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    • 2. 发明申请
    • USER EQUIPMENT DETECTION FOR ENERGY SAVING CELL ACTIVATION
    • 用户设备检测能源节约细胞活化
    • US20160234772A1
    • 2016-08-11
    • US15022861
    • 2014-09-29
    • David COMSTOCKKYOCERA CORPORATION
    • David COMSTOCK
    • H04W52/02H04W74/08H04L5/00
    • H04W52/0203H04L5/0048H04W52/0206H04W74/0866Y02D70/1262
    • In a cellular communication system, a UE device being served by a serving communication station is instructed to transmit an uplink signal in accordance with an uplink signal configuration. The uplink signal configuration information is sent to a non-serving communication station in an inactive state where the non-serving communication station cannot provide wireless service. The uplink signal configuration information allows the non-serving communication station to configure its receiver to receive the up-link signal from the UE. Based, at least in part, on information pertaining to the uplink signal received by the non-serving communication station and then sent to the serving communication station, the serving communication station determines whether the UE device is sufficiently near to the non-serving communication station to receive wireless service from the non-serving communication station, in which case the non-serving communication station is activated.
    • 在蜂窝通信系统中,指示由服务通信站服务的UE设备根据上行链路信号配置发送上行链路信号。 上行链路信号配置信息被发送到非服务通信站处于非服务通信站不能提供无线服务的非服务通信站。 上行链路信号配置信息允许非服务通信站配置其接收机以从UE接收上行链路信号。 至少部分地基于关于由非服务通信站接收的上行链路信号的信息,然后发送到服务通信站,服务通信站确定UE设备是否足够靠近非服务通信站 从非服务通信站接收无线服务,在这种情况下,非服务通信站被激活。
    • 7. 发明授权
    • Method and apparatus for determining scanned objects
    • 用于确定扫描对象的方法和装置
    • US08331970B2
    • 2012-12-11
    • US12763802
    • 2010-04-20
    • Junxian MoDavid Comstock
    • Junxian MoDavid Comstock
    • H04B7/00
    • H04W48/16H04W48/10
    • A method for determining scanned objects is disclosed. According to the method, a Mobile Station (MS) receives an MOB_NBR_ADV message sent by a Base Station (BS). The MOB_NBR_ADV message contains BS IDs. The method includes the following steps: setting a BS Bitmap field in a scanning process message; and mapping the BS Bitmap field to the BS IDs contained in the MOB_NBR_ADV message and determining scanned objects according to the mapping. With the method, a minimum of one bit may be mapped to one of the BS IDs, and thus scanned objects are determined. In addition, an apparatus containing BS Bitmap units is disclosed. When scanned objects are determined with the method and apparatus, the length of a scanning process message can be shortened, thus improving the air-interface resource usage of the wideband radio access system to a great extent.
    • 公开了一种用于确定扫描对象的方法。 根据该方法,移动站(MS)接收由基站(BS)发送的MOB_NBR_ADV消息。 MOB_NBR_ADV消息包含BS ID。 该方法包括以下步骤:在扫描处理消息中设置BS位图字段; 并将BS位映射字段映射到包含在MOB_NBR_ADV消息中的BS ID,并根据映射确定扫描对象。 利用该方法,可以将至少一个比特映射到BS ID之一,从而确定扫描对象。 此外,公开了包含BS位图单元的装置。 当使用方法和装置确定扫描对象时,可以缩短扫描处理消息的长度,从而在很大程度上改善了宽带无线电接入系统的空中接口资源使用。
    • 10. 发明授权
    • Combining differing transport technologies in a telecommunications system
    • 在电信系统中结合不同的运输技术
    • US07072329B2
    • 2006-07-04
    • US09842027
    • 2001-04-26
    • Per WillarsDavid Comstock
    • Per WillarsDavid Comstock
    • H04L12/66
    • H04L29/12018H04L12/4604H04L12/4608H04L12/66H04L29/06H04L29/12009H04L61/10H04L69/08H04L69/16H04L69/169H04L69/326H04L2012/563H04L2012/5656H04Q11/0478
    • In a multi-layer telecommunications system which includes an application layer and a transport layer, differing transport technologies are interworked without terminating the application layer signaling or without involving a technology interworking in the control plane of the application layer (e.g., without interworking in the application signaling). In various illustrated embodiments, the application layer is a radio network layer of a wireless telecommunications system. In at least some embodiments of the present invention a transport layer interworking function is situated on an interface between two nodes of the radio access network (RAN). The interworking function can be located in a separate node which may be a node having both ATM and internet protocol (IP) interfaces. There are numerous modes of implementing the interworking of the present invention, regardless of which interface is affected (e.g., an Iur interface, an Iu interface, or an Iub interface). A first interworking mode involves interworking with q.aal2 signaling. There are various ways or options of implementing the interworking with q.aal2 signaling. A first such example option is to use an IP specific signaling protocol over the IP network. A second example option is to use q.aal2 signaling over the IP network to/from the IP node. In one of its aspects, the present invention also provides an optimization feature in the event that nodes on both side of the interface (Iu interface, Iur interface, or Iub interface) are IP-connected nodes. Another interworking mode involves obtaining address and binding identifier parameters to be included in application signaling messages by consulting a transport layer interworking gateway. Yet another mode of implementing interworking for the present invention involves tunneling.
    • 在包括应用层和传输层的多层电信系统中,不同的传输技术是互通的,而不终止应用层信令,或者不涉及在应用层的控制平面中的技术互通(例如,在应用中没有互通 信令)。 在各种示出的实施例中,应用层是无线电信系统的无线电网络层。 在本发明的至少一些实施例中,传输层互通功能位于无线电接入网络(RAN)的两个节点之间的接口上。 互通功能可以位于单独的节点中,该节点可以是具有ATM和互联网协议(IP)接口的节点。 无论哪个接口受到影响(例如Iur接口,Iu接口或Iub接口),都有许多实现本发明的互通的方式。 第一个互通模式涉及与q.aal2信令的互通。 实现与q.aal2信令交互的各种方式或选项。 第一个这样的示例选项是在IP网络上使用IP特定的信令协议。 第二个示例选项是在IP网络上/从IP节点使用q.aal2信令。 在其一个方面,本发明还提供了在接口(Iu接口,Iur接口或Iub接口)两侧的节点是IP连接节点的情况下的优化特征。 另一种互通模式包括通过咨询传输层互通网关来获取要包括在应用信令消息中的地址和绑定标识符参数。 实现本发明的互通的又一种模式涉及隧道化。