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    • 1. 发明授权
    • Indicating physical change in relation to an exterior of a network node module
    • 指示与网络节点模块外部相关的物理变化
    • US09398435B2
    • 2016-07-19
    • US14003358
    • 2011-03-18
    • Dan Lindqvist
    • Dan Lindqvist
    • H04W8/00H04W24/02H04W64/00H04W88/08
    • H04W8/00H04W24/02H04W64/003H04W88/08
    • The invention relates to a method for indicating a physical change in relation to an exterior of a network node module included in a network node in a wireless communication network, such a network node module and such a network node. According to the invention the network node module (19) comprises a movement detector (20) configured to detect movement between a male element and a corresponding female element, where the network node module comprises one of the elements and both elements are required for obtaining an operative network node, and a control unit (24) configured to generate an indication of a physical change of the network node module based on the detected movement.
    • 本发明涉及一种用于指示与包括在无线通信网络中的网络节点中的网络节点模块的外部相关的物理变化的方法,例如网络节点模块和这种网络节点。 根据本发明,网络节点模块(19)包括移动检测器(20),其被配置为检测阳元件和相应的母元件之间的移动,其中网络节点模块包括元件之一,并且需要两个元件来获得 以及控制单元(24),被配置为基于检测到的移动来生成网络节点模块的物理变化的指示。
    • 2. 发明申请
    • Base Station Synchronization
    • 基站同步
    • US20120275554A1
    • 2012-11-01
    • US13097650
    • 2011-04-29
    • Dan Lindqvist
    • Dan Lindqvist
    • H04L7/04H04B7/26
    • H04W56/0035H04J3/0661
    • The invention relates to transmission and reception of clock synchronization data in a wireless communication system. According to the invention a device for transmitting clock synchronization data obtains at least one time reference of a wireless communication system clock, controls transmission of a frequency reference of the wireless communication system clock via an air interface of the wireless communication system, and provides transmission of the time reference via a transport network associated with the wireless communication system, while the base station receives the frequency reference, locks an own oscillator to the frequency of the frequency reference, receives the time reference from the transport network and adjusts timing that is controlled by the oscillator based on the time reference.
    • 本发明涉及在无线通信系统中发送和接收时钟同步数据。 根据本发明,用于发送时钟同步数据的装置获得无线通信系统时钟的至少一个时间参考,经由无线通信系统的空中接口控制无线通信系统时钟的频率参考的传输,并且提供 通过与无线通信系统相关联的传输网络的时间基准,而在基站接收到频率参考时,将自己的振荡器锁定到频率参考的频率,从传输网络接收时间参考并调整由 振荡器基于时间参考。
    • 3. 发明申请
    • Architectural model of a radio base station
    • 无线电基站的建筑模型
    • US20070037593A1
    • 2007-02-15
    • US10551073
    • 2004-04-06
    • Jacob ÖsterlingDan LindqvistPaul TederRutger Andersson
    • Jacob ÖsterlingDan LindqvistPaul TederRutger Andersson
    • H04B7/00
    • H04W88/08
    • The present invention relates to an architectural model of a radio network unit, e.g. a Radio Base Station, that separates functionality in such a way that it is possible to easily adapt the unit to various requirements and conditions. The radio network unit comprises an internal RBS-interface that subdivides the its functionality into a first part, which solely relates to the functionality of the radio network, and a second part, which solely relates to the radio part, i.e. the airborne part of the transmission. The internal interface comprises at least a link that handles the necessary additional communication that arises due to the subdivision and a link that handles the user data that is to be processed, i.e. transmitted or received, by said unit.
