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    • 1. 发明授权
    • Interfrequency measurement
    • 频率测量
    • US06507570B1
    • 2003-01-14
    • US09312179
    • 1999-05-14
    • Harri HolmaAntti Toskala
    • Harri HolmaAntti Toskala
    • H04G700
    • H04W36/0083H04L1/0056H04W72/08
    • A radio telephone for communicating in a spreadspectrum communication system having a plurality of radio channels of different frequencies; the radio telephone comprising communication means for establishing over one of said radio channels a communication link over which is communicated data and associated error correction data; a receiver operable to alternatively receive for a period a radio channel other than the established channel and processing means for measuring the radio signal characteristics of the other channel; the processing means being operable to use error correction data received over the established communication link to calculate the contents of the established communication link data of the radio channel signal during the period.
    • 一种用于在具有多个不同频率的无线电信道的扩频通信系统中进行通信的无线电话; 所述无线电话包括通信装置,用于在所述无线电信道中的一个上建立通信链路,通信链路是通信数据和相关联的纠错数据; 接收器,可操作以交替地接收除所建立的信道之外的无线电信道的周期;以及处理装置,用于测量另一信道的无线电信号特性; 所述处理装置可操作以使用通过所建立的通信链路接收的纠错数据来计算所述无线电信道信号在所述时段期间建立的通信链路数据的内容。
    • 2. 发明授权
    • Method for implementing services of an intelligent network using a data network
    • 使用数据网络实现智能网的服务的方法
    • US06519232B1
    • 2003-02-11
    • US09470623
    • 1999-12-22
    • Reinhard Becher
    • Reinhard Becher
    • H04G700
    • H04Q3/0029Y10S379/90
    • A method for implementing an intelligent service includes the step of offering the intelligent service with an intelligent network of a telephone system. Messages are exchanged interactively between a subscriber of the telephone system and a peripheral unit. The subscriber is authorized to use at least the intelligent service. The telephone system includes, in addition to the intelligent network, at least one telephone network which is linked to the intelligent network. Information relating to the intelligent service is exchanged between the peripheral unit and a service control node via a connection which is established in a data network.
    • 一种实现智能业务的方法,包括向智能业务提供电话系统智能网的步骤。 消息在电话系统的用户和外围单元之间交互地交换。 该用户被授权至少使用智能服务。 除了智能网络之外,电话系统还包括链接到智能网络的至少一个电话网络。 通过建立在数据网络中的连接,在外围设备和服务控制节点之间交换与智能业务相关的信息。
    • 3. 发明授权
    • Subscriber station, network control means and method for triggering inter-frequency measurements in a mobile communication system
    • 用户站,用于在移动通信系统中触发频率间测量的网络控制装置和方法
    • US06567670B1
    • 2003-05-20
    • US09651012
    • 2000-08-30
    • Justus Petersson
    • Justus Petersson
    • H04G700
    • H04W52/12H04W36/0083H04W36/12H04W52/24H04W52/36H04W52/40H04W52/44
    • A quality measurement means (QMM) provided in a network control means (RNC) of a communication system (T1) monitors the transmission quality on the down link (DL) of a communication connection (CC) between the subscriber station (MS) and the base transceiver station (RBS). A network IF handover means generates a network IF measurement trigger signal (NIFTS) when the transmission quality drops under a predetermined quality measure (QoS-MS). The generated network (IF) measurement trigger signal (NIFTS) is sent to the subscriber station (MS) and an IF measurement means (IFMM) in the subscriber station (MS) starts the IF measurements in response to a receipt of the network IF measurement trigger signal (NIFTS). One example of evaluating the quality on the down link of the communication connection (CC) is to monitor the transmitted output power on the down link. Thus, the network control means (RNC) can independently generate the trigger signal without the need of measurements from the subscriber station (MS) and without an additional interference on the up link due to a transmission of such measurements and without an unnecessary reduction of the lifetime of the battery of the subscriber station (MS).
    • 提供在通信系统(T1)的网络控制装置(RNC)中的质量测量装置(QMM)监视用户站(MS)和用户站(MS)之间的通信连接(CC)的下行链路(DL)的传输质量 基站收发台(RBS)。 当传输质量在预定质量测量(QoS-MS)下降时,网络IF切换装置产生网络IF测量触发信号(NIFTS)。 生成的网络(IF)测量触发信号(NIFTS)被发送到用户站(MS),并且用户站(MS)中的IF测量装置(IFMM)响应于接收到网络IF测量而开始IF测量 触发信号(NIFTS)。 评估通信连接(CC)下行链路质量的一个示例是监视下行链路上传输的输出功率。 因此,网络控制装置(RNC)可以独立地生成触发信号,而不需要来自用户站(MS)的测量,并且由于这种测量的传输而在上行链路上没有额外的干扰,并且不会不必要地减少 用户台(MS)的电池的使用寿命。