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    • 12. 发明申请
    • METHOD AND ARRANGEMENT FOR PROBING OF ALTERNATIVE ANTENNA CONFIGURATIONS IN A COMMUNICATION NETWORK SYSTEM
    • 用于在通信网络系统中检测替代天线配置的方法和装置
    • US20130237158A1
    • 2013-09-12
    • US13885462
    • 2010-11-16
    • Johan MoeMehdi AmirijooPål FrengerFredrik Gunnarsson
    • Johan MoeMehdi AmirijooPål FrengerFredrik Gunnarsson
    • H04W24/02
    • H04W24/02H04B7/0602H04B17/12H04W24/10H04W28/18H04W40/06H04W88/02Y02D70/00Y02D70/1222Y02D70/1242Y02D70/1262Y02D70/142Y02D70/322Y02D70/444
    • The present invention relates to an arrangement, a communication network node and a user equipment allowing for probing of alternative antenna configurations in a communication network system as well as a method for such probing. The method comprises making one of the reconfigurable antennas (15a2, 15b2) of at least one cell (19a, 19b) temporarily available for probing and reconfiguring one or more antenna parameters thereof in accordance with a probing antenna parameter set. A new probe cell (20a, 20b) is transmitted from the prepared antenna (15a2, 15b2) and measurement reports collected from the user equipments (18) within the at least one cell (19a, 19b) and the probe cell (20a, 20b). The probing antenna parameter set is evaluated based on the collected measurement reports whereupon is determined if the reconfigurable physical antennas (15a1, 15a2, 15b1, 15b2) of the cell shall use the probing antenna parameter set or the initial antenna parameter set. Finally the probing cell (20a, 20b) is removed and the antennas (15a1, 15a2, 15b1, 15b2) adjusted in accordance with the determination.
    • 本发明涉及允许在通信网络系统中探测替代天线配置的布置,通信网络节点和用户设备以及用于这种探测的方法。 该方法包括使至少一个小区(19a,19b)的可重构天线(15a2,15b2)之一临时可用于根据探测天线参数集来探测和重新配置其一个或多个天线参数。 从所述准备天线(15a2,152)发送新的探测单元(20a,20b),从所述至少一个单元(19a,19b)和所述探针单元(20a,20b)中的用户设备(18)收集的测量报告 )。 基于收集的测量报告来评估探测天线参数集,从而确定小区的可重新配置的物理天线(15a1,15a2,15b1,15b2)是否应使用探测天线参数集或初始天线参数集。 最后,去除探测单元(20a,20b),并根据该确定调整天线(15a1,151,21,51,15b2)。
    • 13. 发明授权
    • Efficient encoding of control signaling for communication systems with scheduling and link
    • 对具有调度和链路的通信系统进行控制信令的高效编码
    • US08509204B2
    • 2013-08-13
    • US12066347
    • 2005-09-09
    • Niclas WibergPål FrengerAnders FuruskärStefan Parkvall
    • Niclas WibergPål FrengerAnders FuruskärStefan Parkvall
    • H04B7/216
    • H03M7/46H04L1/0025H04L1/0029
    • The invention relates to a method of sending control information from a first node to a second node in a communications system providing a plurality of resource units for the transmission of data. The control information is sent by use of a code book comprising at least one code word identifying control information relating to data transmission over a resource unit. The code book is dynamically updated by means of repeatedly transmitting an updated version of code book information from the first node to the second node. The invention also relates to a first communications node comprising means for transmitting control information to a second node. The means for transmitting control information is adapted to transmitting the control information by use of a code book; and to repeatedly transmitting an updated version of code book information in order to achieve that the code book is dynamic.
