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Managing distributed dynamic systems...
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Sapaty, Peter Simon.
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Managing distributed dynamic systems with spatial grasp technology
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Managing distributed dynamic systems with spatial grasp technology/ by Peter Simon Sapaty.
作者:
Sapaty, Peter Simon.
出版者:
Cham :Springer International Publishing : : 2017.,
面頁冊數:
xvii, 284 p. :ill. (some col.), digital ;24 cm.
內容註:
Chapter 1 Introduction -- Chapter 2 Some Theoretical Background -- Chapter 3 Spatial Grasp Model -- Chapter 4 SGL Detailed Specification -- Chapter 5 Main Spatial Mechanisms in SGL -- Chapter 6 SGL Networked Interpreter -- Chapter 7 Creation, Activation and Management of a Distributed World -- Chapter 8 Parallel and Distributed Network Operations -- Chapter 9 Solving Social Problems -- Chapter 10 Automated Command and Control -- Chapter 11 Collective Robotics -- Chapter 12 Conclusions.
Contained By:
Springer eBooks
標題:
Electronic data processing - Distributed processing -
電子資源:
http://dx.doi.org/10.1007/978-3-319-50461-2
ISBN:
9783319504612
Managing distributed dynamic systems with spatial grasp technology
Sapaty, Peter Simon.
Managing distributed dynamic systems with spatial grasp technology
[electronic resource] /by Peter Simon Sapaty. - Cham :Springer International Publishing :2017. - xvii, 284 p. :ill. (some col.), digital ;24 cm. - Studies in computational intelligence,v.6901860-949X ;. - Studies in computational intelligence ;v.690..
Chapter 1 Introduction -- Chapter 2 Some Theoretical Background -- Chapter 3 Spatial Grasp Model -- Chapter 4 SGL Detailed Specification -- Chapter 5 Main Spatial Mechanisms in SGL -- Chapter 6 SGL Networked Interpreter -- Chapter 7 Creation, Activation and Management of a Distributed World -- Chapter 8 Parallel and Distributed Network Operations -- Chapter 9 Solving Social Problems -- Chapter 10 Automated Command and Control -- Chapter 11 Collective Robotics -- Chapter 12 Conclusions.
The book describes a novel ideology and supporting information technology for integral management of both civil and defence-orientated large, distributed dynamic systems. The approach is based on a high-level Spatial Grasp Language, SGL, expressing solutions in physical, virtual, executive and combined environments in the form of active self-evolving and self-propagating patterns spatially matching the systems to be created, modified and controlled. The communicating interpreters of SGL can be installed in key system points, which may be in large numbers (up to millions and billions) and represent equipped humans, robots, laptops, smartphones, smart sensors, etc. Operating under gestalt-inspired scenarios in SGL initially injected from any points, these systems can be effectively converted into goal-driven spatial machines (rather than computers as dealing with physical matter too) capable of responding to numerous challenges caused by growing world dynamics in the 21st century. Including numerous practical examples, the book is a valuable resource for system managers and programmers.
ISBN: 9783319504612
Standard No.: 10.1007/978-3-319-50461-2doiSubjects--Topical Terms:
2145955
Electronic data processing
--Distributed processing
LC Class. No.: QA76.9.D5
Dewey Class. No.: 004.6
Managing distributed dynamic systems with spatial grasp technology
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Chapter 1 Introduction -- Chapter 2 Some Theoretical Background -- Chapter 3 Spatial Grasp Model -- Chapter 4 SGL Detailed Specification -- Chapter 5 Main Spatial Mechanisms in SGL -- Chapter 6 SGL Networked Interpreter -- Chapter 7 Creation, Activation and Management of a Distributed World -- Chapter 8 Parallel and Distributed Network Operations -- Chapter 9 Solving Social Problems -- Chapter 10 Automated Command and Control -- Chapter 11 Collective Robotics -- Chapter 12 Conclusions.
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The book describes a novel ideology and supporting information technology for integral management of both civil and defence-orientated large, distributed dynamic systems. The approach is based on a high-level Spatial Grasp Language, SGL, expressing solutions in physical, virtual, executive and combined environments in the form of active self-evolving and self-propagating patterns spatially matching the systems to be created, modified and controlled. The communicating interpreters of SGL can be installed in key system points, which may be in large numbers (up to millions and billions) and represent equipped humans, robots, laptops, smartphones, smart sensors, etc. Operating under gestalt-inspired scenarios in SGL initially injected from any points, these systems can be effectively converted into goal-driven spatial machines (rather than computers as dealing with physical matter too) capable of responding to numerous challenges caused by growing world dynamics in the 21st century. Including numerous practical examples, the book is a valuable resource for system managers and programmers.
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