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    • 3. 发明申请
    • RESOURCE SCHEDULING IN A CELLULAR SYSTEM
    • 资源调度在细胞系统
    • WO2007073248A1
    • 2007-06-28
    • PCT/SE2005/001998
    • 2005-12-20
    • TELEFONAKTIEBOLAGET LM ERICSSON (publ)PARKVALL, StefanFRENGER, PålDAHLMAN, ErikPETTERSSON, Jonas
    • PARKVALL, StefanFRENGER, PålDAHLMAN, ErikPETTERSSON, Jonas
    • H04Q7/38H04B7/005
    • H04W16/06H04W52/10H04W52/241H04W52/246H04W52/367H04W72/0426H04W72/082H04W84/042
    • The invention relates to a method for scheduling resources for uplink transmissions in a radio access network comprising access points which own pre-assigned resources. The invention also relates to an access point (5-7), a user terminal (1-4) and an access point controller 8. Characteristic features of the invention are that each AP places its resources to the disposition of other APs in the access network, and that an AP (7) transmits a blocking signal (BLOCK R3) if it does not allow a UT (3) , which is served by an AP (5) in another cell, to use its resources (R3). A UT that detects a blocking signal from an AP that owns the resources on which the UT is transmitting immediately stops transmission on said resources. The signal quality of a detected blocking signal may be used for setting the transmission power on the resources the UT has borrowed from the AP which transmits the blocking signal. Based on statistics on the APs which transmit blocking signals long-term pre-allocation of resources among the APs is made.
    • 本发明涉及一种用于在包括具有预分配资源的接入点的无线电接入网络中调度用于上行链路传输的资源的方法。 本发明还涉及接入点(5-7),用户终端(1-4)和接入点控制器8.本发明的特征是每个AP将其资源放置在接入中的其他AP的配置 并且如果AP(7)不允许由另一小区中的AP(5)服务的UT(3)使用其资源(R3),则AP(7)发送阻塞信号(BLOCK R3)。 检测来自拥有UT发送的资源的AP的阻塞信号的UT立即停止在所述资源上的传输。 检测到的阻塞信号的信号质量可以用于设置UT从发送阻塞信号的AP借用的资源上的发送功率。 基于传输阻塞信号的AP的统计数据,进行了AP间的资源长期预分配。
    • 4. 发明申请
    • DYNAMIC ALLOCATION OF RADIO RESOURCES
    • 无线电资源的动态分配
    • WO2005101882A1
    • 2005-10-27
    • PCT/EP2005/051408
    • 2005-03-29
    • TELEFONAKTIEBOLAGET LM ERICSSON (publ)NYSTRÖM, JohanKLANG, GöranFRENGER, PålPARKVALL, Stefan
    • NYSTRÖM, JohanKLANG, GöranFRENGER, PålPARKVALL, Stefan
    • H04Q7/38
    • H04W16/10H04W72/08
    • Radio resources are allocated to communication between a mobile station (40) and a base station (20). The available set of radio resources may comprise radio resources primarily assigned to a neighbouring cell if the 5 mobile station (40) experience an instantaneous low level of co-channel interference from such neighbouring cells. The existence of interference is preferably deduced from signal quality measurements of pilot signals. The allocation may concern uplink and/or downlink (54) communication. Devices (41) for performing the measurements are located in the mobile station (40), while devices for performing the evaluation (22), selection (23) and actual allocation (24) can be placed in different parts of the communications system- in the mobile station (40), in a base station (20) or In a core network node (70), or as a distributed means.
    • 无线电资源被分配给移动台(40)和基站(20)之间的通信。 如果5个移动站(40)经历来自这些相邻小区的同信道干扰的瞬时低电平,则可用的一组无线电资源可以包括主要分配给相邻小区的无线电资源。 干扰的存在优先从导频信号的信号质量测量推导出来。 该分配可以涉及上行链路和/或下行链路(54)通信。 用于执行测量的设备(41)位于移动台(40)中,而用于执行评估(22),选择(23)和实际分配(24)的设备可以放置在通信系统的不同部分 移动台(40),基站(20)或核心网络节点(70)中,或作为分布式装置。
    • 7. 发明申请
    • DISCONTINUOUS TRANSMISSION SCHEME
    • 不连续传输方案
    • WO2011105939A1
    • 2011-09-01
    • PCT/SE2010/050212
    • 2010-02-24
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)LINDOFF, BengtPARKVALL,, StefanFRENGER, Pål
    • LINDOFF, BengtPARKVALL,, StefanFRENGER, Pål
    • H04W48/16
    • H04W48/16H04W76/28
    • A base station transmits signals on a frequency (f 1 ) in an active transmission interval (TI) having a starting time and being part of a transmission cycle (TC) including other active transmission intervals for other frequencies (f 0 , f 1 , f 2 , f 3 ) appearing in a predetermined discontinuous transmission scheme that specifies the relationship (Δ 1 , A 2 , A 3 ) between the starting times of the active transmission intervals of the frequencies of the set. The mobile station scans the set of frequencies during a scanning cycle (SC) corresponding to the transmission cycle (TC) and determines the frequencies at which the base stations transmit. The start of each scanning is made at a point in time that is specified for the corresponding frequency by the discontinuous transmission scheme and the scanning of one frequency involves ending scanning of this frequency at the end of a time range (TR) of pre-determined length if no signal is detected within this time range.
