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David Ing

The profession of IT Is software engineering engineering? | Peter J. Denning & Richard ... - 0 views

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    daviding says: If software engineering is engineering, then we should also think about service engineering as engineering. This article also helps to draw some lines between engineering as applied science, and more theoretical forms of science, both in the domain of services systems and human systems.
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    Gerald Weinberg once wrote, "If software engineering truly is engineering, then it ought to be able to learn from the evolution of other engineering disciplines." Robert Glass and his colleagues provocatively evaluated how often software engineering literature does this.4 They concluded that the literature relies heavily on software anecdotes and draws very lightly from other engineering fields. Walter Tichy found that fewer than 50% of the published software engineering papers tested their hypotheses, compared to 90% in most other fields. So software engineering may suffer from our habit of paying too little attention to how other engineers do engineering. In a recent extensive study of practices engineers expect explicitly or tacitly, Riehle found six we do not do well. Predictable outcomes (principle of least surprise). [....] Design metrics, including design to tolerances. [....] Failure tolerance. [....] Separation of design from implementation. [....] Reconciliation of conflicting forces and constraints. [....] Adapting to changing environments. [....]
David Ing

Introduction to Service Engineering | Gavriel Salvendy, Waldemar Karwowski | 2010 | Wiley - 0 views

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    Print ISBN: 9780470382417 Online ISBN: 9780470569627 DOI: 10.1002/9780470569627 Industrial Engineering What you need to know to engineer the global service economy. As customers and service providers create new value through globally interconnected service enterprises, service engineers are finding new opportunities to innovate, design, and manage the service operations and processes of the new service-based economy. Introduction to Service Engineering provides the tools and information a service engineer needs to fulfill this critical new role. The book introduces engineers as well as students to the fundamentals of the theory and practice of service engineering, covering the characteristics of service enterprises, service design and operations, customer service and service quality, web-based services, and innovations in service systems.
David Ing

Conference on Systems Engineering Research | March 17-19, 2010 | Stevens Institute of T... - 1 views

  • Conference on Systems Engineering Research
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    Conference on Systems Engineering Research Stevens Institute of Technology and Delft University of Technology in collaboration with the University of Southern California (USC), presents the 8th Annual Conference on Systems Engineering Research (CSER) Conference Objective The objective of this conference is to provide practitioners and researchers in academia, industry, and government with a common platform to present, discuss and influence Systems Engineering research, and to enhance the practice of Systems Engineering and Systems Engineering education. Call for Papers We invite original research papers addressing any aspect of the Systems Engineering lifecycle. This includes conception, design and architecting, development, modeling and simulation, production, integration, validation, operation and support of these systems. Additional topics include definition of metrics, performance, and improvement methods, assessment and mitigation of risks, definition of critical success factors, and definition of best practices. All papers will be peer reviewed, and if accepted, presented at the conference.
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    daviding says: I have this conference marked on my calendar. The Nov. 1 paper deadline is tough for me. In addition, I should also be working on my dissertation in the spring ... and that's not on a systems engineering topic.
David Ing

IBM and University of Central Florida Team to Prepare Graduates for High-Growth Technol... - 0 views

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    IBM (NYSE: IBM) and the University of Central Florida's (UCF) Institute for Advanced Systems Engineering (IASE) today announced they are working together to prepare students for jobs in systems engineering, a profession that is critical to the creation of the smart cities, healthcare systems and advanced products and systems of the future. To help create the systems engineering workforce that is needed to tackle society's most pressing technology development and integration challenges, IBM is investing more than $2 million in software, in-kind donations and consulting. Through this relationship, UCF students gain hands-on experience using IBM's most popular systems engineering software. In addition to its use in classroom activities, the IBM software gives students and faculty tools to compete for grants and participate in advanced research projects. IBM executives and technical staff provide input into the development of IASE curriculum and coursework, and support the university's efforts to create a learning environment that emulates the real world of systems engineering.
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    daviding says: The significance of the systems engineering program at the University of Central Florida (in Orlando) is noted not only by IBM, but by INCOSE (Samantha Brown, president) in this press release.
David Ing

OMG and INCOSE, OMG's New Certification Program for SysML | May 15, 2009 | Object Manag... - 0 views

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    OMG™ and the International Council on Systems Engineering (INCOSE) today announced that they have agreed to work together on the development of OMG's new program to certify Systems Engineers and other practitioners on the OMG Systems Modeling Language (OMG SysML™) standard. SysML is a graphical modeling language used to perform Model-Based Systems Engineering (MBSE) - that is, to specify and design complex systems that may include hardware, information, personnel, and facilities in addition to software. The program, to be called OCSMP™ (OMG-Certified Systems Modeling Professional), will be OMG's fourth certification. OMG, an international, open membership, not-for-profit industry consortium, maintains standards for interoperability, modeling, and process maturity including the Model Driven Architecture® (MDA®) and Unified Modeling Language™ (UML®); in addition, OMG certifies practitioners in many of these standards. INCOSE is a not-for-profit membership organization dedicated to advancing the state of the art and practice of systems engineering, in part through its Certified Systems Engineering Professional (CSEP) certification program.
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    The hard (in the sense of difficult) part of service science is the social system side. INCOSE and OMG don't really address that. They address the hard (as opposed to soft) systems aspects, with people merely as more parts of an intrinsically engineered system (weapons system, transportation system, etc.). I applaud your diligence with respect to SysML and all that, but I hope your vision of the science of service systems is big enough to include the social side as well.
David Ing

