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    • 1. 发明申请
    • NETWORK ELEMENT AND METHOD FOR ROUTING DATA IN A DATA COMMUNICATION SYSTEM
    • 用于在数据通信系统中路由数据的网络单元和方法
    • WO2008096013A3
    • 2008-11-06
    • PCT/EP2008051615
    • 2008-02-11
    • I P ACCESS LTDJOHNSON NICHOLAS DOUGALLPIERCY NEIL PHILIPNEIL DAVID
    • JOHNSON NICHOLAS DOUGALLPIERCY NEIL PHILIPNEIL DAVID
    • H04L12/56
    • H04W40/02H04L45/00H04L45/306H04W36/0011H04W36/0033H04W76/04H04W80/04H04W84/045
    • A network element (405, 500) for supporting packet switched (PS) data communication over a data communication system (400), wherein the network element (405, 500) comprises packet inspection logic (519) arranged to inspect at least one received PS data packet that is being routed through the network element (405, 500). The packet inspection logic (519) is arranged to determine whether the inspected at least one received PS data packet that is being routed through the network element (405, 500) comprises a destination address for an Application Domain supported by the network element (405, 500). The network element (405, 500) further comprises routing logic (520) for routing, in response to a determination that the inspected at least one received PS data packet comprises a destination address for an Application Domain supported by the network element (405, 500), the at least one received PS data packet direct to an Application Domain logic layer (522).
    • 一种用于通过数据通信系统(400)支持分组交换(PS)数据通信的网络单元(405,500),其中网络单元(405,500)包括分组检查逻辑(519),其被配置为检查至少一个接收到的PS 数据分组正被路由通过网络元件(405,500)。 分组检查逻辑(519)被布置成确定正在被路由通过网络元件(405,500)的被检查的至少一个接收的PS数据分组是否包括网络元件(405,450)所支持的应用程序域的目的地地址, 500)。 网络元件(405,500)还包括路由逻辑(520),用于响应于确定检查的至少一个接收到的PS数据分组包括由网络元件(405,500)所支持的应用程序域的目的地地址 ),至少一个接收的PS数据分组指向应用领域逻辑层(522)。
    • 2. 发明申请
    • NETWORK ELEMENT AND METHOD FOR ROUTING DATA IN A DATA COMMUNICATION SYSTEM
    • 用于在数据通信系统中路由数据的网络元件和方法
    • WO2008096013A2
    • 2008-08-14
    • PCT/EP2008/051615
    • 2008-02-11
    • I.P.ACCESS LIMITEDJOHNSON, Nicholas, DougallPIERCY, Neil, PhilipNEIL, David
    • JOHNSON, Nicholas, DougallPIERCY, Neil, PhilipNEIL, David
    • H04L12/56
    • H04W40/02H04L45/00H04L45/306H04W36/0011H04W36/0033H04W76/20H04W80/04H04W84/045
    • A network element (405, 500) for supporting packet switched (PS) data communication over a data communication system (400), wherein the network element (405, 500) comprises packet inspection logic (519) arranged to inspect at least one received PS data packet that is being routed through the network element (405, 500). The packet inspection logic (519) is arranged to determine whether the inspected at least one received PS data packet that is being routed through the network element (405, 500) comprises a destination address for an Application Domain supported by the network element (405, 500). The network element (405, 500) further comprises routing logic (520) for routing, in response to a determination that the inspected at least one received PS data packet comprises a destination address for an Application Domain supported by the network element (405, 500), the at least one received PS data packet direct to an Application Domain logic layer (522).
    • 一种用于通过数据通信系统(400)支持分组交换(PS)数据通信的网络元件(405,500),其中所述网络元件(405,500)包括分组检查逻辑(519),其被布置成检查至少一个接收到的PS 通过网络元件(405,500)路由的数据分组。 分组检查逻辑(519)被布置为确定被检查的至少一个接收到的通过网络单元(405,500)路由的PS数据分组是否包括由网络元件支持的应用域的目的地地址(405, 500)。 网络元件(405,500)还包括路由逻辑(520),用于响应于确定被检查的至少一个接收的PS数据分组包括由网络元件(405,500)支持的应用域的目的地地址 ),所述至少一个接收的PS数据分组指向应用域逻辑层(522)。
    • 3. 发明申请
    • CODING OF TRAU FRAMES IN A CELLULAR RADIO TELECOMMUNICATION SYSTEM
    • 无线电通信系统中TRAU框架的编码
    • WO2002085056A1
    • 2002-10-24
    • PCT/GB2002/001251
    • 2002-03-15
    • IP. ACCESS LTDPIERCY, Neil, PhilipJOHNSON, Nicholas, Dougall
    • PIERCY, Neil, PhilipJOHNSON, Nicholas, Dougall
    • H04Q7/30
    • H04W88/181
    • A cellular radio telecommunication system comprising a Basestation Transceiver System BTS and Transcoder Rate Adaptor TRAU in which the TRAU implements pre-coding of Enhanced Full-Rate EFR speech data for error checking at the Mobile Station MS. The BTS and TRAU may be co-located, or separated by a transmission link which has very low error rates. Error detection bits in the TRAU frame carrying Enhanced Full Rate EFR speech data may conform to a predetermined pattern which is recognised by the BTS and ignored for error correction. These error detection bits may be used across the BTS-TRAU interface for error checking of all the speech data bits of the TRAU frame evenly. The TRAU and BTS may negotiate the error checking protocol to be used so that this conforms to that used by the BTS.
