论文标题
带有PCIE界面的新颖数码相机
Novel Digital Camera with the PCIe Interface
论文作者
论文摘要
数码相机通常用于大规模物理实验中的诊断目的。典型的图像诊断系统由光学设置,数码相机,框架抓取器,图像处理CPU和数据分析工具组成。成像系统的标准体系结构具有许多缺点。从相机传输的数据被多次缓冲,必须在各种协议之间转换,然后才能最终传输到主机存储器。这样的架构使系统非常复杂,限制了其性能,因此提高了价格。这些限制对于实时运行的控制或保护系统更为重要。现代百万像素摄像头会产生大型数据吞吐量,容易超过10 GB/s,这通常需要在主机侧进行一些额外的处理。最佳系统体系结构应确保数据传输和处理的高度效果。在从多个成像设备的数据流处理过程中,这一点尤其重要,每秒可能高达几个Terabits。提出了基于PCI Express界面的图像采集和处理系统的新型结构,以满足大型物理实验中应用的实时成像系统的要求。该体系结构允许将图像流直接从相机传输到数据处理单元,因此大大降低了开销并改善了性能。
Digital cameras are commonly used for diagnostic purposes in large-scale physics experiments. A typical image diagnostic system consists of an optical setup, digital camera, frame grabber, image processing CPU, and data analysis tool. The standard architecture of the imaging system has a number of disadvantages. Data transmitted from a camera are buffered multiple times and must be converted between various protocols before they are finally transmitted to the host memory. Such an architecture makes the system quite complicated, limits its performance and, in consequence, increases its price. The limitations are even more critical for control or protection systems operating in real-time. Modern megapixel cameras generate large data throughput, easily exceeding 10 Gb/s, which often requires some additional processing on the host side. The optimal system architecture should assure low overhead and high performance of the data transmission and processing. It is particularly important during the processing of data streams from several imaging devices, which can be as high as several terabits per second. A novel architecture of image acquisition and processing system based on the PCI Express interface was proposed to meet the requirements of real-time imaging systems applied in large-scale physics experiments. The architecture allows to transfer an image stream directly from the camera to the data processing unit and therefore significantly decreases the overhead and improves performance.