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    • 2. 发明申请
    • VIRTUAL INTELLIGENT FABRIC
    • 虚拟智能面料
    • US20090228418A1
    • 2009-09-10
    • US12042967
    • 2008-03-05
    • TIRUMALE K. RAMESHJOHN L. MEIER
    • TIRUMALE K. RAMESHJOHN L. MEIER
    • G06N5/02G06F21/00
    • H04L63/0218H04L63/0263
    • An intelligent distributed computing fabric system may comprise a cognitive element, a computing element, a security element, and a network element. The cognitive element may receive inputs from the computing element, the security element, and the network element, and may further receive external information from a sensor interface. The cognitive element may process the inputs from the computing element, the security element, and the network element, and may additionally process the external information from the sensor interface. The cognitive element may make decisions based on the inputs from the computing element, the security element, and the network element, and based on the external information from the sensor interface, to adapt for dynamically varying situations in a fabric infrastructure. The cognitive element may outputs instructions for actions, based on the dynamic decisions, to the computing element, the security element, and the network element in order to virtually interconnect the computing element, the security element, and the network element. The computing element may transmit inputs to the cognitive element. The computing element may receive the dynamic output instructions from the cognitive element. The computing element may follow the dynamic output instructions as commands from the cognitive element. The security element may receive inputs from the computing element and the network element. The security element may transmit current security policy inputs to the cognitive element. The network element may transmit inputs to the security element and to the cognitive element.
    • 智能分布式计算结构系统可以包括认知元件,计算元件,安全元件和网络元件。 认知元件可以从计算元件,安全元件和网络元件接收输入,并且还可以从传感器接口进一步接收外部信息。 认知元素可以处理来自计算元件,安全元件和网络元件的输入,并且可以另外处理来自传感器接口的外部信息。 认知元素可以基于来自计算元件,安全元件和网络元件的输入,并且基于来自传感器接口的外部信息来做出决策,以适应织物基础设施中的动态变化的情况。 认知元件可以基于动态决策向计算元件,安全元件和网络元件输出用于动作的指令,以便虚拟地互连计算元件,安全元件和网络元件。 计算元件可以将输入传送给认知元素。 计算元件可以从认知元素接收动态输出指令。 计算元件可以遵循动态输出指令作为来自认知元素的命令。 安全元件可以从计算元件和网络元件接收输入。 安全元素可以将当前的安全策略输入传递给认知元素。 网络元件可以向安全元件和认知元件发送输入。
    • 4. 发明授权
    • Virtual intelligent fabric
    • 虚拟智能面料
    • US07996350B2
    • 2011-08-09
    • US12042967
    • 2008-03-05
    • Tirumale K. RameshJohn L. Meier
    • Tirumale K. RameshJohn L. Meier
    • G06N3/08G05B13/00G06F15/16G06F15/18
    • H04L63/0218H04L63/0263
    • An intelligent distributed computing fabric system may comprise a cognitive element, a computing element, a security element, and a network element. The cognitive element may receive inputs from the computing element, the security element, and the network element, and may further receive external information from a sensor interface. The cognitive element may process the inputs from the computing element, the security element, and the network element, and may additionally process the external information from the sensor interface. The cognitive element may make decisions based on the inputs from the computing element, the security element, and the network element, and based on the external information from the sensor interface, to adapt for dynamically varying situations in a fabric infrastructure. The cognitive element may outputs instructions for actions, based on the dynamic decisions, to the computing element, the security element, and the network element in order to virtually interconnect the computing element, the security element, and the network element. The computing element may transmit inputs to the cognitive element. The computing element may receive the dynamic output instructions from the cognitive element. The computing element may follow the dynamic output instructions as commands from the cognitive element. The security element may receive inputs from the computing element and the network element. The security element may transmit current security policy inputs to the cognitive element. The network element may transmit inputs to the security element and to the cognitive element.
