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    • 8. 发明申请
    • PHYSICAL LAYER PHOTONIC PROTOCOL SWITCH
    • 物理层光电协议开关
    • US20120110184A1
    • 2012-05-03
    • US12915505
    • 2010-10-29
    • Brian L. UhlhornHoward J. Schantz
    • Brian L. UhlhornHoward J. Schantz
    • G06F15/16H04L29/06
    • H04Q11/0005H04L41/0803H04L41/0893H04L41/12H04Q2011/0009H04Q2011/0015H04Q2011/0016H04Q2011/0039
    • A physical layer photonic protocol switch (PLPPS) that is protocol independent and switches at the optical signal level. Computing subsystem resources are linked to the PLPPS and are grouped into one or more logical system topologies. If needed, additional computing subsystem resources can be allocated to the logical system topology, during runtime. The PLPPS provides the ability to dynamically allocate computing subsystem resources to specific computing enclaves. The PLPPS manages the configuration of and controls access to the computing subsystem resources. Computing resources can then be assigned to specific logical system topologies and additional computing subsystem resources are able to be shared, added or removed, from other logical system topologies, as needs fluctuate. This physical layer switch architecture creates a dynamic computing infrastructure allowing for the sharing of a single computing subsystem resource amongst two or more logical system topologies.
    • 一种物理层光子协议交换(PLPPS),它是协议独立的,并在光信号级切换。 计算子系统资源链接到PLPPS,并分为一个或多个逻辑系统拓扑。 如果需要,可以在运行时间内将额外的计算子系统资源分配给逻辑系统拓扑。 PLPPS提供了将计算子系统资源动态分配给特定计算机飞地的能力。 PLPPS管理对计算子系统资源的配置和控制访问。 然后,随着需求波动,计算资源可以被分配给特定的逻辑系统拓扑,并且额外的计算子系统资源能够被从其它逻辑系统拓扑共享,添加或移除。 该物理层交换机架构创建动态计算基础设施,允许在两个或多个逻辑系统拓扑之间共享单个计算子系统资源。
    • 10. 发明授权
    • Optical code division multiple access data storage and retrieval
    • 光码分多址数据存储和检索
    • US07792427B1
    • 2010-09-07
    • US11343094
    • 2006-01-30
    • Brian L. UhlhornHoward J. Schantz
    • Brian L. UhlhornHoward J. Schantz
    • H04J4/00H04B10/06
    • H04J14/005
    • An OCDMA system is disclosed that provides for storage and retrieval of OCDMA data while maintaining OCDMA encoding and signaling information. The system includes a wavelength demultiplexer that optically receives an OCDMA signal having a plurality of wavelengths of light. A plurality of light detectors is optically interconnected with the wavelength demultiplexer, with each of the light detectors being associated with a unique wavelength of light. Each of the light detectors respectively communicates with a plurality of storage volumes. For example, each storage volume is associated with a unique wavelength of light and is configured for storing optical data electronically converted from an optical data stream having a unique wavelength of light. Such a process may substantially eliminate the need for OCDMA conversion during electronic storage of the OCDMA data. Stored OCDMA data may be rapidly retrieved and configured as an OCDMA signal because OCDMA coding is maintained.
    • 公开了一种OCDMA系统,其提供OCDMA数据的存储和检索,同时保持OCDMA编码和信令信息。 该系统包括光学地接收具有多个波长的光的OCDMA信号的波长解复用器。 多个光检测器与波长解复用器光学互连,每个光检测器与唯一的光波长相关联。 每个光检测器分别与多个存储体进行通信。 例如,每个存储卷与唯一的光波长相关联,并且被配置为存储从具有独特波长的光的光数据流电子转换的光数据。 这样的过程可以基本上消除在OCDMA数据的电子存储期间对OCDMA转换的需要。 存储的OCDMA数据可以被快速检索并被配置为OCDMA信号,因为维持OCDMA编码。