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    • 1. 发明申请
    • OPPORTUNISTIC UPLINK SCHEDULING
    • 机会性UPLINK调度
    • WO2009067589A1
    • 2009-05-28
    • PCT/US2008/084180
    • 2008-11-20
    • QUALCOMM INCORPORATEDWU, XinzhouRANGAN, SundeepHANDE, PrashanthDAS, ArnabLI, Junyi
    • WU, XinzhouRANGAN, SundeepHANDE, PrashanthDAS, ArnabLI, Junyi
    • H04W72/08H04W72/12
    • H04W72/082H04W72/0406H04W72/12
    • A system and a method that facilitates scheduling uplink transmissions in a communication network including a first base station that includes a first sector uitlizing a static interference budget with multi-carriers, comprising: receiving channel quality reports from one or more mobile device (1402) : scheduling a first mobile device for uplink transmission from a first sector on a first channel during a first time slot based on a first interference budget level, the first channel includes a first frequency bandwidth, (1404) : scheduling a second mobile device for uplink transmission from the first sector on a second channel during the first time slot based on a second interference budget level (1406), the second channel includes a second frequency bandwidth and the first and second interference budgets differ by at least 0.5 dB; and transmitting assignments to the first mobile device and the second mobile device related to the scheduled uplink transmissions (1408).
    • 一种有助于在包括第一部分的第一基站的通信网络中调度上行链路传输的系统和方法,所述第一基站包括:利用多载波来排除静态干扰预算,包括:从一个或多个移动设备接收信道质量报告(1402): 基于第一干扰预算级别,在第一时隙期间调度用于在第一信道上的第一扇区的上行链路传输的第一移动设备,所述第一信道包括第一频带宽度,(1404):调度用于上行链路传输的第二移动设备 基于第二干扰预算级别(1406),在第一时隙期间从第一信道上的第一扇区开始,第二信道包括第二频带宽度,第一和第二干扰预算相差至少0.5dB; 以及向所述第一移动设备和所述第二移动设备发送与所调度的上行链路传输相关的分配(1408)。
    • 2. 发明申请
    • OPPORTUNISTIC UPLINK SCHEDULING
    • 机会性UPLINK调度
    • WO2009067593A1
    • 2009-05-28
    • PCT/US2008/084184
    • 2008-11-20
    • QUALCOMM INCORPORATEDWU, XinzhouRANGAN, SundeepHANDE, PrashanthDAS, ArnabLI, Junyi
    • WU, XinzhouRANGAN, SundeepHANDE, PrashanthDAS, ArnabLI, Junyi
    • H04W72/08H04W72/12
    • H04W72/1231H04W72/1268
    • A system and a method that facilitates scheduling uplink transmissions in a communication network including a first base station that includes a first sector employing a dynamic interference budget, comprising: receiving channel quality reports from one or more mobile devices (1502), - scheduling a first mobile device for uplink transmission from a first sector on a first channel during a first time slot based on a first interference budget level (1504); scheduling a second mobile device for uplink transmission from the first sector on the first channel during a second time slot based on a second interference budget level (1506), the first interference budget level and the second interference budget level being determined from a first interference budget pattern that varies over time; and transmitting assignments to the first mobile device and the second mobile device related to the scheduled uplink transmissions (1508).
    • 一种有利于在包括采用动态干扰预算的第一扇区的第一基站的通信网络中调度上行链路传输的系统和方法,包括:从一个或多个移动设备接收信道质量报告(1502), - 调度第一 移动设备,用于在第一时隙期间从第一信道上的第一扇区基于第一干扰预算级别(1504)进行上行链路传输; 基于第二干扰预算水平(1506),在第二时隙期间调度第二移动设备以从第一信道上的第一扇区进行上行链路传输,所述第一干扰预算级别和所述第二干扰预算级别是根据第一干扰预算确定的 随时间变化的图案; 以及向所述第一移动设备和所述第二移动设备发送与所调度的上行链路传输相关的分配(1508)。
    • 4. 发明申请
    • OPPORTUNISTIC UPLINK SCHEDULING
    • 机会上行调度
    • WO2009067602A1
    • 2009-05-28
    • PCT/US2008/084197
    • 2008-11-20
    • QUALCOMM INCORPORATEDWU, XinzhouRANGAN, SundeepHANDE, PrashanthDAS, ArnabLI, Junyi
    • WU, XinzhouRANGAN, SundeepHANDE, PrashanthDAS, ArnabLI, Junyi
    • H04W72/08
    • H04W72/1231H04W72/1278
    • Systems and methodologies are described that facilitate scheduling uplink transmissions. For instance, a time sharing scheme can be utilized such that differing mobile devices can be scheduled to transmit during differing time slots; however, it is also contemplated that a static scheme can be employed. Pursuant to an illustration, an interference budget can be combined with a time varying weighting factor associated with a base station; the weighting factor can be predefined and/or adaptively adjusted (e.g., based upon a load balancing mechanism). Moreover, the weighted interference budget can be leveraged for selecting mobile devices for uplink transmission (e.g., based at least in part upon path loss ratios of the mobile devices). Further, disparate interference budgets can be utilized by differing channels of a sector at a particular time. Also, for example, a base station can assign a loading factor to be utilized by wireless terminal(s) for generating channel quality report(s).