    • 本发明涉及在提供用于传输数据的多个资源单元的通信系统中从第一节点向第二节点发送控制信息的方法。 控制信息通过使用包含至少一个代码字的代码簿来发送,该代码字识别与资源单元上的数据传输有关的控制信息。 通过从第一节点向第二节点重复地发送代码簿信息的更新版本来动态地更新代码本。 本发明还涉及第一通信节点,其包括用于向第二节点发送控制信息的装置。 用于发送控制信息的装置适于通过使用码本传送控制信息; 并重复发送代码簿信息的更新版本,以便实现代码本是动态的。
    • 16. 发明申请
    • METHODS AND APPARATUSES FOR RADIO RESOURCE ALLOCATION AND IDENTIFICATION
    • 无线电资源分配和识别的方法和设备
    • US20120309441A1
    • 2012-12-06
    • US13578993
    • 2010-03-29
    • Jonas ErikssonPål FrengerErik LarssonReza MoosaviNiclas Wiberg
    • Jonas ErikssonPål FrengerErik LarssonReza MoosaviNiclas Wiberg
    • H04W72/04
    • H04L5/0094H04L1/007H04L1/0072H04L5/0092H04W72/1289
    • The present invention presents methods providing for system resource-efficient radio resource allocation of mobile terminals. The methods may include generating a first scheduling message including first scheduling information indicative of at least a first radio resource allocated to a first mobile terminal. The methods may also include generating a second scheduling message including second scheduling information, which, when combined with said first scheduling information, is indicative of a second radio resource allocated to a second mobile terminal. The methods may further include transmitting said first scheduling message to said first and second mobile terminals using a first robustness level, and transmitting said second scheduling message to said second mobile terminal using a second robustness level. Related network nodes and mobile terminals are also provided.
    • 本发明提出了提供移动终端的系统资源有效的无线电资源分配的方法。 所述方法可以包括生成包括指示分配给第一移动终端的至少第一无线电资源的第一调度信息的第一调度消息。 所述方法还可以包括生成包括第二调度信息的第二调度消息,所述第二调度消息当与所述第一调度信息组合时指示分配给第二移动终端的第二无线电资源。 所述方法可以进一步包括使用第一鲁棒性级别将所述第一调度消息发送到所述第一和第二移动终端,以及使用第二鲁棒性级别将所述第二调度消息发送到所述第二移动终端。 还提供了相关的网络节点和移动终端。
    • 18. 发明授权
    • Inter-RAT/ frequency automatic neighbor relation list management
    • RAT间/频率自动邻居关系列表管理
    • US08107950B2
    • 2012-01-31
    • US12331897
    • 2008-12-10
    • Mehdi AmirijooPål FrengerFredrik GunnarssonHarald KallinJohan MoeKristina Zetterberg
    • Mehdi AmirijooPål FrengerFredrik GunnarssonHarald KallinJohan MoeKristina Zetterberg
    • H04W88/02
    • H04W36/0088H04W36/0083H04W36/14H04W48/12
    • In one of its aspects the technology concerns a method of operating a telecommunications system comprising a serving radio base station and a candidate radio base station. The serving radio base station comprises a radio base station to which a wireless mobile station provides measurement reports. The serving radio base station and the candidate radio base station are different with respect to at least one of frequency and radio access technology. The method comprises the serving radio base station allowing the mobile station to obtain information broadcasted by the candidate radio base station. The information is either information for locating Cell Global Identity (CGI) of the candidate radio base station or the Cell Global Identity (CGI) itself of the radio base station. The mobile station obtains the information from the candidate radio base station during at least one reading gap. The reading gap is a time period in which the mobile station does not receive information from the serving radio base station.