    • 基站在具有起始时间的有效传输间隔(TI)中的频率(f1)上发送信号,并且是包括用于其他频率(f0,f1,f2,f3)的其他有效传输间隔的传输周期(TC)的一部分的信号, 出现在预定的不连续传输方案中,其规定了该组的频率的有效传输间隔的开始时间之间的关系(α1,A2,A3)。 移动台在对应于传输周期(TC)的扫描周期(SC)期间扫描频率集合,并确定基站发射的频率。 每次扫描的开始是在由不连续传输方案为相应频率指定的时间点进行的,并且一个频率的扫描涉及在预定的时间范围(TR)的结束时结束该频率的扫描 在该时间范围内没有检测到信号的长度。
    • 9. 发明申请
    • COMMUNICATION RESOURCE MANAGEMENT
    • 通信资源管理
    • WO2006135289A1
    • 2006-12-21
    • PCT/SE2005/000939
    • 2005-06-17
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)FRENGER, Pål
    • FRENGER, Pål
    • H04Q7/38H04L12/56G06F15/173
    • H04L47/762H04H20/42H04H20/67H04L5/023H04L47/12H04L47/14H04L47/15H04L47/70H04L47/806H04L47/824H04W4/06H04W16/02H04W16/10H04W16/12H04W28/16H04W72/04
    • The invention involves management of communication resources (40, 45) in a network (1) utilizing multi-node-adapted resources (40) for transmission of multi-node-associated information and single-node-adapted resources (45) for transmission of single-node-associated information. A default resource allocation (60) specifying, for all transmitter nodes (10, 15) in the network (1), when the respective resource type is available for usage is defined. A subset (10) of the nodes in the network (1) estimates an expected amount of multi and/or single-node-associated information to be transmitted by the node subset (10). The default resource allocation (60) is then dynamically adjusted, for the node subset (10), based on the estimated expected information amount, implying that the physical resources (40, 45) defined by the default time structure (60) are dynamically shared in the frequency domain. According to the adjusted default resource allocation (65), a multi/single-node-adapted resource (40) will be allocated for transmission, by the node subset (10), of single/multi-node-associated information.
    • 本发明涉及利用多节点适配资源(40)来管理网络(1)中的通信资源(40,45),用于传输多节点相关信息和单节点适配资源(45),用于传输 单节点关联信息。 对于相应的资源类型可用于使用,默认资源分配(60)指定对于网络(1)中的所有发射机节点(10,15)。 网络(1)中的节点的子集(10)估计要由节点子集(10)发送的多个和/或单个节点相关信息的期望量。 然后,基于估计的预期信息量动态地调整对于节点子集(10)的默认资源分配(60),这意味着由默认时间结构(60)定义的物理资源(40,45)被动态共享 在频域。 根据经调整的默认资源分配(65),将分配多/单节点适配资源(40),用于由节点子集(10)传输单/多节点相关信息。
    • 10. 发明申请
    • METHODS AND DEVICES IN COMMUNICATION SYSTEM
    • 通信系统中的方法和设备
    • WO2013180694A1
    • 2013-12-05
    • PCT/US2012/039921
    • 2012-05-30
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)KOORAPATY, HavishFRENGER, PålGUEY, Jiann-Ching
    • KOORAPATY, HavishFRENGER, PålGUEY, Jiann-Ching
    • H04W36/00
    • H04W60/04H04W24/02H04W48/14H04W48/20H04W88/10H04W88/12H04W92/20
    • The disclosure relates to a method (30) performed in second network node (7 1 ,..., 7 n ) of a communication system (1, 1') adapted for wireless communication and comprising a first network node (3 1 , 3 2 ) adapted to operate in a mode of operation according to a first communication standard and a user device (10) adapted to operate according to the first communication standard. The second network node (7 1 ,..., 7 n ) is adapted to operate in a mode of operation according to a second communication standard, and adapted to receive uplink signaling in accordance with the first communication standard. The method (30) comprises receiving (31) an access request from the user device (10) in accordance with the first communication standard, and enabling (32) a communication channel for the user device (10) by relaying the received access request to the first network node (3 1 , 3 2 ) or by switching from the mode of operation according to the second communication standard, to a mode of operation according to the first communication standard.
    • 本公开涉及一种在适于无线通信的通信系统(1,1')的第二网络节点(71,...,7n)中执行的方法(30),包括:第一网络节点(31,32) 以根据第一通信标准的操作模式和适于根据第一通信标准进行操作的用户设备(10)进行操作。 第二网络节点(71,...,7n)适于根据第二通信标准在操作模式下操作,并且适于根据第一通信标准接收上行链路信令。 方法(30)包括根据第一通信标准接收(31)来自用户设备(10)的接入请求,并且通过将接收到的接入请求中继到(32)用户设备(10)的通信信道 第一网络节点(31,32)或者根据第二通信标准从操作模式切换到根据第一通信标准的操作模式。