首页> 外文会议>Conference on Real-Time Imaging VIII; 20040120-20040122; San Jose,CA; US >Advanced Real-Time Bus System for Concurrent Data Paths Used in High-Performance Image Processing
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Advanced Real-Time Bus System for Concurrent Data Paths Used in High-Performance Image Processing

机译:用于高性能图像处理的并发数据路径的高级实时总线系统

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In this paper we present a new bus protocol satisfying extreme real time demands. It has been applied to a high performance quality inspection system which can involve up to eight sensors of various types. Thanks to the modular configuration this multi-sensor inspection system acts on the outside as a single sensor image processing system. In general, image processing systems comprise three basic functions (ⅰ) image acquisition, (ⅱ) image processing and (ⅲ) output of processed data. The data transfers for these three fundamental functions can be accomplished either by individual bus systems or by a single bus. In case of using a single bus the system complexity of the implementation, i.e. Development of protocols, hardware employment and EMC technical considerations, is far smaller. An important goal of the new protocol design is to support extremely fast communication between individual processing modules. For example, the input data (image acquisition) is transferred in real time to individual processing modules. Concurrent to this communication the processed data are being transferred to the output module. Therefore, the key function of this protocol is to realize concurrent data paths (data rates over 1.2 Gbit/s) by using principles of pipeline architectures and methods of time division multiplex. Moreover, the new bus protocol enables concurrent data transfers via a single bus system. In this paper the function of the new bus protocol including hardware layout and innovative bus arbiter are described in details.
机译:在本文中,我们提出了一种满足极端实时需求的新总线协议。它已被应用于高性能质量检查系统,该系统最多可包含八个不同类型的传感器。由于采用了模块化配置,该多传感器检查系统在外部充当了单个传感器图像处理系统。通常,图像处理系统包括三个基本功能:图像获取,图像处理和处理数据的输出。这三个基本功能的数据传输可以通过单个总线系统或单个总线来完成。在使用单个总线的情况下,实现的系统复杂性,即协议的开发,硬件使用和EMC技术考虑因素要小得多。新协议设计的一个重要目标是支持各个处理模块之间的超快速通信。例如,输入数据(图像采集)实时传输到各个处理模块。与此通信同时,已处理的数据将被传输到输出模块。因此,该协议的关键功能是利用流水线架构原理和时分复用方法实现并发数据路径(数据速率超过1.2 Gbit / s)。此外,新的总线协议允许通过单个总线系统进行并发数据传输。本文详细描述了新总线协议的功能,包括硬件布局和创新的总线仲裁器。

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