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Holo-Chidi video concentrator card

机译:Holo-Chidi视频集中器卡

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The Holo-Chidi Video Concentrator Card is a frame buffer for the Holo-Chidi holographic video processing system. Holo-Chidi is designed at the MIT Media Laboratory for real-time computation of computer generated holograms and the subsequent display of the holograms at video frame rates. The Holo-Chidi system is made of two sets of cards - the set of Processor cards and the set of Video Concentrator Cards (VCCs). The Processor cards are used for hologram computation, data archival/retrieval from a host system, and for higher-level control of the VCCs. The VCC formats computed holographic data from multiple hologram computing Processor cards, converting the digital data to analog form to feed the acousto-optic-modulators of the Media Lab's "Mark-Ⅱ" holographic display system. The Video Concentrator card is made of: a High-Speed I/O (HSIO) interface whence data is transferred from the hologram computing Processor cards, a set of FIFOs and video RAM used as buffer for data for the hololines being displayed, a one-chip integrated microprocessor and peripheral combination that handles communication with other VCCs and furnishes the card with a USB port, a co-processor which controls display data formating, and D-to-A Converters that convert digital fringes to analog form. The co-processor is implemented with an SRAM-based FPGA with over 500,000 gates and controls all the signals needed to format the data from the multiple Processor cards into the format required by Mark-Ⅱ. A VCC has three HSIO ports through which up to 500 Megabytes of computed holographic data can flow from the Processor Cards to the VCC per second. A Holo-Chidi system with three VCCs has enough frame buffering capacity to hold up to thirty two 36Megabyte hologram frames at a time. Pre-computed holograms may also be loaded into the VCC from a host computer through the low-speed USB port. Both the microprocessor and the co-processor in the VCC can access the main system memory used to store control programs and data for the VCC. The Card also generates the control signals used by the scanning mirrors of Mark-Ⅱ. In this paper we discuss the design of the VCC and its implementation in the Holo-Chidi system.
机译:Holo-Chidi视频集中器卡是Holo-Chidi全息视频处理系统的帧缓冲区。 Holo-Chidi是在MIT媒体实验室设计的,用于实时计算计算机生成的全息图,并随后以视频帧频显示全息图。 Holo-Chidi系统由两组卡组成-一组处理器卡和一组视频集中器卡(VCC)。处理器卡用于全息图计算,从主机系统进行数据归档/检索以及对VCC进行更高级别的控制。 VCC格式化来自多个全息计算处理器卡的全息数据,将数字数据转换为模拟形式,以馈送给Media Lab的“Mark-Ⅱ”全息显示系统的声光调制器。视频集中器卡由以下部分组成:一个高速I / O(HSIO)接口,用于从全息计算处理器卡传输数据,一组FIFO和视频RAM用作显示全息数据的缓冲区,一个该芯片集成了微处理器和外围组件,可处理与其他VCC的通信并为卡提供USB端口,控制显示数据格式的协处理器以及将数字条纹转换为模拟形式的D-to-A转换器。该协处理器由基于SRAM的FPGA实现,具有超过500,000个门,并控制将来自多个处理器卡的数据格式化为Mark-Ⅱ所需格式的所有信号。 VCC具有三个HSIO端口,每秒最多可通过500个MB的全息计算数据从处理器卡流到VCC。具有三个VCC的Holo-Chidi系统具有足够的帧缓冲能力,一次最多可容纳32个36Mega全息图帧。预先计算的全息图也可以通过低速USB端口从主机加载到VCC中。 VCC中的微处理器和协处理器都可以访问用于存储VCC控制程序和数据的主系统存储器。该卡还生成Mark-Ⅱ扫描镜使用的控制信号。在本文中,我们讨论了VCC的设计及其在Holo-Chidi系统中的实现。

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