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帧缓冲的英文

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"帧缓冲"怎么读用"帧缓冲"造句

英文翻译手机手机版

  • buffering, frame
  • fb frame buffer
  • frame buffering
  • framebuffer

例句与用法

  • Fbc frame buffer cache
    帧缓冲缓存
  • Fbc frame buffer cache
    帧缓冲缓存
  • Front frame buffer
    前台帧缓冲
  • Video memory error . the bios cannot write to the frame buffer memory on the video card
    图像内存错误。 bios不能够写显卡帧缓冲内存。
  • This painting involves fetching data from the frame buffer and converting that digital pixel data into a stream of analog signals that the monitor can understand
    这个过程包括从帧缓冲中取数据然后将数据冲数字信号转换成模拟信号,传送给显示器。
  • Then it studies the implementation , architecture and characteristic of embedded guis based on framebuffer , designs testing programs to test several embedded gui system ' s performances ( stability , efficiency ) , and finally chooses qt / embedded as the development platform of the bsas . chapter 3 firstly briefly describes the embedded system hardware architecture , and then enumerates functions of system software
    在分析了若干种基于帧缓冲( framebuffer )的嵌入式gui的实现、体系结构和特点的基础上,设计了测试程序对比它们在稳定性、绘图速率等方面的性能,最终选择qt embedded作为嵌入式系统软件开发平台。
  • Moreover , video control program to implement internal function of fpga is designed including video capture time sequence control , ping - pang frame buffer read and write time sequence control and lcd display time sequence control , and program ' s simulation and analysis is also provided . at last , this paper presents a portable iv ' s video processing system , and proposes three buffer strategy to control capture buffer . and a moving object detection algorithm of combing an adaptive background subtraction technique with a three - frame differencing is adopted
    设计了基于fpga系统结构的车载视频显示电路板;利用单片机io口模拟i2c时序,实现了视频解码芯片控制;利用fpga实现视频控制,研究了采集通道时序控制、双帧存ram读写时序控制及lcd显示时序控制的方法,并进行了软件仿真和分析;设计了车载视频检测系统方案,给出了管理采集缓冲区的三帧缓冲策略,采用综合三帧差分和自适应背景相减的算法实现运动检测,连通体检测去除虚目标,仿真实验证明其有效性,同时分析了该算法在dsp视频检测系统中的简单实现方法。
  • The hardware design is expounded in chapter 3 , which include four parts . then we focus on how to merge them together in chapter 4 , that is , porting linux to mc9328mx1 , this includes several parts , the first part is flashloader which can be used to download programs ; and then , give out develop model of start - up guide code ( bootloader ) which runs before linux kernel and linux kernel ' s start - up analysis , also porting them to arm9 mx1 ; thirdly , we realizes the porting of lcd framebuffer driver based on deeply grasped linux device driver model ; fourthly , the rootfs ( file system ) ? ? cramfs is designed . then we give an example that based on the embedded linux in chapter 5 , what we call automobile navigation , and discuss how to develop with our arm linux to meet the need of application , too
    第一章回顾gps导航系统的发展状况,指出课题研究背景及主要工作;第二章阐述嵌入式系统的概念、组成、开发流程及调试方法,构建车载导航系统开发平台;第三章介绍导航系统的硬件设计,包括主控模块、组合导航模块、防盗通讯模块和人机交互模块四大部分;第四章详细描述移植linux到mx1开发板的过程,包括:交叉编译环境的建立、下载程序( flashloader )的实现、启动引导加载代码bootloader设计与移植、 linux内核的启动分析及移植到硬件平台的整个过程、 linux驱动模型的深入的分析及lcd帧缓冲显示设备驱动的移植、根文件系统的构建等;第五章以嵌入式linux操作系统在车载导航中的应用为实例,介绍嵌入式系统软件的设计与实现,通过论述gps车载导航系统中定位模块的开发过程,探讨了基于arm & linux平台的应用开发。
  • In order to deal with those problems above , a video surveillance scheme based on dsps was presented , which used high performance dsps to replace pc as central control unit . not only did we realize the hardware circuits of the system , but also we developed it ' s software . furthermore , three essential methods , for instance the data transfer method by extend direct memory access ( edma ) , buffer management method by three buffer strategy and optimized data acquire method had been discussed
    为了弥补这些不足,论文采用高性能的dsps取代传统的pc作为核心处理器,设计了一种基于dsps的交通视频监控系统的图像处理平台,详细的对其硬件实现和软件调试进行了论述;在这个基础上分析了视频图像采集和处理的流程,讨论了一种利用edma的实时后台传输数字视频方法和三帧缓冲的存储器管理方法,为系统的实时性提供了保障。
用"帧缓冲"造句  

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