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This course is part of Introduction to Systems Engineering Specialization
Instructor: William Van Atten
2,090 already enrolled
Included with
(23 reviews)
Recommended experience
Beginner level
Completion of The Need for Systems Engineering, the first course in the Introduction to Systems Engineering specialization, is recommended.
(23 reviews)
Recommended experience
Beginner level
Completion of The Need for Systems Engineering, the first course in the Introduction to Systems Engineering specialization, is recommended.
Describe the core roles and responsibilities of a systems engineer
Define a system including its specifications, requirements, and functions
Identify decision support approaches
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In this course, you will learn what a systems engineer does. Following the conceptual foundations from The Need for Systems Engineering, you will perform requirements analysis and functional analysis on engineering programs. You will learn how to perform a trade study using a methodical, quantitative approach that is universal in application. This course also covers preparing design reviews, focusing on coordinating the inputs of multiple engineering disciplines into a cohesive description of the design approach.
This course can be taken for academic credit as part of CU Boulder’s Master of Engineering in Engineering Management (ME-EM) degree offered on the Coursera platform. The ME-EM is designed to help engineers, scientists, and technical professionals move into leadership and management roles in the engineering and technical sectors. With performance-based admissions and no application process, the ME-EM is ideal for individuals with a broad range of undergraduate education and/or professional experience. Learn more about the ME-EM program at https://www.coursera.org/degrees/me-engineering-management-boulder.
We will begin the course by revisiting the topic of requirements. Now that we know what requirements are and how to write them, we will examine what requirements management is all about. On a long-duration development program, we also need a way to measure our progress from a technical standpoint toward requirement compliance. A great tool for this is to think of it in terms of Measures of Performance. At the tactical level on a design team, we will execute that by establishing a small number of Technical Performance Measures, or TPMs. These important performance attributes will keep the design team focused on the customer's most important requirements and they will help assess our progress toward meeting those objectives.
6 videos4 readings1 assignment1 peer review1 discussion prompt
In this module, will begin by describing the overall design process by tying in the concepts that we have learned to date into something that can be planned and tracked during execution. We will then learn about the "Big Three" design reviews, namely the System Requirements Review, or SRR; the Preliminary Design Review, or PDR; and the Critical Design Review, or CDR. In addition to the reviews, the Systems Engineering process also incorporates a series of audits to ensure that the documentation is all squared away. The most commonly used audits are the Functional and Physical Configuration Audits, the FCA and PCA.
4 videos3 readings2 assignments
In this module, we will go over the topic of manufacturability. How do incorporate manufacturability considerations into the design process? It is considered so important that it has its own acronym, DFM, or Design for Manufacturability. We will also cover the process used for evaluating how ready a company is to scale up from low-volume development to high-volume production. In the second part of the module, we will learn about trade studies and how to conduct one.
5 videos3 readings2 assignments
In this module, we are going to learn about what I call the "other engineering disciplines." I am going to group Software into this very loosely defined umbrella title with the hopes that I don't earn the ire of those who have chosen that as their profession. Rhis is more a sign of my own lack of close familiarity with the discipline. I have learned that managing development programs that include a significant software effort deserves special consideration when it comes to coordinating software development with hardware development and properly allocating time and resources to get both sides of the development effort completed. I will also cover what I call "the -illities" or the engineering disciplines like Reliability, Maintainability and others. I may even work in a few F/A-18 stories along the way!
2 videos3 readings1 assignment
In this final module, we will look at how our most precious asset, our people, are assigned to a particular design effort. What are some of the important considerations that go into those decisions. We will also look at some of my favorite leadership traits from my time in the Marine Corps and how those can be applied to working in the aerospace industry. Systems Engineering is by nature a leadership role, at least at certain times, so it is important to think about leadership well before the moment we find ourselves in the spotlight.
2 videos3 readings1 assignment
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This course is part of the following degree program(s) offered by University of Colorado Boulder. If you are admitted and enroll, your completed coursework may count toward your degree learning and your progress can transfer with you.¹
This course is part of the following degree program(s) offered by University of Colorado Boulder. If you are admitted and enroll, your completed coursework may count toward your degree learning and your progress can transfer with you.¹
University of Colorado Boulder
Degree · 24 months
¹Successful application and enrollment are required. Eligibility requirements apply. Each institution determines the number of credits recognized by completing this content that may count towards degree requirements, considering any existing credits you may have. Click on a specific course for more information.
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