    • 在其一个方面,该技术涉及操作包括服务无线电基站和候选无线电基站的电信系统的方法。 服务无线基站包括无线基站,无线移动站提供测量报告。 服务无线电基站和候选无线电基站相对于频率和无线电接入技术中的至少一个是不同的。 该方法包括服务无线电基站,允许移动台获得由候选无线电基站广播的信息。 信息是用于定位候选无线电基站的小区全局标识(CGI)或无线电基站的小区全局标识(CGI)本身的信息。 移动站在至少一个读取间隙期间从候选无线电基站获得信息。 读取间隙是移动台不从服务无线基站接收信息的时间段。
    • 19. 发明申请
    • METHOD AND ARRANGEMENT IN A COMMUNICATION NETWORK SYSTEM
    • 通信网络系统中的方法和布置
    • US20110165874A1
    • 2011-07-07
    • US13061856
    • 2008-09-11
    • Mehdi AmirijooPål FrengerFredrik GunnarssonJohan MoeKristina Zetterberg
    • Mehdi AmirijooPål FrengerFredrik GunnarssonJohan MoeKristina Zetterberg
    • H04W40/04
    • H04W74/0866
    • A method and a communication network node for satisfying detection miss probability and false detection probability requirements in a random access channel used by mobile stations (MS) for accessing a communication network system comprising radio base stations (BS) each serving at least one cell (19). The method includes optimizing a random access channel, wherein the method performs estimating detection miss probability (P m) in said cell, tuning random access parameters such that said estimated detection miss probability satisfies predetermined requirements, estimating a false detection probability (P f) in said communication cell (19), tuning said random access parameters such that said estimated false detection probability satisfies predetermined requirements, and tuning said random access parameters such that an extensive interference caused by mobile stations attempting random access in said communication cell is avoided.
    • 一种方法和通信网络节点,用于满足移动台(MS)用于接入通信网络系统的随机接入信道中的检测错失概率和错误检测概率要求,所述通信网络系统包括每个服务于至少一个小区的无线电基站(BS) )。 该方法包括优化随机接入信道,其中该方法执行估计所述小区中的检测未命中概率(P m),调整随机接入参数,使得所述估计的检测失败概率满足预定的要求,估计误检测概率(P f) 所述通信小区(19)调整所述随机接入参数,使得所述估计的错误检测概率满足预定的要求,并且调整所述随机接入参数,从而避免在所述通信小区中尝试随机接入的移动台造成的广泛干扰。
    • 20. 发明授权
    • Dynamic allocation of frequency spectrum
    • 频谱的动态分配
    • US07483401B2
    • 2009-01-27
    • US10496027
    • 2001-11-21
    • Per Håkan Albin JohanssonPer ÖdlingPål FrengerBjörn Olof Bohlin
    • Per Håkan Albin JohanssonPer ÖdlingPål FrengerBjörn Olof Bohlin
    • H04J1/00H04J3/16H04L12/413H04L12/28H04M1/56H04M1/76
    • H04L5/06H04B3/487H04L5/143
    • A method and arrangement in a communication system for dynamically allocating communication system frequency spectrum after cross-talk interface between transmission medias used for upstream and downstream communication in the frequency spectrum. After detecting cross-talk interface on a disturbed transmission medium caused by transmission on a disturbing transmission medium, the arrangement transmit a media control signal on the disturbed transmission medium and detects a reproduced media control signal that is reproduced due to cross-talk on the disturbing transmission medium. The disturbed or disturbing transmission media can then be dynamically allocated different frequency spectrum to eliminate the interface. In one embodiment, each transmission medium has a default transmission direction, and if one of the transmission is in a direction opposite the default direction, that transmission is reassigned to another transmission medium.
    • 一种通信系统中的方法和装置,用于在频谱中用于上下游通信的传输媒体之间的串扰接口之间动态分配通信系统频谱。 在由干扰的传输介质上的传输引起的干扰的传输介质上检测到串扰接口之后,该布置在受干扰的传输介质上发送媒体控制信号,并且检测由于干扰的串扰而再现的再现的媒体控制信号 传输介质。 干扰或干扰的传输介质可以动态地分配不同的频谱以消除接口。 在一个实施例中,每个传输介质具有默认传输方向,并且如果传输中的一个在与默认方向相反的方向上,则该传输被重新分配给另一个传输介质。