applied Mathematics
2010
Modelling, Computation and Optimization in Information Systems and Management Sciences Modelling, Computation and Optimization in Information Systems and Management Sciences
2008
Soft Computing Models in Industrial and Environmental Applications, 5th International Workshop (SOCO 2010) Soft Computing Models in Industrial and Environmental Applications, 5th International Workshop (SOCO 2010)
2010
Deep Learning for Power System Applications Deep Learning for Power System Applications
2023
Power GaN Devices Power GaN Devices
2016
Grid Integration and Dynamic Impact of Wind Energy Grid Integration and Dynamic Impact of Wind Energy
2012
Dynamic Phasors in Energy Processing Systems Dynamic Phasors in Energy Processing Systems
2024
Experiences on Use of State Estimator in Power System Operations Experiences on Use of State Estimator in Power System Operations
2024
Software-Defined Power Electronics Software-Defined Power Electronics
2024