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    • 76. 发明授权
    • Method and apparatus for global bandwidth management
    • 用于全局带宽管理的方法和装置
    • US08909220B1
    • 2014-12-09
    • US13618965
    • 2012-09-14
    • Sima AftahiAntoine Raymond NaamanJoseph Jude BoonePeng Zhao
    • Sima AftahiAntoine Raymond NaamanJoseph Jude BoonePeng Zhao
    • H04W4/00H04W40/00H04B3/08H04W28/20H04W84/06H04B7/02
    • H04W84/06H04B7/02H04B7/2041
    • A satellite communication system includes a global bandwidth enforcer that allocates bandwidth from the global bandwidth pool in accordance with a group service plan having a predetermined geographic scope. The system further includes an allocation of bandwidth from the one or more channels of the one or more beams of a first satellite in accordance with the group service plan. The system further includes a second satellite access station that receives an allocation of bandwidth from the one or more channels of the one or more beams of the second satellite in accordance with the group service plan. The system further includes a first sub-network associated with the first satellite access having a coverage area in the predetermined geographic scope of the group service plan, where the first sub-network receives an allocation of bandwidth from the first satellite access station in accordance with the group service plan.
    • 卫星通信系统包括全局带宽执行器,其根据具有预定地理范围的组服务计划从全局带宽池分配带宽。 该系统还包括根据组服务计划从第一卫星的一个或多个波束的一个或多个信道分配带宽。 该系统还包括第二卫星接入站,其根据组服务计划从第二卫星的一个或多个波束的一个或多个信道接收带宽分配。 该系统还包括与第一卫星接入相关联的第一子网,其具有在群服务计划的预定地理范围内的覆盖区域,其中第一子网从第一卫星接入站接收根据 集团服务计划。
    • 77. 发明授权
    • Plant sensor having a controller controlling light emission of first and second light emitters at timings different from each other
    • 植物传感器具有控制器,其控制在彼此不同的定时处的第一和第二发光体的发光
    • US08822904B2
    • 2014-09-02
    • US13481669
    • 2012-05-25
    • Kunihiro HayashiPeng Zhao
    • Kunihiro HayashiPeng Zhao
    • H01J40/14A01C21/00A01M7/00G01J3/427
    • 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。
    • 79. 发明授权
    • Sliding mechanism and portable electronic device using the same
    • 滑动机构和使用其的便携式电子设备
    • US08055317B2
    • 2011-11-08
    • US12327430
    • 2008-12-03
    • Jun WangHsiao-Hua TuGang YangWen-Wei SongPeng Zhao
    • Jun WangHsiao-Hua TuGang YangWen-Wei SongPeng Zhao
    • H04M1/00
    • H04M1/0237
    • A sliding mechanism includes a first plate (32) having a sliding slot (322) and a control slot (325) defined therein. The sliding slot and the control slot having a certain angle therebetween and communicating with each other. A second plate (38) is longitudinally slidably connected to the first plate. The second plate including a sliding member (381) formed on a surface thereof facing the first plate. The sliding member engages with the sliding slot and includes an elastic positioning assembly (389). A control assembly (34) is slidably received in the control slot. A main elastic member (36) has one end thereof being fixed to one end of the sliding slot, the other end thereof being fixed with the sliding member. A portable electronic device (100) using the sliding mechanism is also disclosed.
    • 滑动机构包括具有滑动槽(322)和限定在其中的控制槽(325)的第一板(32)。 滑槽和控制槽在其间具有一定角度并且彼此连通。 第二板(38)纵向可滑动地连接到第一板。 第二板包括形成在面向第一板的表面上的滑动构件(381)。 滑动构件与滑动槽接合并且包括弹性定位组件(389)。 控制组件(34)可滑动地容纳在控制槽中。 主弹性构件(36)的一端固定在滑动槽的一端,另一端与滑动构件固定。 还公开了使用滑动机构的便携式电子设备(100)。
    • 80. 发明申请
    • METHOD AND APPARATUS FOR CONTROLLING SERVICE DATA FLOWS TRANSMITTED IN A TUNNEL
    • 用于控制隧道中传输的服务数据流的方法和装置
    • US20100299446A1
    • 2010-11-25
    • US12850703
    • 2010-08-05
    • Shibi HUANGFengbo WangYu ZuoYuxin MaoPeng Zhao
    • Shibi HUANGFengbo WangYu ZuoYuxin MaoPeng Zhao
    • G06F15/16
    • H04L63/0227H04L2212/00H04W76/11H04W76/12
    • The embodiments of present invention discloses a method for controlling service data flows transmitted in a tunnel, an information sending apparatus, an information enforcing apparatus, and an information reporting apparatus, and relates to the network communications field. With the embodiments of present invention, an access gateway (AGW) can implement correct policy control on data packets transmitted in a tunnel. The method for controlling service data flows transmitted in a tunnel includes: receiving policy information and identification information of service data flows transmitted in a tunnel; and enforcing policy operations on the service data flows according to the policy information and identification information of the service data flows transmitted in the tunnel. In the embodiments of present invention, a policy enforcement function (PEF) may identify data packets transmitted in a tunnel according to the received policy information and identification information. This solves the problem that the PEF cannot identify data packets transmitted in the tunnel in the prior art, and achieves the objectives of controlling the data packets transmitted in the tunnel, allocating access resources to the data packets, and improving the quality of service (QoS).
    • 本发明的实施例公开了一种用于控制在隧道中发送的服务数据流的方法,信息发送装置,信息执行装置和信息报告装置,并且涉及网络通信领域。 利用本发明的实施例,接入网关(AGW)可以对在隧道中发送的数据分组实施正确的策略控制。 用于控制在隧道中发送的服务数据流的方法包括:接收在隧道中发送的服务数据流的策略信息和识别信息; 根据在隧道中传输的业务数据流的策略信息和识别信息,对业务数据流执行策略操作。 在本发明的实施例中,策略执行功能(PEF)可以根据接收到的策略信息和识别信息来标识在隧道中发送的数据分组。 这解决了现有技术中PEF无法识别在隧道中发送的数据包的问题,​​并且实现了控制在隧道中发送的数据包的目的,为数据包分配接入资源,提高了服务质量(QoS )。