This book focuses on the design of Robotic Flexible Assembly Cell (RFAC) with multi-robots. Its main contribution consists of a new effective strategy for scheduling RFAC in a multi-product assembly environment, in which dynamic status and multi-objective optimization problems occur. The developed strategy, which is based on a combination of advanced solution approaches such as simulation, fuzzy logic, system modeling and the Taguchi optimization method, fills an important knowledge gap in the current literature and paves the way for future research towards the goal of employing flexible assembly systems as effectively as possible despite the complexity of their scheduling.
This book takes a closer look at the relation between current issues and trends in higher education and scientific research in the Arab World and in the Gulf Cooperation Council (GCC) states of Qatar and United Arab Emirates (UAE). This thoroughly researched text traces the development of higher education in the GCC area as it continues to be positioned in an intersection of international and local factors. The text further articulates the pivotal political and cultural influences that act as real and perceived barriers towards the advancement of key fields. The chapters analyze the current policy trends, structures, and coping alternatives in addressing higher education challenges, whilst also providing comparative first-hand texts with the other Arab states in the region. By drawing focus on the GCC area, the text identifies the crucial factors that hamper learning and research performance. The book serves as an invaluable discussion on the implications for policy makers and HEIs in relation to the eponymous regions and other Arab states in the GCC area. Enhancing understanding of the scope, scale, and complexity of higher education and scientific research in the GCC area, the book will be of interest to academics, researchers, and post-graduate students in the fields of educational policy, comparative and international education and higher education.
This book focuses on the design of Robotic Flexible Assembly Cell (RFAC) with multi-robots. Its main contribution consists of a new effective strategy for scheduling RFAC in a multi-product assembly environment, in which dynamic status and multi-objective optimization problems occur. The developed strategy, which is based on a combination of advanced solution approaches such as simulation, fuzzy logic, system modeling and the Taguchi optimization method, fills an important knowledge gap in the current literature and paves the way for future research towards the goal of employing flexible assembly systems as effectively as possible despite the complexity of their scheduling.
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