Tümleşik ajana dayalı bir yazılım mühendisliği metodolojisine doğru

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2018

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Software Engineering
(2005)
Department of Software Engineering was founded in 2005 as the first department in Ankara in Software Engineering. The recent developments in current technologies such as Artificial Intelligence, Machine Learning, Big Data, and Blockchains, have placed Software Engineering among the top professions of today, and the future. The academic and research activities in the department are pursued with qualified faculty at Undergraduate, Graduate and Doctorate Degree levels. Our University is one of the two universities offering a Doctorate-level program in this field. In addition to focusing on the basic phases of software (analysis, design, development, testing) and relevant methodologies in detail, our department offers education in various areas of expertise, such as Object-oriented Analysis and Design, Human-Computer Interaction, Software Quality Assurance, Software Requirement Engineering, Software Design and Architecture, Software Project Management, Software Testing and Model-Driven Software Development. The curriculum of our Department is catered to graduate individuals who are prepared to take part in any phase of software development of large-scale software in line with the requirements of the software sector. Department of Software Engineering is accredited by MÜDEK (Association for Evaluation and Accreditation of Engineering Programs) until September 30th, 2021, and has been granted the EUR-ACE label that is valid in Europe. This label provides our graduates with a vital head-start to be admitted to graduate-level programs, and into working environments in European Union countries. The Big Data and Cloud Computing Laboratory, as well as MobiLab where mobile applications are developed, SimLAB, the simulation laboratory for Medical Computing, and software education laboratories of the department are equipped with various software tools and hardware to enable our students to use state-of-the-art software technologies. Our graduates are employed in software and R&D companies (Technoparks), national/international institutions developing or utilizing software technologies (such as banks, healthcare institutions, the Information Technologies departments of private and public institutions, telecommunication companies, TÜİK, SPK, BDDK, EPDK, RK, or universities), and research institutions such TÜBİTAK.

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Bilgisayar bilimi ve yazılım mühendisliği topluluğu, 1990'lı yıllardan beri bilgi teknolojisi alanında sağlam bir yer edindikleri ve bunu devam ettirmeye başardıkları için bilimde en ilerici ve en önemli alanlardan biri haline gelmiştir. Ajan teknolojileri son yıllarda hızla gelişmiş olup ilgili bilimsel araştırmalarda tavsiye edilen işlem, çalışma alanı ve kavramların sayısı artış göstermiştir. Dolayısıyla ajan teknolojisi, alışveriş simülasyonları, gözetim, sistem hata bulucuları ve onarım prosedürleri dâhil olmak üzere çeşitli alanlarda problem çözme konusunda birçok uygulamaya ve kullanıma sahiptir. Özellikle son yıllarda sürekli büyüyen ilgi ve alaka ile birlikte çeşitli uygulamalarda ajan yaklaşımları artış göstermiştir. Bu yaklaşımlar evrimseldir ve özellikle ajanlar ve onların belirli özellikleri için tasarlanmıştır. Bununla birlikte, çok sayıda ajan odaklı metodolojilerin varlığına rağmen ilgili projelerin geliştirilmesi adına kapsamlı ve tam teşekküllü bir ajan yaklaşımı hâlihazırda mevcut değildir. Bu konuyu dengelemeye yönelik hamlelerden birisi, nesneye dayalı analiz ve tasarım alanında Tümleşik Modelleme Dili'nin evrimi ile karşılaştırılabilir çeşitli mevcut metodolojilere ait modelleri derlemektir.
The computer science and software engineering society have become one of the most progressive and significant domains within science as they have managed to stand firmly in the information technology since the 1990s. Throughout recent years agent technologies have been promoted rapidly and a rising number of processes, frameworks, and notions recommended in related scientific research. In turn, agent technology has many implementations and uses in problem-solving in a variety of areas, including shopping simulations, surveillance, system diagnosis, and remedial procedures. Over the last years, in particular, there has been an increasing number of agent approaches proposed along with an ever-growing interest in their various implementations. These approaches are evolutionary and specifically designed for agents and their particular properties. Yet, a comprehensive and full-fledged agent approach for developing related projects is still absent despite the presence of numerous agent-oriented methodologies. One of the moves towards vi compensating for this issue is to compile the models of various available methodologies, ones that are comparable to the evolution of the Unified Modeling Language in the domain of object-oriented analysis and design. As these to have become defacto standards in software development. In line with this purpose, the present thesis attempts to comprehend the relationship among seven main agent-oriented methodologies. More specifically, we intend to assess and compare these seven approaches by conducting a feature analysis through examining the advantages and disadvantages of each competing process, structural analysis, a case study, and meta-model evaluation methods. This effort is made to address the important characteristics of agent approaches. Since the main objective of this thesis is to take a step forward in forming a unified agent-oriented software engineering methodology, we will include the positive features and avoid the undesired ones within seven distinguished agent methodologies.

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Bilgisayar Mühendisliği Bilimleri-Bilgisayar ve Kontrol, Computer Engineering and Computer Science and Control

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171