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    • 1. 发明申请
    • METHOD AND APPARATUS FOR GENERATING/PARSING RESOURCE ALLOCATION INDICATION MESSAGE
    • 用于生成/分配资源分配指示消息的方法和装置
    • WO2011081355A3
    • 2011-11-10
    • PCT/KR2010009262
    • 2010-12-23
    • SAMSUNG ELECTRONICS CO LTDWANG HAIWU QICHAE SEONG-HYEONZHENG XUFENG
    • WANG HAIWU QICHAE SEONG-HYEONZHENG XUFENG
    • H04W72/04
    • H04W72/042
    • A method for generating/parsing a resource allocation indication message, a transmitter and a receiver are disclosed. In the method of the present invention, each resource unit is mapped to one bit, and information about service types provided by each serving zone is obtained by mapping an added virtual resource unit to one bit or by secondary mapping. Bits to which part of or all of the above resource units are mapped, or bits to which part of or all of the above resource units and the virtual resource unit are mapped, or bits to which part of or all of the above resource units are mapped and bits obtained by the secondary mapping, constitute a resource allocation indication, and the number of serving zones, the start resource unit and end resource unit of each serving zone and the service type of each serving zone can be learned according to the resource allocation indication and a prearrangement between the transmitter and the receiver. In the present invention, the overhead of indication is unrelated to the number of serving zones to be indicated, and obvious advantages can be obtained when the number of serving zones to be indicated changes in a large range and/or the number of serving zones to be indicated is large.
    • 公开了一种用于生成/解析资源分配指示消息的方法,发送器和接收器。 在本发明的方法中,将每个资源单元映射到一个比特,并且通过将添加的虚拟资源单元映射到一个比特或通过二次映射来获得关于由每个服务区域提供的服务类型的信息。 上述资源单元的一部分或全部被映射到的位,或上述资源单元和虚拟资源单元的一部分或全部被映射的位,或上述资源单元的一部分或全部的位 通过二次映射获得的映射和比特构成资源分配指示,并且可以根据资源分配来学习服务区域的数量,每个服务区域的开始资源单元和结束资源单元以及每个服务区域的服务类型 指示和发射机和接收机之间的预先布置。 在本发明中,指示开销与要指示的服务区域的数量无关,并且当要指示的服务区域的数量在大范围和/或服务区域的数量变化时可以获得明显的优点, 被指示是大的。
    • 2. 发明申请
    • A METHOD FOR RANDOM ACCESS OF MACHINE TO MACHINE (M2M) TERMINALS
    • 机器(M2M)端子随机访问的方法
    • WO2012118326A2
    • 2012-09-07
    • PCT/KR2012001500
    • 2012-02-28
    • SAMSUNG ELECTRONICS CO LTDZHOU LEIWANG HAIZHENG XUFENG
    • ZHOU LEIWANG HAIZHENG XUFENG
    • H04W74/08H04W68/02
    • H04W74/0833H04W4/005H04W4/08H04W68/02
    • A method for random access of Machine to Machine (M2M) terminals is applied in a situation involving a plurality of M2M terminals. The method comprises dividing the plurality of M2M terminals into at least one terminal group, and allocating an identifier for each terminal group; and after receiving the paging broadcast signaling transmitted by the base station, a M2M terminal in a terminal group determines whether the terminal group identifier carried in the paging broadcast signaling is the identifier of the terminal group that includes the M2M terminal, if yes, and the M2M terminal starts a random access process. A base station transmits a paging broadcast signaling on the basis of a terminal group rather than issuing a paging broadcast signaling only to individual M2M terminals so that a large amount of M2M terminals can be randomly accessed smoothly and efficiently without causing network access congestion nor affecting the use of public network users.
    • 在涉及多个M2M终端的情况下,应用机器对机器(M2M)终端的随机接入的方法。 该方法包括将多个M2M终端分成至少一个终端组,并为每个终端组分配一个标识符; 并且在接收到由基站发送的寻呼广播信令之后,终端组中的M2M终端确定寻呼广播信令中携带的终端组标识符是否包括M2M终端的终端组的标识符,如果是,则 M2M终端启动随机访问过程。 基站基于终端组发送寻呼广播信令,而不是向单个M2M终端发出寻呼广播信令,从而能够平滑有效地随机访问大量M2M终端,而不会造成网络接入拥塞,也不影响 使用公网用户。
    • 3. 发明申请
    • INTELLIGENT ASSISTED TRANSMISSION METHOD FOR MULTICAST BROADCAST SERVICE
    • 智能辅助传输方法在多播广播业务中的应用
    • WO2010093196A3
    • 2010-11-18
    • PCT/KR2010000902
    • 2010-02-12
    • SAMSUNG ELECTRONICS CO LTDWU QIWANG HAI
    • WU QIWANG HAI
    • H04W4/06H04L1/18
    • H04L1/1829H04L2001/0092H04W4/06
    • An intelligent assisted transmission method is provided. In the method, a Multicast and Broadcast Service (MCBCS) Server transmits Multicast Broadcast Service (MBS) data to a base station in an MBS area. The base station transmits the MBS data to a user equipment. If the user equipment cannot correctly receive the MBS data, it returns a Not Acknowledgement (NACK) message to the base station. The base station transmits an intelligent assisted transmission prompt to the MCBCS Server. The MCBCS Server transmits an intelligent assisted transmission request to adjacent base stations of the base station. When the intelligent assisted transmission request is received, the adjacent base stations return an intelligent assisted transmission response. The MCBCS Server transmits the MBS data to the adjacent base stations, and the adjacent base stations transmit the MBS data to the user equipment.
