000 05884cam a22005898i 4500
001 9780429326455
003 FlBoTFG
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006 m d | |
007 cr |||||||||||
008 191219s2020 flu ob 001 0 eng
040 _aOCoLC-P
_beng
_erda
_cOCoLC-P
020 _a9780429326455
_q(ebook)
020 _a0429326459
_q(ebook)
020 _a9781000050141
_q(electronic bk. : EPUB)
020 _a1000050149
_q(electronic bk. : EPUB)
020 _a9781000050127
_q(electronic bk. : Mobipocket)
020 _a1000050122
_q(electronic bk. : Mobipocket)
020 _a9781000050103
_q(electronic bk. : PDF)
020 _a1000050106
_q(electronic bk. : PDF)
020 _z9780367334413
_q(hardback)
035 _a(OCoLC)1137737867
035 _a(OCoLC-P)1137737867
050 0 0 _aTA416
072 7 _aTEC
_x020000
_2bisacsh
072 7 _aCOM
_x014000
_2bisacsh
072 7 _aCOM
_x032000
_2bisacsh
072 7 _aTBC
_2bicssc
082 0 0 _a620.0071/1
_223
100 1 _aWang, Ning
_c(Research scientist),
_eauthor.
245 1 0 _aDevelopment of a remote laboratory for engineering education /
_cNing Wang, Qianlong Lan, Xuemin Chen, Gangbing Song, and Hamid Parsaei.
264 1 _aBoca Raton, FL :
_bCRC Press,
_c[2020]
300 _a1 online resource.
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
490 1 _aTechnology guides. Advancing capacity building in contemporary organizations
520 _a"To address the needs of remote laboratory development for such purposes, the authors present a new state-of-the-art unified framework for RL system development. Included are solutions to commonly encountered RL implementation issues such as third-party plugin, traversing firewalls, cross platform, and scalability, etc. Additionally, the book introduces a new application architecture of remote lab for mobile-based RL application development for Mobile Learning (M-Learning). It also shows how to design and organize the remote experiments at different universities and make available a framework source code. The book is intended to serve as complete guide for remote lab system design and implementation for an audience comprised of researchers, practitioners and students to enable them to rapidly and flexibly implement RL systems for a range of fields"--
_cProvided by publisher.
505 0 _aCover -- Half Title -- Series Page -- Title Page -- Copyright Page -- Table of Contents -- Preface -- Author Biographies -- Introduction -- 1 Introduction of Remote Laboratory Technology -- 1.1 Introduction -- 1.2 Current Status of the RL Technology -- 1.3 The Development of RL Systems -- 1.3.1 Cloud Computing Technology for RL Systems' Implementation -- 1.3.2 Mobile RL Applications Development -- 1.3.3 Social Computing Technology for RL System Implementation -- 2 A Novel Flexible Framework for Rapidly Integrating Offline Experiment into Remote Laboratory System -- 2.1 Introduction
505 8 _a2.2 Methodology -- 2.2.1 Social IM Application Architecture -- 2.2.2 Node.js Web Engine -- 2.2.3 Data Transmission Protocol Selection -- 2.3 The Design of the Novel Flexible Framework -- 2.3.1 Client Web Module -- 2.3.2 Server Module -- 2.3.3 The New-Version LtoN Protocol -- 2.4 Summary -- 3 Cloud-Based RLaaS-Frame Framework for Rapid Deployment of Remote Laboratory Systems -- 3.1 Introduction -- 3.2 RLaaS-Frame Architecture -- 3.2.1 Experimental Application as a Service (EAaaS) Layer -- 3.2.2 Experimental Development Framework and Running Environment as a Service (EFEaaS) Layer
505 8 _a3.2.3 Basic Experimental Resources as a Service (BERaaS) Layer -- 3.2.4 Characteristic of the RLaaS-Frame -- 3.3 The Reference Deployment Process of the RLaaS-Frame -- 3.3.1 Application Service -- 3.3.2 Platform and Framework Service -- 3.3.3 Resource Aggregation Service -- 3.3.4 Detail Reference Deployment Process -- 3.4 Summary -- 4 A Novel Mobile-Optimized Remote Laboratory Application Architecture -- 4.1 Introduction -- 4.2 Novel Mobile-Optimized Application Architecture -- 4.2.1 Mobile-Optimized Application Layer -- 4.2.2 Unified Framework Layer
505 8 _a4.2.3 Characteristics of the New Mobile- Optimized Application Architecture -- 4.3 Summary -- 5 A Novel Online Programmable Platform for Remote Programmable Control Experiment Development -- 5.1 Introduction -- 5.1.1 Programmable Logic Controllers for Experimental Device Control -- 5.1.2 Software in Workstation for Experimental Device Control -- 5.1.3 Server-Based Programmable Environment for Experimental Equipment Control -- 5.2 Online Programmable Experiment Platform Architecture -- 5.2.1 UI Layer -- 5.2.2 Platform Kernel Layer -- 5.2.3 System Layer
505 8 _a5.2.4 Advantages of the Novel Online Programmable Experiment Platform -- 5.3 Summary -- 6 Wiki-Based Remote Laboratory Platform for Engineering Education -- 6.1 Introduction -- 6.2 Wiki-Based RL System Architecture -- 6.2.1 Client Layer -- 6.2.2 Platform Layer -- 6.2.3 Database Layer -- 6.3 The Implementation Process of the Wiki-Based RL Platform -- 6.4 Summary -- 7 Case Studies -- 7.1 Introduction -- 7.2 A Remote Shape Memory Alloy (SMA) Experiment -- 7.2.1 Methodology -- 7.2.2 Experimental Implementation -- 7.2.2.1 Hardware Setup -- 7.2.2.2 Software Implementation
588 _aOCLC-licensed vendor bibliographic record.
650 0 _aEngineering experiment stations.
650 0 _aEngineering
_xStudy and teaching.
650 0 _aDistance education.
650 7 _aTECHNOLOGY / Manufacturing
_2bisacsh
650 7 _aCOMPUTERS / Computer Science
_2bisacsh
650 7 _aCOMPUTERS / Information Technology
_2bisacsh
856 4 0 _3Taylor & Francis
_uhttps://www.taylorfrancis.com/books/9780429326455
856 4 2 _3OCLC metadata license agreement
_uhttp://www.oclc.org/content/dam/oclc/forms/terms/vbrl-201703.pdf
999 _c127396
_d127396