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    • 2. 发明申请
    • DEVICES AND METHODS FOR ASYMMETRICAL MULTICARRIER TRANSMISSION AND RECEPTION
    • 非对称多媒体传输和接收的设备和方法
    • US20160043859A1
    • 2016-02-11
    • US14857429
    • 2015-09-17
    • AT&T Mobility II LLC
    • Arthur Richard BriseboisYung Shirley Choi-GroganMelvin D. FrerkingThomas KeathleyWilliam Gordon MansfieldAlain OhanaDavid Grant Shively
    • H04L5/16H04W72/12
    • H04L5/16H04W72/1263
    • A duplex frequency is supplemented by providing simplex frequencies and distributing a data load among them. A server initially communicates with a communications device using a duplex channel. A scheduler of the server determines when it is no longer optimal to use the single duplex channel, and distributes data among the duplex channel and the simplex channels. Before sending this data through multiple channels, the server first sends a schedule to the communications device to inform which bits of data are coming through which channels at which times. The scheduler compiles this schedule and sends it to the communications device through the duplex channel. A descheduler within the communications device receives the schedule and alerts the communications device to start receiving data on other simplex channels. The descheduler then puts the bits of data in order as they stream in across the duplex and simplex channels.
    • 通过提供单工频率并在其间分配数据负载来补充双工频率。 服务器最初使用双工通道与通信设备通信。 服务器的调度器确定何时使用单一双工信道不再是最佳的,并且在双工信道和单工信道之间分配数据。 在通过多个信道发送数据之前,服务器首先向通信设备发送一个调度表,以通知哪些数据位在哪个时间通过哪个通道。 调度器编译该调度并通过双工通道将其发送到通信设备。 通信设备内的调度器接收该调度并通知通信设备开始在其他单工信道上接收数据。 然后,排他员在跨越双工和单工通道流入时将数据位按顺序放置。
    • 9. 发明申请
    • DYNAMIC CONTROL OF CELL RESELECTION PARAMETERS
    • 细胞参考参数的动态控制
    • US20150264630A1
    • 2015-09-17
    • US14722525
    • 2015-05-27
    • AT&T Mobility II LLC
    • David SaskaLouis FicarraKaushik GohelAlain Ohana
    • H04W48/06H04W28/08H04W48/20
    • H04W36/22H04W28/08H04W36/0066H04W36/20H04W36/30H04W48/02H04W48/06H04W48/16H04W48/18H04W48/20
    • Dynamic cell resource management in wireless networking. By way of example, user terminal access parameters can be dynamically modified based on changing load conditions at one or more cells of a wireless network. For instance, resource capacity of a wireless network cell can be monitored over time to identify a potential resource overload condition. If such a condition occurs, a load management algorithm can be executed that progressively restricts or de-restricts user terminal access parameters based on changing load conditions. In particular aspects, the load management algorithm can analyze relative cell load of neighboring cells to implement coordinated load sharing. By dynamically modifying user access parameters, traffic can be directed toward or away from cells operating at low or high capacity, respectively.
    • 无线网络中的动态小区资源管理。 作为示例,可以基于无线网络的一个或多个小区处的变化的负载条件来动态修改用户终端接入参数。 例如,可以随时间监视无线网络小区的资源容量,以识别潜在的资源过载状况。 如果发生这种情况,则可以执行负载管理算法,其基于改变的负载条件逐渐地限制或解除限制用户终端访问参数。 在特定方面,负载管理算法可以分析相邻小区的相对小区负载,实现协调的负载分担。 通过动态地修改用户访问参数,流量可以分别指向或远离处于低容量或高容量的小区。