2007Unpublished venueRequires access

Design methodology and hands-on practices for Embedded Operating Systems

Yu‐Lun Huang, Jwu‐Sheng Hu

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Abstract

Operating systems play an important role in interacting with hardware and software, while embedded operating systems deal more with hardware-specific functions, optimization and customization. To emphasize the education in embedded operating systems, in this paper, we present the design methodologies of two courses in this area: Embedded Operating Systems and Real-Time Embedded Operating Systems for SoC. The former course focus on the basic concepts of embedded kernel primitives. The latter one emphasizes more on the insight of the real-time kernel and its scheduling protocols. Both courses consist of comprehensive hands-on practices to provide students more opportunities to fully participate in this blooming field.

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What this paper is about

Operating systems play an important role in interacting with hardware and software, while embedded operating systems deal more with hardware-specific functions, optimization and customization. To emphasize the education in embedded operating systems, in this paper, we present the design methodologies of two courses in this area: Embedded Operating Systems and Real-Time Embedded Operating Systems for SoC. The former course focus on the basic concepts of embedded kernel primitives. The latter one emphasizes more on the insight of the real-time kernel and its scheduling protocols. Both courses consist of comprehensive hands-on practices to provide students more opportunities to fully participate in this blooming field.

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Available abstract

Operating systems play an important role in interacting with hardware and software, while embedded operating systems deal more with hardware-specific functions, optimization and customization. To emphasize the education in embedded operating systems, in this paper, we present the design methodologies of two courses in this area: Embedded Operating Systems and Real-Time Embedded Operating Systems for SoC. The former course focus on the basic concepts of embedded kernel primitives. The latter one emphasizes more on the insight of the real-time kernel and its scheduling protocols. Both courses consist of comprehensive hands-on practices to provide students more opportunities to fully participate in this blooming field.

Key concepts: Embedded operating system, Computer science, Personalization, Embedded system, Kernel (algebra), Scheduling (production processes), Operating system, Embedded software

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