    • 本发明涉及无线电网络单元的架构模型,例如, 无线电基站,其功能分离,使得可以容易地使单元适应各种要求和条件。 无线电网络单元包括内部RBS接口,其将其功能细分为仅与无线电网络的功能有关的第一部分,以及仅涉及无线电部分的第二部分,即无线电部分的空中部分 传输。 内部接口包括至少一个链路,其处理由于细分而产生的必要附加通信,以及链接处理由所述单元处理,即发送或接收的用户数据。
    • 4. 发明授权
    • Base station synchronization
    • 基站同步
    • US09241320B2
    • 2016-01-19
    • US13097650
    • 2011-04-29
    • Dan Lindqvist
    • Dan Lindqvist
    • H04L7/00H04W56/00H04J3/06
    • H04W56/0035H04J3/0661
    • The invention relates to transmission and reception of clock synchronization data in a wireless communication system. According to the invention a device for transmitting clock synchronization data obtains at least one time reference of a wireless communication system clock, controls transmission of a frequency reference of the wireless communication system clock via an air interface of the wireless communication system, and provides transmission of the time reference via a transport network associated with the wireless communication system, while the base station receives the frequency reference, locks an own oscillator to the frequency of the frequency reference, receives the time reference from the transport network and adjusts timing that is controlled by the oscillator based on the time reference.
    • 本发明涉及在无线通信系统中发送和接收时钟同步数据。 根据本发明,用于发送时钟同步数据的装置获得无线通信系统时钟的至少一个时间参考,经由无线通信系统的空中接口控制无线通信系统时钟的频率参考的传输,并且提供 通过与无线通信系统相关联的传输网络的时间基准,而在基站接收到频率参考时,将自己的振荡器锁定到频率参考的频率,从传输网络接收时间参考并调整由 振荡器基于时间参考。
    • 6. 发明授权
    • Automatic configuration of antenna near parts equipment
    • 自动配置天线附近配件设备
    • US6075997A
    • 2000-06-13
    • US962695
    • 1997-11-03
    • Dan LindqvistKristian LindskogJacob Osterling
    • Dan LindqvistKristian LindskogJacob Osterling
    • H04W24/00H04Q7/30
    • H04W24/00H01Q1/246
    • Each transmitter/receiver pair of a radio base station is connected via an antenna bus and radio frequency feeder to antenna near parts equipment such as active antennas, boosters and tower mounted amplifiers. Automatic configuration and calibration of the antenna near parts equipment is accomplished by establishing communication between the base station and each of its connected antenna near part components. Each antenna near part component sends its identification to the base station over the antenna bus at power-on. Furthermore, communications selectively sent over the radio frequency feeder are monitored to determine the connectivity between individual transmitter/receiver pairs of the base station and each antenna near parts equipment. These radio frequency feeder communications are further processed to determine calibration data for configuring each antenna near parts equipment for optimal operation.
    • 无线电基站的每个发射机/接收机对通过天线总线和射频馈线连接到诸如有源天线,增强器和塔架放大器之类的部件设备附近的天线。 靠近零件设备的天线的自动配置和校准通过在基座部件附近建立基站与其连接的每个天线之间的通信来实现。 部件组件附近的每个天线在上电时通过天线总线将其标识发送到基站。 此外,监视通过射频馈线选择性地发送的通信,以确定基站的各个发射机/接收机对与零件设备附近的每个天线之间的连接性。 这些射频馈线通信被进一步处理以确定校准数据,用于配置靠近部件设备的每个天线以获得最佳操作。
    • 7. 发明授权
    • Method and apparatus relating to a telecommunications system
    • 与电信系统有关的方法和装置
    • US5937180A
    • 1999-08-10
    • US770902
    • 1996-12-20
    • Dan Lindqvist
    • Dan Lindqvist
    • G01R31/317G11C29/46H03K17/00G06F9/44
    • G01R31/31701G11C29/46
    • An integrated circuit which can function in a number of different operating modes is set to a setting mode by a control signal on the control signal input. The circuit includes a signal sequence generator which in the setting mode generates setting signal sequences on four of the address connections of the circuit. An operating mode is selected by coupling one of the address connections with a setting signal input on a signal sequence detector in the circuit. The signal sequence detector interprets the setting signal sequence from the signal sequence generator and sets control outputs, on the signal sequence detector to different combinations of "low" and "high" signal levels respectively in dependence on the sequence received in the detector, whereafter the circuit switches to an operating mode in which the address conductors forward signals in accordance with the operating mode.
