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机构地区:[1]黄河科技学院
出 处:《激光杂志》2018年第3期133-136,共4页Laser Journal
基 金:河南省基础与前沿技术研究计划项目(No.162300410193)
摘 要:为了提高激光通信数据的采集能力,进行激光智能传感器设计,实现激光信号采集和优化传输,提出一种基于微机控制技术的激光智能传感器设计方法。激光智能传感器主要分为用户界面模块、数据处理模块、可视化模块,采用Linux作为微机嵌入式内核,在不同体系架构的CPU中进行微机控制,采用以S3C2440微处理器为控制和运算核心的Micro2440核心板进行激光智能传感器的ARM系统平台设计。硬件设计部分主要完成了时钟系统,调试测试接口,复位系统,存储器系统,电源系统的开发和设计。系统测试结果表明,本文设计的激光智能传感器对数据信息采集的实时性较好,波束抗干扰能力较强,具有低功耗和高集成度的优点。In order to improve the ability of data acquisition of laser communication, the design of laser intelligent sensor, laser signal acquisition and transmission optimization, proposed a laser intelligent sensor design method based on microcomputer control technology. The laser is divided into user interface module, data processing module and visu- alization module. Using Linux as the kernel of the embedded microcomputer to control microcomputer in different ar- chitectures of CPU. Design ARM system platform of laser intelligent sensor based on Micro2440 core board with $3C2440 microprocessor as the control and operation. The hardware design mainly completes the system clock, debug- ging interface, reset system, memory system, and the design and development of power system. The test results show that this design has good real-time data acquisition ability, strong anti-interference ability of beam. And it has the ad- vantages of low power consumption and high integration.
关 键 词:微机控制 激光 智能传感器 嵌入式内核 ARM系统
分 类 号:TN247[电子电信—物理电子学]
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