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    • 1. 发明申请
    • Methods of Operating a Wireless Device, and Apparatus and Computer Programs Therefor
    • 无线设备的操作方法及其设备和计算机程序
    • US20140112175A1
    • 2014-04-24
    • US14059507
    • 2013-10-22
    • RENESAS MOBILE CORPORATION
    • Anna PANTELIDOUTimo Kalevi KOSKELAJuho Mikko Oskari PIRSKANENSami-Jukka HAKOLA
    • H04L5/00
    • H04L5/0073H04W28/26H04W72/1226H04W84/12
    • Embodiments of the present disclosure solve problems of throughput reduction due to collisions, busy medium, and deferred transmission due to overlapping wireless networks (e.g. 802.11 OBSS) by allowing devices suffering from overlapping interference to have sufficient chances to transmit and/or receive successfully. Embodiments include methods for a first device (e.g. 802.11 AP) to communicate data via a medium shared with other devices (e.g. 802.11 APs and/or STAs) located in an overlapping service area but not under common control with the first device. Embodiments also include methods for a first device (e.g. 802.11 AP) to negotiate reservation of a shared medium requested by a second device (e.g. 802.11 AP), the two devices being in overlapping service areas but not under common control. Embodiments include wireless communication devices (e.g. 802.11 APs) and computer programs or computer-readable media embodying one or more of the methods.
    • 本公开的实施例解决了由于通过允许遭受重叠干扰的设备具有足够的机会来成功发送和/或接收的由于重叠的无线网络(例如,802.11 OBSS)而导致的冲突,繁忙介质和延迟传输导致的吞吐量降低的问题。 实施例包括用于第一设备(例如,802.11AP)经由与位于重叠服务区域但不与第一设备共同控制的其他设备(例如,802.11 AP和/或STA)共享的介质来传送数据的方法。 实施例还包括用于第一设备(例如,802.11AP)协商由第二设备(例如,802.11 AP)请求的共享介质的预留的方法,所述两个设备处于重叠的服务区域,但不在共同控制下。 实施例包括实现一种或多种方法的无线通信设备(例如,802.11AP)和计算机程序或计算机可读介质。
    • 2. 发明申请
    • Sectorization for Grouping Terminals
    • 分组终端的部门化
    • US20140071847A1
    • 2014-03-13
    • US14021373
    • 2013-09-09
    • RENESAS MOBILE CORPORATION
    • Anna PANTELIDOUJari Tapani WESTMAN
    • H04L5/00
    • H04L5/0069H04L1/00H04W48/00H04W48/16H04W48/20Y02D70/00Y02D70/142Y02D70/144Y02D70/164Y02D70/21
    • A geographic region in which an access point AP lies is divided into sectors, each sector associated with a group; and a station is assigned to a group based on location information of the station relative to the sectors. The station can assign itself to a group autonomously, after determining the number of groups from signalling received from the AP. Or the AP can do the group assignments, such as by assessing distance between adjacent stations. The AP can utilize the station's location information to test whether a first link between the station and a first node of a first group is sufficient. If the test indicates that the first link is sufficient the AP can assign the station to the first group, else it will utilize the location information to test whether a second link between the station and a second node of a second group is sufficient.
    • 接入点AP所在的地理区域被划分为扇区,每个扇区与组相关联; 并且基于站相对于扇区的位置信息将站分配给组。 在从AP接收到的信令确定组数后,站可以自主地分配给一个组。 或者AP可以进行组分配,例如通过评估相邻站之间的距离。 AP可以利用站的位置信息来测试站和第一组的第一个节点之间的第一个链路是否足够。 如果测试指示第一链路足够,则AP可以将站分配给第一组,否则将利用位置信息来测试站与第二组的第二节点之间的第二链路是否足够。