We also now offer TOGAF™ 9 training, certification and other services.
For further information contact us via our website:
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Traceability
How do we guarantee that a delivered system does what it says on the tin?
If you talk to a lot of people about the issue of traceability, most of them will
simply brush it off as something that might happen. But without it how do we perform
impact analysis in a forward or reverse motion during the system development lifecycle?
Traceability is about ensuring that the requirements are realised, looking at a
solution and seeing which requirements have been met and knowing that if the requirements
are changed, what’s the impact!
Join us and watch how we demonstrate traceability in UML, SOA and TOGAF™
Distributed Systems Technology Stack
The need for Architecture
Justify the need for an architecture, what’s its function, what concerns does it address and how do those concerns get addressed.
Distributed Object Systems
What is a DOS, what function does it serve, what are the core DOS principles, and what standards are available. Examine what are the risks, why OO concepts are important, and the need for distributed transactional systems.
Techniques and methods for defining DOS
Establish the need for a development method, what methods are available, describe workflows and the four key phases of an iterative and incremental development process, and define iterative process outputs.
System relationship heuristics
What is object oriented communications? How does the OO model scale in a DOS environment, what are the security imperatives in a distributed computing environment.
Examine the primary issues that need to be considered in a DOS, such as; capacity, extensibility, security etc. Prepare plans for these “qualities”, and define a logical architecture. Students will learn how to create basic, business, application, data and technology architecture blueprints that can be used for planning.
Define what is a Quality of Service, identify the source of a QoS, specify how a QoS affects the system.
Discover how to perform robustness analysis, gap analysis, ATA and some other techniques that are popular with EA practices.
Gain an understanding of what is a pattern, architectural patterns and patterns that have become popular within the DOS community.
Overview of JEE Technologies
Brief introduction to the many JEE technologies that are available to an systems implementer such as; JDBC, EJBs, Connectors, RMI, JNDI, JAXP, Web Containers, Java Server Faces, JMS, JTA, JavaMail, and the Management and Security technologies.
Overview of .NET technologies
Brief introduction to the many Microsoft .NET technologies that are available to an systems implementer such as; ODBC and ADO.NET, LINQ, WPF, WCF, WF, Card Spaces, Winforms and ASP.NET.
Message Oriented Middleware has become a de facto technology standard for many organisations in their bid to build robust EAI sytems. Here students learn the principles of MOM architectures, MOM patterns and who are the key suppliers in this field.
Enterprise Service Bus. Details the core components required to build a robust and scalable message bus that is more than a MOM or a CORBA like piece of middleware.
This chapter looks at what is XML and why it has become so pervasive within the IT industry, and how to process XML documents using DOM, XML streaming and XSLT.
Discover different strategies for persisting objects using relational, object relational and object oriented databases. The chapter also looks at basic relational theory such as tables, data integrity and transactions.
Gain an understanding of a web based world, learn about Web Servers, HTML, JavaScript, server side scripting languages, JSPs, Servlets, ASPs, and how all these technologies function together in a web based environment.