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    • 2. 发明申请
    • JOINT MANAGEMENT OF RADIO AND TRANSPORT RESOURCES
    • 无线电和运输资源的联合管理
    • WO2012123867A1
    • 2012-09-20
    • PCT/IB2012/051101
    • 2012-03-09
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)GUEY, Jiann-ChingWONG, Shing-WaCHENG, Jung-FuHUI, Dennis
    • GUEY, Jiann-ChingWONG, Shing-WaCHENG, Jung-FuHUI, Dennis
    • H04W28/16
    • H04W28/16H04W72/04H04W92/12
    • A system for managing radio access resources includes a joint radio resource management/transport resource management unit configured to communicate with a plurality of radio units over a transport network, to jointly allocate radio resources at the radio unit and transport resources on the transport network in response to requests from wireless terminals requesting access to radio resources from the radio units, to send a radio resource allocation schedule to the plurality of radio units that defines radio resource allocations for the wireless terminals, and to generate a transport resource allocation schedule that defines transport resource allocations for the wireless terminals. The system further includes a transport resource controller configured to receive the transport resource allocation schedule and to map user data to physical transport resources on the transport network in response to the transport resource allocation schedule.
    • 用于管理无线电接入资源的系统包括:联合无线电资源管理/传输资源管理单元,被配置为通过传输网络与多个无线电单元进行通信,以在无线电单元处共同分配无线电资源并响应于传输网络上的资源传输 向来自无线单元请求接入无线电资源的无线终端的请求向定义无线终端的无线资源分配的多个无线单元发送无线资源分配调度,并生成定义传输资源的传输资源分配调度 为无线终端分配。 该系统还包括传输资源控制器,其被配置为接收传输资源分配调度,并且响应于传输资源分配调度,将用户数据映射到传输网络上的物理传输资源。
    • 7. 发明申请
    • EXPLOITING CHANNEL TIME CORRELATION TO REDUCE CHANNEL STATE INFORMATION FEEDBACK BITRATE
    • 消除通道时间关联以减少通道状态信息反馈双向
    • WO2011141836A1
    • 2011-11-17
    • PCT/IB2011/051758
    • 2011-04-21
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)CHENG, Jung-FuHUI, DennisZANGI, KambizKRASNY, Leonid
    • CHENG, Jung-FuHUI, DennisZANGI, KambizKRASNY, Leonid
    • H04L1/00H04B7/06H04L1/20H04B7/04H04B17/00
    • H04W72/0413H04L1/0019H04L1/0028H04L1/20H04W72/042
    • The required bitrate for reporting channel state information from a network transceiver to the network is dramatically reduced, while maintaining fidelity of channel estimates, by exploiting prior channel estimates and the time correlation of channel response. For a selected set of sub-carriers, the transceiver estimates channel frequency response from pilot signals. The transceiver also predicts the frequency response for each selected sub-carrier, by multiplying a state vector comprising prior frequency response estimate and a coefficient vector comprising linear predictive coefficients. The predicted frequency response is subtracted from the estimated frequency response, and the prediction error is quantized and transmitted to the network. The network maintains a corresponding state vector and predictive coefficient vector, and also predicts a frequency response for each selected sub-carrier. The received prediction error is inverse quantized and subtracted from the predicted frequency response to yield a frequency response corresponding to that estimated at the transceiver.
    • 通过利用先前的信道估计和信道响应的时间相关性,可以显着降低从网络收发器向网络报告信道状态信息所需的比特率,同时保持信道估计的保真度。 对于所选择的一组子载波,收发器估计来自导频信号的信道频率响应。 收发器还通过将包括先前频率响应估计的状态向量和包括线性预测系数的系数向量相乘来预测每个所选子载波的频率响应。 从估计的频率响应中减去预测的频率响应,并将预测误差量化并发送到网络。 网络维持相应的状态向量和预测系数向量,并且还预测每个选择的子载波的频率响应。 接收的预测误差被反量化,并从预测的频率响应中减去,以产生与在收发机处估计的频率响应相对应的频率响应。