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    • 8. 发明申请
    • Peered Content Distribution
    • 对等内容分发
    • US20080120430A1
    • 2008-05-22
    • US11926072
    • 2007-10-28
    • Scott D. Redmond
    • Scott D. Redmond
    • G06F15/16
    • H04L29/06027H04L12/1868H04L65/4084H04L65/602H04L65/80
    • A server/client media file distribution system is provided in which the server system is adapted to receive transmission requests from clients, status information from a network, and protocol information from each client. The server, based upon this information, adaptively transmits a given media file stored therein to one or more clients using the optimal transmission speed and/or network protocol based on the network status information and protocol information. Additionally, the present invention provides a looping file arrangement in which a plurality of clients can receive the same media file on multiple network channels, without the need to provide multiple copies of the same media file for each request of that file.
    • 提供了服务器/客户端媒体文件分发系统,其中服务器系统适于从客户端接收传输请求,来自网络的状态信息和来自每个客户端的协议信息。 基于该信息,服务器基于网络状态信息和协议信息,使用最佳传输速度和/或网络协议自适应地将存储在其中的给定媒体文件发送到一个或多个客户端。 另外,本发明提供一种循环文件布置,其中多个客户端可以在多个网络信道上接收相同的媒体文件,而不需要为该文件的每个请求提供相同媒体文件的多个副本。
    • 10. 发明授权
    • Solid-state hydrogen storage systems
    • 固态储氢系统
    • US07279222B2
    • 2007-10-09
    • US10851313
    • 2004-05-21
    • Andrew K. HearleyScott D. Redmond
    • Andrew K. HearleyScott D. Redmond
    • B32B18/00
    • B82Y30/00B22F1/0018B22F9/082B22F2998/00B22F2999/00C01B3/0078C01P2004/64Y02E60/327Y10S420/90Y10T428/2982Y10T428/2991B22F3/1208B22F2202/13
    • Improved hydrogen storage materials are disclosed. A first material comprises a hydrogen storage nanomaterial that contains nanoparticles or nanoparticle clusters of a metal that is capable of combining with hydrogen to form a metal hydride. The nanomaterials may be formed using a thermal spray process. A second material comprises a micro-sized support that contains a hydrogen storage material deposited thereon. The hydrogen storage material may comprise a thermal spray deposit formed on a fly ash particle. A third material comprises a hydrogen permeable container having a hydrogen storage material therein. The container may comprise a microparticle having an internal void (e.g., a fly ash cenosphere or glass microsphere) containing a hydrogen storage material that has been permeated therein. Alternatively, the container may comprise an enclosing layer formed over a hydrogen storage material. The enclosing layer may be a deposited protective layer formed over a particle of a hydrogen storage material.
    • 公开了改进的储氢材料。 第一种材料包括含有可与氢结合以形成金属氢化物的金属的纳米颗粒或纳米颗粒簇的储氢纳米材料。 纳米材料可以使用热喷涂方法形成。 第二种材料包括含有沉积在其上的储氢材料的微尺寸载体。 储氢材料可以包括形成在飞灰颗粒上的热喷涂沉积物。 第三种材料包括其中具有储氢材料的氢渗透性容器。 容器可以包括具有内部空隙(例如,飞灰碳粉或玻璃微球)的微粒,其含有已经渗透在其中的储氢材料。 或者,容器可以包括形成在储氢材料上的封闭层。 封闭层可以是在储氢材料的颗粒上形成的沉积保护层。