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Work in progress - multi-disciplinary real-time and systems laboratory and course sequence

机译:正在进行的工作-多学科实时和系统实验室以及课程顺序

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Small electronic products for the mass market are increasingly incorporating programmable components. The software in these devices has constraints that are markedly different from software designed for a general-purpose computer. Most computing curricula deal almost exclusively with developing software for that general-purpose class. Real-time and embedded systems have increased in complexity; they no longer lie within a single discipline. Developers now must be cognizant of software engineering design methodologies and underlying hardware constraints. RIT is addressing this by developing a three-course sequence of cross-disciplinary real-time and embedded systems courses. We are teaching these courses in a studio-lab environment teaming computer engineering and software engineering students. The courses introduce students to programming both microcontrollers and more sophisticated targets, use of a commercial real-time operating system and development environment, modeling and performance engineering of these systems, and their interactions with physical systems.
机译:面向大众市场的小型电子产品越来越多地包含可编程组件。这些设备中的软件具有与为通用计算机设计的软件明显不同的约束。大多数计算课程几乎都只处理针对该通用类的软件开发。实时和嵌入式系统的复杂性有所增加。他们不再属于单一学科。开发人员现在必须意识到软件工程设计方法论和底层硬件约束。 RIT通过开发三门课程的跨学科实时和嵌入式系统课程来解决这一问题。我们正在工作室环境中结合计算机工程和软件工程专业的学生来教授这些课程。这些课程向学生介绍如何对微控制器和更复杂的目标进行编程,使用商业实时操作系统和开发环境,这些系统的建模和性能工程以及它们与物理系统的交互。

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