In this paper, a multi-functional development platform for flat panel display (FPD) development is proposed. With the proposed development platforms, a variety of FPD devices, including organic light-emitting diode ...In this paper, a multi-functional development platform for flat panel display (FPD) development is proposed. With the proposed development platforms, a variety of FPD devices, including organic light-emitting diode (OLED) screens, liquid crystal display (LCD) screens with touchscreens, OLED microdisplay screens, etc., can be directly and instantly connected, examined and utilized. A field-programmable gate array (FPGA) is used in the development system to drive different types of FPD devices, and ARM11S3C6410 is used as the application processor to provide various services. The development system uses Linux as the system kernel, Qt for Embedded Linux as the UI framework, various system libraries for video and audio services, and a custom-made user engine for fine-polished appearance and behavior. The development platform has been used not only in testing and verification of the FPD devices, but also in building OLED-powered handheld digital devices, shortening the development cycle from OLED devices to mature application products.展开更多
提出一种简化的核密度估计模型KDE(Kernel Density Estimation)动态背景建模算法,构建了基于ARM11的视频动态背景分割系统。不仅能大幅度降低传统KDE背景建模的所需的运算量和存储量,提高处理速度,而且还具有良好的运动前景分割效果。...提出一种简化的核密度估计模型KDE(Kernel Density Estimation)动态背景建模算法,构建了基于ARM11的视频动态背景分割系统。不仅能大幅度降低传统KDE背景建模的所需的运算量和存储量,提高处理速度,而且还具有良好的运动前景分割效果。系统完成了视频动态背景的建模、运动前景分割、视频显示、图片压缩保存等功能,具有较好的性价比。展开更多
基金supported by the Key Laboratory of Advanced Display and System Application(Shanghai University),Ministry of Education,China(Grant No.P200803)the Postgraduate Innovation Foundation of Shanghai University(Grant No.SHUCX112372)
文摘In this paper, a multi-functional development platform for flat panel display (FPD) development is proposed. With the proposed development platforms, a variety of FPD devices, including organic light-emitting diode (OLED) screens, liquid crystal display (LCD) screens with touchscreens, OLED microdisplay screens, etc., can be directly and instantly connected, examined and utilized. A field-programmable gate array (FPGA) is used in the development system to drive different types of FPD devices, and ARM11S3C6410 is used as the application processor to provide various services. The development system uses Linux as the system kernel, Qt for Embedded Linux as the UI framework, various system libraries for video and audio services, and a custom-made user engine for fine-polished appearance and behavior. The development platform has been used not only in testing and verification of the FPD devices, but also in building OLED-powered handheld digital devices, shortening the development cycle from OLED devices to mature application products.
文摘提出一种简化的核密度估计模型KDE(Kernel Density Estimation)动态背景建模算法,构建了基于ARM11的视频动态背景分割系统。不仅能大幅度降低传统KDE背景建模的所需的运算量和存储量,提高处理速度,而且还具有良好的运动前景分割效果。系统完成了视频动态背景的建模、运动前景分割、视频显示、图片压缩保存等功能,具有较好的性价比。