Improving Enterprise Resilience by Evaluating Training System Architecture

Author(s):  
Victoria Jnitova ◽  
Mahmoud Efatmaneshnik ◽  
Keith F. Joiner ◽  
Elizabeth Chang
2015 ◽  
Vol 740 ◽  
pp. 802-805 ◽  
Author(s):  
Shu Lin Yang ◽  
Jie Ping Hu

This paper introduced the workflow concept, analysis of the Activiti5 open source workflow management system architecture. And from a practical point of view, to training system task workflow as an example, a detailed analysis of the design scheme of task workflow. The scheme in the practice application received good results in the training system.


Author(s):  
Cui Li

This paper builds on the requirements of listening and writing, conducts a de-tailed analysis on demands and a feasibility study, and designs a set of intelligent English listening and writing training system. This system carries out an analysis on demands from three main aspects—the orchestration system before the test, the mock test subsystem during the test and the achievement management system after the test, and describes the functions of the college English listening and speaking simulation test system. After technical analysis, the non-functional re-quirements of the system are introduced. The design of the system makes a hier-archical description of the system’s overall architecture, achievement management architecture and sorchestration system architecture, and demonstrates database design, design and interface design of this system. The test demonstrates favora-ble results and this system meet the functional requirements.


2017 ◽  
Vol 868 ◽  
pp. 105-109
Author(s):  
Wang Hao ◽  
Li Na Hao ◽  
Jin Ming Wang ◽  
Zhi Ming Yu ◽  
Zhi Xing Tian

This paper presents a remote equipment virtual maintenance training system architecture. The system function modules are designed. We use the open source software to develop the environment to build a complete system which based on ThinkPHP and MVC framework. Multisim circuit simulation software is nested for circuit board components positioning and fault diagnosis. The system can be used for fault diagnostics in electrical system and it can also be used to train maintenance staff.


2013 ◽  
Vol 756-759 ◽  
pp. 4448-4453
Author(s):  
Hui Wang ◽  
Qin Zhang

This work describes the development of a novel equipment support training system. Differing from the traditional teaching panel method, the proposed method does not require any complex computations for coordinate transformation and is a simpler scheme. The proposed equipment support training system includes small equipment support training robots. The system specification phase determines the basic functionalities of the system, which can be described as a series of multilevel goals. Interface analysis is used to understand the input and output interactions between the system and the environment. The equipment support training system architecture, control board design and program flowchart are described and implemented.


2014 ◽  
Vol 981 ◽  
pp. 724-729
Author(s):  
Xiao Ying Zhang ◽  
Kun Lu ◽  
Huai Jun Wang ◽  
Hai Hui Ma

Armored mechanized forces’ equipment support simulation training system is the use of HLA technology combines emulator, computer generated forces and other devices as a whole which form a virtual battlefield environment in time and space coupling by network. This paper simulation training, introduces the construction of project, establishes the System architecture, and designs the idea which is used in distributed equipment support simulation training system based on the concepts、methods and principles of HLA.


2013 ◽  
Vol 791-793 ◽  
pp. 1463-1467
Author(s):  
Gui Yan Li ◽  
Rui Feng Jia ◽  
Zeng Ma

the complexity of equipment simulation training system architecture is an important factor affecting the system structure design. According to the characteristics of equipment simulation training system architecture, and combined with the existing complexity analysis method, a complexity analysis method is proposed that is based on the reliability, economy, security (three indexes) .The method synthetically considers the physics view, logic view, technology view and three indexes requirements of the system architecture. Examples prove that calculation results of this method reasonably response the complexity of architecture designs.


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