    • 描述了便于调度上行链路传输的系统和方法。 例如,可以利用时间共享方案,使得可以调度不同的移动设备以在不同的时隙期间进行发送; 然而,也可以设想可以采用静态方案。 根据说明,干扰预算可以与与基站相关联的随时间变化的加权因子组合; 加权因子可以被预定义和/或自适应地调整(例如,基于负载平衡机制)。 此外,可以利用加权干扰预算来选择用于上行链路传输的移动设备(例如,至少部分地基于移动设备的路径损耗比率)。 此外,不同的干扰预算可以由特定时间的扇区的不同信道使用。 而且,例如,基站可以分配无线终端用于生成信道质量报告的负载因子。
    • 5. 发明申请
    • OPPORTUNISTIC UPLINK SCHEDULING
    • 机会性UPLINK调度
    • WO2009067599A1
    • 2009-05-28
    • PCT/US2008/084191
    • 2008-11-20
    • QUALCOMM INCORPORATEDWU, XinzhouRANGAN, SundeepHANDE, PrashanthDAS, ArnabLI, Junyi
    • WU, XinzhouRANGAN, SundeepHANDE, PrashanthDAS, ArnabLI, Junyi
    • H04W72/08
    • H04W72/085H04W72/0406
    • Systems and methodologies are described that facilitate scheduling uplink transmissions. For instance, a time sharing scheme can be utilized such that differing mobile devices can be scheduled to transmit during differing time slots; however, it is also contemplated that a static scheme can be employed. Pursuant to an illustration, an interference budget can be combined with a time varying weighting factor associated with a base station; the weighting factor can be predefined and/or adaptively adjusted (e.g., based upon a load balancing mechanism). Moreover, the weighted interference budget can be leveraged for selecting mobile devices for uplink transmission (e.g., based at least in part upon path loss ratios of the mobile devices). Further, disparate interference budgets can be utilized by differing channels of a sector at a particular time. Also, for example, a base station can assign a loading factor to be utilized by wireless terminal(s) for generating channel quality report(s).
    • 描述了有助于调度上行链路传输的系统和方法。 例如,可以利用时间共享方案,使得不同的移动设备可以被调度为在不同时隙期间进行传输; 然而,也可以考虑采用静态方案。 根据图示,可以将干扰预算与与基站相关联的时变加权因子组合; 加权因子可以被预先定义和/或自适应地调整(例如,基于负载均衡机制)。 此外,加权干扰预算可以用于选择用于上行链路传输的移动设备(例如,至少部分地基于移动设备的路径损耗比率)。 此外,不同的干扰预算可以在特定时间由扇区的不同信道来利用。 此外,例如,基站可以分配要由无线终端利用以产生信道质量报告的负载因子。
    • 7. 发明申请
    • METHODS AND APPARATUS FOR COMMUNICATING AND/OR USING LOAD INFORMATION IN SUPPORT OF DECENTRALIZED TRAFFIC SCHEDULING DECISIONS
    • 用于交流和/或使用负载信息支持分散交通调度决策的方法和装置
    • WO2009129268A2
    • 2009-10-22
    • PCT/US2009/040576
    • 2009-04-14
    • QUALCOMM INCORPORATEDHANDE, PrashanthWU, XinzhouRANGAN, Sundeep
    • HANDE, PrashanthWU, XinzhouRANGAN, Sundeep
    • H04L12/56H04W40/16
    • H04W28/02H04L47/70H04W72/1252H04W74/002H04W84/18
    • Methods and apparatus related to communicating and/or using load information in support of decentralized traffic scheduling decisions are described. Individual wireless terminals corresponding to a peer to peer connection which desire to communicate traffic signals make transmitter yielding and/or receiver yielding decisions on a traffic slot by traffic slot basis. Loading information is used to intentionally skew transmitter yielding decisions in response to conditions and/or needs in the system. A link load weight value is generated based on intended transmitter loading related information and/or intended receiver loading related information. Traffic request parameters and/or link load weight values are communicated between wireless communications devices in request and/or request response signaling. As part of a transmitter yielding decision, one or more of: a spillage value, weighted SINR, and an interference cost estimate is calculated based on: one or more link load weight values and channel condition measurement information.
    • 描述了与支持分散式业务调度决策的通信和/或使用负载信息有关的方法和装置。 对应于对等连接的各个无线终端,其希望传送业务信号使业务时隙基于业务时隙的发射机收敛和/或接收机生成决定。 加载信息用于有意地根据系统中的条件和/或需要来偏移发射机的出错决定。 基于预期的发射机加载相关信息和/或预期的接收机负载相关信息来生成链路负载权重值。 在请求和/或请求响应信令中的无线通信设备之间传送业务请求参数和/或链路负载权重值。 作为发射机产生决定的一部分,基于:一个或多个链路负载权重值和信道条件测量信息来计算溢出值,加权SINR和干扰成本估计中的一个或多个。