    • 智能分布式计算结构系统可以包括认知元件,计算元件,安全元件和网络元件。 认知元件可以从计算元件,安全元件和网络元件接收输入,并且还可以从传感器接口进一步接收外部信息。 认知元素可以处理来自计算元件,安全元件和网络元件的输入,并且可以另外处理来自传感器接口的外部信息。 认知元素可以基于来自计算元件,安全元件和网络元件的输入,并且基于来自传感器接口的外部信息来做出决策,以适应织物基础设施中的动态变化的情况。 认知元件可以基于动态决策向计算元件,安全元件和网络元件输出用于动作的指令,以便虚拟地互连计算元件,安全元件和网络元件。 计算元件可以将输入传送给认知元素。 计算元件可以从认知元素接收动态输出指令。 计算元件可以遵循动态输出指令作为来自认知元素的命令。 安全元件可以从计算元件和网络元件接收输入。 安全元素可以将当前的安全策略输入传递给认知元素。 网络元件可以向安全元件和认知元件发送输入。
    • 6. 发明授权
    • Free space optical data link for aircraft
    • 飞机的空间光学数据链接
    • US07308203B1
    • 2007-12-11
    • US10892008
    • 2004-07-15
    • Steven E. KoenckDavid W. JensenJohn L. Meier
    • Steven E. KoenckDavid W. JensenJohn L. Meier
    • H04B10/10
    • H04B10/118
    • The present invention is a method and system for transmitting data between two objects via a free space optical data link. In an exemplary aspect of the present invention, the method may start with a step in which a laser beam modulated with data is transmitted to the vicinity of an optical collector. The laser beam may be transmitted by a modulated laser transmitter. The laser beam may cause atmospheric nitrogen in the vicinity of the optical collector to fluoresce and emit a set of characteristic line spectra. The set of characteristic line spectra may be received by the optical collector, and at least one characteristic spectral line may be obtained with an optical filter. Preferably, a wavelength of the at least one characteristic spectral line is selected from a group consisting of 3995.00 angstroms, 4630.54 angstroms, 5005.15 angstroms, and 5679.56 angstroms, which have high relative amplitude. The at least one characteristic spectral line may be detected and converted to electrical signal by a photodetector. The electrical signal may be amplified from a small signal to a large signal, and the amplified electrical signal may be processed with a communications receiver to obtain the data.
    • 本发明是一种用于经由自由空间光数据链路在两个对象之间传送数据的方法和系统。 在本发明的示例性方面中,该方法可以以将数据调制的激光束发送到光收发器附近的步骤开始。 激光束可以由调制的激光发射器传输。 激光束可能导致光收发器附近的大气氮发荧光并发出一组特征线谱。 特征线谱的集合可以由光学收集器接收,并且可以用滤光器获得至少一个特征谱线。 优选地,至少一个特征谱线的波长选自具有高相对幅度的3995.00埃,4630.54埃,5005.15埃和5679.56埃。 可以通过光电检测器检测至少一个特征谱线并将其转换为电信号。 电信号可以从小信号放大到大信号,并且放大的电信号可以用通信接收机来处理以获得数据。
    • 10. 发明授权
    • Network centric quality of service using active network technology
    • 以网络为中心的使用主动网络技术的服务质量
    • US07561521B2
    • 2009-07-14
    • US11008372
    • 2004-12-09
    • John L. MeierKent L. EnglishArun AyyagariGuijun Wang
    • John L. MeierKent L. EnglishArun AyyagariGuijun Wang
    • H04L12/26
    • H04L12/5602H04L41/00
    • Systems and methods for improving network centric quality of service using active network technology are disclosed. In one embodiment, a method includes controlling how a packet is passed over at least one of the interfaces using a differentiated services portion of a network management architecture, monitoring a request for a Quality of Service (QoS) level from at least one QoS-aware application, and adjusting at least one service rate of packet travel controlled by the differentiated services portion based on at least one of the requested QoS level and an available bandwidth. In an alternate embodiment, the controlling of how a packet is passed over at least one of the interfaces includes using at least one of a queuing discipline, a class, and a filter.
    • 公开了使用主动网络技术提高网络中心服务质量的系统和方法。 在一个实施例中,一种方法包括使用网络管理架构的差分服务部分来控制分组如何在至少一个接口上传递,从至少一个QoS感知监视对服务质量(QoS)级别的请求 并且基于所请求的QoS等级和可用带宽中的至少一个来调整由所述差分服务部分控制的分组传播的至少一个服务速率。 在替代实施例中,分组在至少一个接口上如何传递的控制包括使用排队规则,类和过滤器中的至少一个。