    • 可以通过控制信号输入上的控制信号将能够在多种不同工作模式下工作的集成电路设定为设定模式。 该电路包括信号序列发生器,其在设置模式中产生电路的四个地址连接上的设置信号序列。 通过将地址连接中的一个与电路中的信号序列检测器上输入的设置信号相耦合来选择操作模式。 信号序列检测器解释来自信号序列发生器的设置信号序列,并且根据检测器中接收的序列,将信号序列检测器上的控制输出分别设置为“低”和“高”信号电平的不同组合,之后 电路切换到操作模式,其中地址导体根据操作模式转发信号。
    • 8. 发明申请
    • Indicating Physical Change in Relation to an Exterior of a Network Node Module
    • 指示与网络节点模块外部相关的物理变化
    • US20140006613A1
    • 2014-01-02
    • US14003358
    • 2011-03-18
    • Dan Lindqvist
    • Dan Lindqvist
    • H04W8/00
    • H04W8/00H04W24/02H04W64/003H04W88/08
    • The invention relates to a method for indicating a physical change in relation to an exterior of a network node module included in a network node in a wireless communication network, such a network node module and such a network node. According to the invention the network node module (19) comprises a movement detector (20) configured to detect movement between a male element and a corresponding female element, where the network node module comprises one of the elements and both elements are required for obtaining an operative network node, and a control unit (24) configured to generate an indication of a physical change of the network node module based on the detected movement.
    • 本发明涉及一种用于指示与包括在无线通信网络中的网络节点中的网络节点模块的外部相关的物理变化的方法,例如网络节点模块和这种网络节点。 根据本发明,网络节点模块(19)包括移动检测器(20),其被配置为检测阳元件和相应的母元件之间的移动,其中网络节点模块包括元件之一,并且需要两个元件来获得 以及控制单元(24),被配置为基于检测到的移动来生成网络节点模块的物理变化的指示。
    • 10. 发明授权
    • System and method for determining absolute time based upon air interface timing in time of arrival based positioning
    • 基于到达时间定位的空中接口定时确定绝对时间的系统和方法
    • US06385452B1
    • 2002-05-07
    • US09362777
    • 1999-07-28
    • Bagher R. ZadehDan Lindqvist
    • Bagher R. ZadehDan Lindqvist
    • H04Q720
    • H04W64/00G01S5/02G01S2205/008H04W36/06
    • A telecommunications system and method is disclosed for reducing the signaling load on the network by instructing a Location Measurement Unit (LMU) to measure the relation between the absolute time and air interface timing, e.g., TDMA frame number, only when a positioning request has been received. Prior to configuring the LMU for time of arrival (TOA)-based positioning of a particular mobile station, the Serving Mobile Location Center (SMLC) can request an LMU associated with a particular cell to perform an asynchronous handover within the same cell. During this asynchronous handover, the LMU measures the relation between the absolute time and the TDMA frame number, and sends this relation information to the SMLC. The SMLC uses this relation information in configuring the LMU for TOA-based positioning of the particular mobile station.
    • 公开了一种电信系统和方法,用于通过指示位置测量单元(LMU)来测量绝对时间和空中接口定时之间的关系(例如,TDMA帧号),以减少网络上的信令负载,只有当定位请求已经被 收到了 在针对特定移动站的到达时间(TOA)定位LMAM之前,服务移动定位中心(SMLC)可以请求与特定小区相关联的LMU在同一小区内执行异步切换。 在该异步切换期间,LMU测量绝对时间和TDMA帧号之间的关系,并将该关系信息发送给SMLC。 SMLC在配置LMU时使用该关系信息用于特定移动站的基于TOA的定位。