"系统工程教材综述与学习指南:系统工程第一章PPT学习教案"。
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Systems Engineering is a multidisciplinary field that focuses on designing and managing complex systems throughout their life cycles. The course on Systems Engineering covers various aspects such as system modeling, optimization techniques, decision-making processes, and risk management. The course is divided into 30 hours of study with 2 credits. The recommended textbooks for the course include "Introduction to System Engineering" by Andre P. Sage from George Mason University and "Introduction to Operation Research" by Prof. Hiller from Stanford University. In addition, students are encouraged to refer to "系统工程教程" by 喻湘存, 熊曙初, and 清华大学出版社, as well as "系统工程" by 汪应洛 from 机械工业出版社 for a comprehensive understanding of Systems Engineering principles. The course assessment includes normal testing, with answers to be provided in English for evaluation. Throughout the course, students will gain a deep insight into systems thinking, problem-solving strategies, and the application of engineering principles to develop innovative solutions for complex systems. Chapter 1 of the course introduces students to the fundamental concepts of Systems Engineering, such as the definition of systems, system components, and the system lifecycle. Students will learn about the importance of systems thinking in analyzing and designing complex systems, as well as the role of Systems Engineers in integrating different disciplines to achieve optimal system performance. Overall, the course offers a holistic approach to Systems Engineering, emphasizing the importance of collaboration, communication, and critical thinking in solving complex engineering problems. By the end of the course, students will be equipped with the necessary skills and knowledge to approach real-world engineering challenges with a systematic and integrated approach.
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