    • 提供智能辅助传输方法。 在该方法中,多播和广播服务(MCBCS)服务器将多播广播服务(MBS)数据发送到MBS区域中的基站。 基站将MBS数据发送给用户设备。 如果用户设备不能正确接收MBS数据,则它向基站返回不确认(NACK)消息。 基站向MCBCS服务器发送智能辅助传输提示。 MCBCS服务器向基站的相邻基站发送智能辅助传输请求。 当接收到智能辅助传输请求时,相邻基站返回智能辅助传输响应。 MCBCS服务器将MBS数据发送到相邻的基站,并且相邻的基站将MBS数据发送给用户设备。
    • 4. 发明申请
    • METHOD FOR TRANSMITTING PILOT SIGNAL IN MULTI-CARRIER WIRELESS TRANSMISSION SYSTEM
    • 在多载波无线传输系统中传输导频信号的方法
    • WO2011037362A2
    • 2011-03-31
    • PCT/KR2010006348
    • 2010-09-16
    • SAMSUNG ELECTRONICS CO LTDWANG HAIJOSIAM KAUSHIKWU QIPI ZHOUYUE
    • WANG HAIJOSIAM KAUSHIKWU QIPI ZHOUYUE
    • H04J11/00
    • H04L5/0048H04L5/0023
    • The present invention provides a method for transmitting pilots in a multi-carrier wireless transmission system. A wireless time-frequency transmission block is composed of N consecutive OFDM symbols in time domain and M consecutive physical sub-carriers in frequency domain, N and M are integers those are greater than or equal to 1. The method includes: partitioning the wireless time-frequency transmission block into several areas, and determining the position of pilots, of which the total number is a preset number, according to the time-frequency domain balancing principle of pilots of various antennas in various areas; inserting pilots at the pilot positions of each antenna corresponding to the antenna for transmission. In accordance with the present invention, the simultaneous transmission of multiple antennas is supported in a wireless time-frequency transmission block of a multi-carrier wireless transmission system.
    • 本发明提供了一种用于在多载波无线传输系统中传送导频的方法。 无线时频传输块由时域上N个连续的OFDM符号和频域上M个连续的物理子载波组成,N和M为大于或等于1的整数。该方法包括:将无线时间 根据各区域各天线导频的时频域平衡原理,确定总数为预设数量的导频位置; 将导频插入与天线对应的每个天线的导频位置进行传输。 根据本发明,在多载波无线传输系统的无线时频传输块中支持多天线的同时传输。
    • 6. 发明申请
    • TIME-DIVISION-BASED CHANNEL COLLISION COLLABORATION IN A DYNAMIC FREQUENCY HOPPING WIRELESS REGIONAL AREA NETWORK (WRAN)
    • 动态频率无线区域网络(WRAN)中的基于时间段的信道冲突协作
    • WO2009084847A3
    • 2009-10-22
    • PCT/KR2008007616
    • 2008-12-23
    • SAMSUNG ELECTRONICS CO LTDJINXIA CHENGWANG HAI
    • JINXIA CHENGWANG HAI
    • H04W72/10H04W72/08
    • H04W16/14H04W48/08H04W74/0808H04W84/12H04W92/02
    • A method of and system for time-division-based channel collision collaboration in a wireless communication system including at least two Wireless Regional Area Networks (WRANs) with overlapping service areas that employ dynamic frequency hopping is provided. The method includes performing, by at least one Consumer Premise Equipment (CPE) located in an overlapping portion of service areas of at least two WRANs, spectrum sensing and feeding idle channel information back to respective Base Stations (BSs) of the at least two WRANs, broadcasting, by each of the at least two WRANs, a pre-occupation announcement message for a qualified idle channel, and determining, by a WRAN with the highest priority of the at least two WRANs, a time resource allocation for WRANs in a channel collision state of the at least two WRANs. The method addresses problems, such as a large delay and impaired wireless access due to an absence of an idle channel for adjacent WRANs, may be avoided, while the WRANs may maintain their QoSs. Therefore, transmission power of a WRAN during non-operation period may be conserved.
    • 提供了一种包括具有采用动态跳频的重叠服务区的至少两个无线区域网(WRAN)的无线通信系统中基于时分的信道冲突协作的方法和系统。 该方法包括通过位于至少两个WRAN的服务区域的重叠部分中的至少一个消费者场所设备(CPE)执行频谱感测并将空闲信道信息馈送回至少两个WRAN的相应基站(BS) ,通过所述至少两个WRAN中的每一个广播广播用于合格空闲信道的预占用通告消息,并且通过所述至少两个WRAN中具有最高优先级的WRAN来确定信道中的WRAN的时间资源分配 至少两个WRAN的碰撞状态。 可以避免该方法解决诸如延迟大和由于相邻WRAN缺少空闲信道而导致的无线接入受损的问题,而WRAN可以维护它们的QoS。 因此,可以节省在非运行期间的WRAN的发送功率。