    • 一种蜂窝无线电电信系统,包括基站收发系统BTS和转码器速率适配器TRAU,其中TRAU实现增强全速率EFR语音数据的预编码,用于在移动台MS进行错误检查。 BTS和TRAU可以位于同一位置,或者通过具有非常低错误率的传输链路分开。 携带增强型全速率EFR语音数据的TRAU帧中的错误检测位可以符合由BTS识别并被忽略以进行纠错的预定模式。 这些错误检测位可以在BTS-TRAU接口上使用,以均衡地对TRAU帧的所有语音数据位进行错误校验。 TRAU和BTS可以协商要使用的错误检查协议,使其符合BTS使用的错误检查协议。
    • 7. 发明申请
    • CELLULAR RADIO TELECOMMUNICATION SYSTEMS
    • 细胞无线电通信系统
    • WO0207380A2
    • 2002-01-24
    • PCT/GB0103181
    • 2001-07-16
    • IP ACCESS LTDJOHNSON NICHOLAS DOUGALLPIERCY NEIL PHILIP
    • JOHNSON NICHOLAS DOUGALLPIERCY NEIL PHILIP
    • H04L12/28H04L12/00
    • H04W88/08H04W92/20
    • A radio telecommunication system, and in particular an in-building system, comprises a number of basestations connected together by a local area network (LAN) at least one of the basestations (BS) is capable of receiving a control channel transmitted by one or more of the other basestations (BS) of the telecommunication systems, from which it derives frequency reference and time base synchronisation data to enable the basestation to correct the frequency and time offset of its own transmissions with respect to the other basestatations (BS) in the system. Also connected to the LAN is a controller (PC). The controller receives transmission measurement signals from each of the basestations (BS) and processes these transmission measurement signals to select radio frequency channels on which the basestations of the system should transmit to minimise interference with an external telecommunications system. The controller (PC) also receives transmission measurement signals from the basestations (BS) that are used to determine the power at which the basestations of the telecommunications system should transmit.
    • 无线电电信系统,特别是建筑内系统,包括通过局域网(LAN)连接在一起的多个基站,基站(BS)中的至少一个能够接收由一个或多个基站发送的控制信道 的电信系统的其他基站(BS),从其导出频率参考和时基同步数据,以使得基站能够相对于系统中的其他基站(BS)校正其自身传输的频率和时间偏移 。 还连接到LAN是一个控制器(PC)。 控制器从每个基站(BS)接收传输测量信号,并处理这些传输测量信号,以选择系统基站应发射的射频信道,以最小化对外部电信系统的干扰。 控制器(PC)还从基站(BS)接收用于确定电信系统的基站应发送的功率的传输测量信号。
    • 9. 发明申请
    • CELLULAR RADIO TELECOMMUNICATION SYSTEM
    • 细胞无线电通信系统
    • WO2004032548A1
    • 2004-04-15
    • PCT/GB2003/004294
    • 2003-10-06
    • IP.ACCESS LIMITEDJOHNSON, Nicholas, DougallPIERCY, Neil, PhilipMOORE, Christopher
    • JOHNSON, Nicholas, DougallPIERCY, Neil, PhilipMOORE, Christopher
    • H04Q7/36
    • H04W36/06H04W88/085
    • There is described a cellular radio telecommunication system for reducing interference (both intra-cell and inter-cell) within indoor (40), and between indoor and outdoor cellular radio telecommunication coverage areas. The system comprises a plurality of head units (20) throughout the indoor coverage area (40) each being connected to a master unit (10) such that, in combination, they are seen by User Equipment (UE) (50) as a single base station using a single carrier. The master unit (10) continuously ranks the head unit’s (20) by comparing their uplink quality indicators (e.g. by received power or by signal quality) and selectively routes signaling and data traffic via the highest ranked head unit(s) (20). Accordingly, the transmit power of each head unit (20) and UE (50) can be independently controlled and (24) minimised. Interference is therefore reduced by (i) ensuring minimal transmit powers; and (ii) reducing the number of cell boundaries within the indoor coverage area.
    • 描述了用于减少室内(40)内以及室内和室外蜂窝无线电电信覆盖区域之间的干扰(小区内和小区间)的蜂窝无线电通信系统。 该系统包括遍及室内覆盖区域(40)的多个头单元(20),每个头单元连接到主单元(10),使得它们被组合地由用户设备(UE)(50)看作单个 基站使用单载波。 主单元(10)通过比较其上行链路质量指示符(例如,通过接收功率或信号质量)连续地对头单元(20)进行排序,并且经由最高排名的头单元(20)选择性地路由信令和数据业务。 因此,可以独立地控制每个头单元(20)和UE(50)的发射功率,并且(24)最小化。 因此,减少干扰(i)确保最小传输功率; 和(ii)减少室内覆盖区域内的小区边界的数量。