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    • 22. 发明授权
    • Inquiring of a protected communications services database to address concerns over blind base station operation in conflict with protected communications services
    • 查询受保护的通信服务数据库,以解决与受保护通信业务冲突的盲基站操作的担忧
    • US08275363B2
    • 2012-09-25
    • US13350574
    • 2012-01-13
    • Zhen Ning Peng
    • Zhen Ning Peng
    • H04M3/42
    • H04W16/14H04W48/16
    • A database stores updated information concerning protected communications services. A base station for a coexisting, and potentially co-channel, non-protected communications service makes an inquiry of the database requesting an identification of geographically relevant protected services along with the database stored information pertinent to each of those identified protected services. The returned information is processed by the base station to determine what channels are available for use by the non-protected service. An available channel is identified by the base station as the working channel for the non-protected service and the base station initiates a process to establish a communications network using the non-protected service and the selected working channel.
    • 数据库存储有关受保护通信服务的更新信息。 用于共存和潜在的共通道的非保护通信服务的基站对数据库进行询问,请求对地理相关的受保护服务进行识别,以及与所识别的每个受保护服务相关的数据库存储的信息。 返回的信息由基站处理,以确定哪些通道可供无保护服务使用。 可用信道由基站识别为用于非保护业务的工作信道,并且基站发起使用非受保护业务和所选工作信道建立通信网络的过程。
    • 25. 发明申请
    • APPARATUS UTILIZING EFFICIENT HARDWARE IMPLEMENTATION OF SHADOW REGISTERS AND METHOD THEREOF
    • 利用有效的硬件实现方法的设备及其方法
    • US20100205387A1
    • 2010-08-12
    • US12690719
    • 2010-01-20
    • Hong-Xia SunPeng Fei ZhuYong Qiang Wu
    • Hong-Xia SunPeng Fei ZhuYong Qiang Wu
    • G06F12/00
    • G06F9/30116G06F9/30123G06F9/384G06F9/3863
    • Embodiments of a processor architecture efficiently implement shadow registers in hardware. A register system in a processor includes a set of physical data registers coupled to register renaming logic. The register renaming logic stores data in and retrieves data from the set of physical registers when the processor is in a first processor state. The register renaming logic identifies ones of the set of physical registers that have a first operational state as a first group of registers and identifies the remaining ones of the set of physical registers as a second group of registers in response to an indication that the processor is to enter a second processor state from the first processor state. The register renaming logic stores data in and retrieves data from the second group of registers but not the first group of registers when the processor is in the second processor state.
    • 处理器架构的实施例在硬件中有效地实现影子寄存器。 处理器中的寄存器系统包括耦合到寄存器重命名逻辑的一组物理数据寄存器。 当处理器处于第一处理器状态时,寄存器重命名逻辑将数据存储在物理寄存器组中并从中检索数据。 寄存器重命名逻辑将具有第一操作状态的一组物理寄存器中的一个标识为第一组寄存器,并且响应于处理器的指示,将该组物理寄存器中的剩余的一组标识为第二组寄存器 从第一处理器状态进入第二处理器状态。 当处理器处于第二处理器状态时,寄存器重命名逻辑将数据存储在第二组寄存器中,而不是第一组寄存器中的数据。