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    • 4. 发明授权
    • Service processing method and system, and policy control and charging rules function
    • 服务处理方法和系统,策略控制和计费规则功能
    • US08601125B2
    • 2013-12-03
    • US12564558
    • 2009-09-22
    • Shibi HuangPeng ZhaoYuxin MaoShiyong TanYan LiWeihua Wei
    • Shibi HuangPeng ZhaoYuxin MaoShiyong TanYan LiWeihua Wei
    • G06F15/173
    • H04L47/2433H04L12/14H04L12/66H04L41/0893H04L41/0896H04L41/5003H04M15/66
    • A service processing method, a service processing system, and a PCRF entity are disclosed to overcome this defect in the prior art: The prior art is unable to handle services discriminatively according to the policy context information when different services require the same QoS level. The method includes: receiving bearer priority information from a PCRF entity, where the bearer priority information includes: bearer priority information of a service data stream, bearer priority information of an IP-CAN session, and/or bearer priority information of an IP-CAN bearer; and handling services according to the bearer priority information. In the embodiments of the present invention, the policy context information is converted into bearer priority information so that the PCEF handles services according to the bearer priority information. In this way, different services that require the same QoS level are handled discriminatively according to the policy context information.
    • 公开了一种服务处理方法,服务处理系统和PCRF实体来克服现有技术中的这种缺陷:当不同的服务需要相同的QoS级别时,现有技术不能根据策略上下文信息区别地处理服务。 该方法包括:从PCRF实体接收承载优先级信息,其中承载优先级信息包括:业务数据流的承载优先级信息,IP-CAN会话的承载优先级信息和/或IP-CAN承载优先级信息 承载人 并根据承载优先级信息处理业务。 在本发明的实施例中,策略上下文信息被转换为承载优先级信息,使得PCEF根据承载优先级信息处理业务。 以这种方式,根据策略上下文信息来区别地处理需要相同QoS级别的不同服务。
    • 7. 发明授权
    • Control method, system and function entity for reporting bearer event of signaling IP flow
    • 控制方法,系统和功能实体,用于报告信令IP流的承载事件
    • US08355325B2
    • 2013-01-15
    • US12052487
    • 2008-03-20
    • Shibi HuangPeng ZhaoYuxin MaoShiyong TanWeihua WeiYan Li
    • Shibi HuangPeng ZhaoYuxin MaoShiyong TanWeihua WeiYan Li
    • G01R31/06H04J3/24H04W4/00
    • H04W4/20H04L12/14H04L12/1428H04L12/1457H04L12/56H04L65/1016H04L65/80
    • A control method, system and function entity for reporting a bearer event of a signaling IP flow are provided. A 5-tuple is generated for a signaling IP flow and a media IP flow so as to unify a mechanism for reporting a signaling path status and a mechanism for reporting a bearer event of a media IP flow, so that the mechanism for reporting a signaling path status is not limited by the parameter of Flow Usage, the PDP context with a signaling tag, thereby establishing corresponding PCC rules for signaling and the association between a signaling IP flow and a bearer. A method for reporting a signaling path status is further provided in the invention. In the method, for a default PDP context or a PDP context of a signaling IP flow, the predefined PCC rules are activated or signaling PCC rules generated in accordance with an Application Function address are installed, thereby an IP signaling path status is reported in accordance with rule names of the predefine PCC rules or the signaling PCC rules.
    • 提供了用于报告信令IP流的承载事件的控制方法,系统和功能实体。 为信令IP流和媒体IP流生成5元组,以便统一用于报告信令路径状态的机制和用于报告媒体IP流的承载事件的机制,使得用于报告信令的机制 路径状态不受流量使用参数,具有信令标签的PDP上下文的限制,从而建立信令的相应PCC规则以及信令IP流和承载之间的关联。 本发明还提供了一种报告信令路径状态的方法。 在该方法中,对于默认PDP上下文或信令IP流的PDP上下文,激活预定PCC规则或者安装根据应用功能地址生成的信令PCC规则,从而根据报告IP信令路径状态 具有预定义PCC规则或信令PCC规则的规则名称。
    • 8. 发明申请
    • PLANT SENSOR
    • 植物传感器
    • US20120298847A1
    • 2012-11-29
    • US13481669
    • 2012-05-25
    • Kunihiro HAYASHIPeng ZHAO
    • Kunihiro HAYASHIPeng ZHAO
    • G01J1/42
    • G01J3/427A01C21/002A01C21/007A01M7/0089
    • A plant sensor includes a first light emitter to emit first measuring light with a first wavelength to irradiate a growing condition measurement target therewith; a second light emitter to emit second measuring light with a second wavelength to irradiate the growing condition measurement target therewith; a light receiver to receive reflected light of each of the first and second measuring light from the growing condition measurement target and output a received light signal; a controller to control light emission; a light path merging unit to merge a first outgoing light path of the first measuring light from the first light emitter and a second outgoing light path of the second measuring light from the second light emitter; and a common outgoing light path connecting the light path merging unit to a light exit portion emitting the first measuring light and the second measuring light.
    • 工厂传感器包括:第一发光体,用于发射具有第一波长的第一测量光以照射生长状态测量对象; 第二光发射器,发射具有第二波长的第二测量光以照射生长状态测量对象; 从所述生长状态测量对象接收所述第一测量光和所述第二测量光中的每一个的反射光的光接收器,并输出接收到的光信号; 控制光源的控制器; 光路合并单元,用于将来自第一光发射器的第一测量光的第一出射光路和来自第二光发射器的第二测量光的第二出射光路合流; 以及将光路汇合单元连接到发射第一测量光的光出射部分和第二测量光的公共出射光路。
    • 9. 发明授权
    • Sparse vectorization without hardware gather/scatter
    • 稀疏矢量化无硬件收集/散射
    • US08191056B2
    • 2012-05-29
    • US11549172
    • 2006-10-13
    • Roch Georges ArchambaultGeorge ChochiaPeng Zhao
    • Roch Georges ArchambaultGeorge ChochiaPeng Zhao
    • G06F9/45
    • G06F8/447
    • A target operation in a normalized target loop, susceptible of vectorization and which may, after compilation into a vectorized form, seek to operate on data in nonconsecutive physical memory, is identified in source code. Hardware instructions are inserted into executable code generated from the source code, directing a system that will run the executable code to create a representation of the data in consecutive physical memory. A vector loop containing the target operation is replaced, in the executable code, with a function call to a vector library to call a vector function that will operate on the representation to generate a result identical to output expected from executing the vector loop containing the target operation. On execution, a representation of data residing in nonconsecutive physical memory is created in consecutive physical memory, and the vectorized target operation is applied to the representation to process the data.
    • 标准化目标循环中的目标操作,易于向量化,并且可以在编译成向量化形式之后寻求对非连续物理存储器中的数据进行操作,在源代码中被识别。 硬件指令被插入到从源代码生成的可执行代码中,指示将运行可执行代码的系统在连续的物理内存中创建数据的表示。 包含目标操作的向量循环在可执行代码中被替换为对向量库的函数调用,以调用将在表示上操作的向量函数,以生成与执行包含目标的向量循环所期望的输出相同的结果 操作。 在执行时,在连续物理存储器中创建驻留在非连续物理存储器中的数据的表示,并且向量化的目标操作被应用于表示以处理数据。