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出 处:《仪器仪表学报》2007年第5期843-848,共6页Chinese Journal of Scientific Instrument
基 金:安徽省科技厅重点科技公关项目(04022076);安徽省教育厅自然科学研究项目(2006KJ064B)资助
摘 要:针对传统单片机系统不具备现代操作系统管理功能的不足,本文提出并实现了一种基于32位嵌入式微处理器S3C44BOX和μC/OS-Ⅱ实时操作系统内核的交流同步采样方法。该方法将采样过程分为频率动态跟踪和等间隔同步采样两部分,分别由优先级不同的多个任务完成信号采样和数据处理,任务由抢占式的μC/OS-Ⅱ统一调度管理,较好地解决了精确性和实时性的矛盾。本文详细介绍了测量装置的硬件、软件构成以及基于μC/OS-Ⅱ的实时操作系统建立方法、信号频率检测、信号采样、谐波分析等。Aiming at the deficiency of traditional single chip microcomputer system that doesn' t have the management ability of modem operating systems, an AC synchronous sampling technology was proposed and implemented, which is based on 32-bit embedded microprocessor S3C44BOX and μC/OS-Ⅱ real-time operating system kernel. This technology divides the sampling process into 2 parts, frequency dynamic tracking and equal-interval synchronous sampling. The multi-tasks that have different priorities are used to carry out signal sampling and data processing. All tasks are scheduled by the preemptive μC/OS-Ⅱ kernel. The technology has decreased the conflict between precision and real-time property. The structure of hardware and software, method of implementing real-time operating system based on μC/OS-Ⅱ kernel, signal frequency measurement, signal sampling and harmonic analysis are introduced in detail.
分 类 号:TP216[自动化与计算机技术—检测技术与自动化装置]
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