Operation-Based Multi-Queue Sbc Process Algebra For Systems Modeling: General Systems Theory 2.0 At Work

CreateSpace Independent Publishing Platform
SKU:
9781540762511
|
ISBN13:
9781540762511
$13.49
(No reviews yet)
Condition:
New
Usually Ships in 24hrs
Current Stock:
Estimated Delivery by: | Fastest delivery by:
Adding to cart… The item has been added
Buy ebook
The need for systems modeling arises because any real-life system is inherently complicated. It is impossible to comprehend fully the intricate interaction of any system of the real world with its environment, or to define all its components and each of its details. Systems modeling or system modeling is an artifact created by humans to define what a system is. Process algebras are a diverse family of related approaches to the study of concurrent systems. Their tools are algebraic languages for the high-level description of interactions, communications, and synchronizations among independent processes. Process algebras also provide algebraic laws that allow process descriptions to be manipulated and analyzed, and permit formal reasoning about equivalences and observation congruence among processes. Accordingly, process algebra provides a perfect method for system modeling. Operation-based multi-queue SBC process algebra (O-M-SBC-PA) is one of the six specialized SBC process algebras. In this book, we use O-M-SBC-PA to achieve the robust systems modeling of a system. To see is to believe. Therefore, many examples are presented to help the reader fully understand the use of O-M-SBC-PA.
  • | Author: William S. Chao
  • | Publisher: CreateSpace Independent Publishing Platform
  • | Publication Date: Dec 01, 2016
  • | Number of Pages: 218 pages
  • | Language: English
  • | Binding: Paperback
  • | ISBN-10: 1540762513
  • | ISBN-13: 9781540762511
Author:
William S. Chao
Publisher:
CreateSpace Independent Publishing Platform
Publication Date:
Dec 01, 2016
Number of pages:
218 pages
Language:
English
Binding:
Paperback
ISBN-10:
1540762513
ISBN-13:
9781540762511