1996 George Klir, Review of "Model Based Systems Engineering" by Wayne Wymore, CRC Pres... - 0 views

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    Wayne Wymore is now well established as an important leader in systems engineering and a founder of a highly original "school of thought" in the area of systems design. His contribution to this area, which will be the subject of a special issue of this journal in the near future, is best exposed in a trilogy consisting of this book and its two predecessors [Wymore, 1967, 1976]. Wymore's approach to systems design is characterized by mathematical rigor, comprehensiveness, and broad applicability. This book is, in some sense; the most complete presentation of his approach, even though it is restricted (contrary to its predecessors) to discrete systems. [....]
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    daviding says: At the 2010 INCOSE Workshop on Autonomous System Testing and Evaluation, Jack Ring cited a "Wymorian approach", which is based on "A mathematical theory of systems engineering: the elements" by A. Wayne Wymore (see http://books.google.ca/books?id=yXrsAAAAIAAJ , unfortunately without a full preview). This may be at the foundations of the current interest in MBSE at INCOSE as a major initiative. The 1993 book is previewable at http://books.google.ca/books?id=CLgsYC3K2yAC .
David Ing

Hidden Wealth: Science in Service Sector Innovation | The Royal Society | 2009 - 1 views

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    The Royal Society has recently published the findings of a major study on the role of science in services sector innovation. Entitled Hidden Wealth: the contribution of science to service sector innovation , the report highlights the wider significance of science, technology, engineering, and mathematics (STEM) to the services sector, which makes up around three quarters of the UK economy. Hidden Wealth concludes that STEM is deeply embedded within the UK service sectors and has an extensive impact on service innovation processes, which is often hidden. Although STEM is important in services sector innovation now, it is also likely to play an important part in the future of services, as many services are on the cusp of a transition to more personalised and interconnected systems, which will require significant advances in STEM.
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    Excerpt: 6.6.6 A systems-based approach to understanding services. One solution may lie in the wider adoption of systems-based approaches to understanding services. A more systematic approach to studying services should result in better design, management and understanding of services and, at the same time, provide a suitable context in which to integrate disciplines such as social sciences, management science, economics and STEM. These sorts of educational programmes may particularly benefit firms who do not require graduates with deep knowledge in one of the existing disciplines. [p. 61] However, we note that when this has been attempted in the past, as with systems science and complexity theory -- both of which have existed for several decades and have been widely applied in scientific, engineering and social science contexts -- the tendency has been for people to organise themselves into disciplinary silos, with the result that the desired new interdisciplinary approaches have struggled to impose themselves. [pp. 61-62] The emerging Service Science, Manufacturing and Engineering (SSME) or 'Service Science' concept is also intended to join up a broad range of disciplines, but is specifically concerned with ensuring that graduates are better equipped for the workplace. Service Science may ultimately help the development of multi-disciplinary capabilities but in this regard SSME programmes seem to have been slow to emerge and only partially successful to date. A more profitable approach to redesigning academic curricula and delivery (at least as far as services are concerned) may be to focus in on service design, which seeks to understand the delivery of services from a user perspective and to develop better solutions (see Box 4.3 on page 40). Developments such as the Masters course in Service Design, Management and Innovation offered by the University of Manchester Centre for Service Research might provide good models for new courses, and should be closely mon
David Ing

New skills required - enter "services science" as a new discipline | Eamonn Kennedy and... - 0 views

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    The original pointer to this report summary is from Jim Spohrer at http://forums.thesrii.org/srii/blog/article?blog.id=main_blog&message.id=191#M191 .
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    Key messages * There are three primary stakeholder groups that can guide the development of services science: academia, government and industry. Only by investing and working together in a coordinated manner can the maximum promise of services science be realised. * The global recession should sharpen government and industry's focus on services science as they seek solutions to invigorate the western economy, to make business more competitive and to learn from this latest setback. * Services science has the potential to establish a new industry of professionals (compare engineers, lawyers and computer scientists) whose expertise can be drawn upon to benefit the broader services-led economy. * The degree of human intervention required during the lifetime of an IT services contract is too high and is consequently both too expensive to be efficient and too error-prone to be effective. These shortcomings are directly related to the absence of scientific rigour in the design and delivery of these services. * IT is integral to services science, since modern service systems often have IT enablement heavily involved in service delivery. * IT service providers have the potential to benefit from services science by making their offerings more meaningful and resilient in a market that will increasingly demand more efficient service delivery. * Innovation in services delivery is at the heart of the vision for services science. The end goal should be a virtuous circle of innovation that can encourage new business opportunities and, in turn, create further innovation in the delivery of services. * Collaboration, investment and sharing of knowledge are vital to progressing services science research and development. * Significant challenges still need to be overcome to drive adoption of services science, not least of which is the complexity of aligning academic, business and governmental interests at a given moment in time. * Gove
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