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    • 1. 发明申请
    • METHOD AND APPARATUS FOR EFFICIENT SPECTRUM MANAGEMENT IN A COMMUNICATIONS NETWORK
    • 通信网络中有效的频谱管理的方法和设备
    • WO2008063790A2
    • 2008-05-29
    • PCT/US2007/081364
    • 2007-10-15
    • MOTOROLA, INC.LEVINE, Stephen N.LEE, Whay ChiouKHAWAND, CharbelKLOKER, Kevin L.
    • LEE, Whay ChiouKHAWAND, CharbelKLOKER, Kevin L.
    • G06F17/00
    • H04L41/0893H04W16/14H04W28/18
    • A method and apparatus for efficient management of hierarchically administered spectrum resources in a communications network are disclosed. The method may include receiving a request for a policy decision from a policy enforcement point at a current policy decision point level in a hierarchy of policy decision points, determining whether the request can be satisfied at the current policy decision point level, wherein if the request cannot be satisfied at the current policy decision point level, forwarding the request to a policy decision point at a policy decision point level that is higher in the hierarchy, otherwise retrieving policy information from a policy database, determining a policy decision, wherein if the request was received from the policy enforcement point at the current policy decision point hierarchy level, sending the policy decision to the policy enforcement point at the current policy decision point level in the hierarchy, otherwise, sending the policy decision to a policy decision point level lower in the hierarchy.
    • 公开了一种用于在通信网络中有效管理分层管理的频谱资源的方法和装置。 该方法可以包括在策略决策点的层次结构中从策略执行点接收当前策略决策点级别的策略决定请求,确定在当前策略决策点级别是否可以满足请求,其中如果请求 在当前的策略决策点级别不能满足,将请求转发到在层次结构中较高的策略决策点级别的策略决策点,否则从策略数据库中检索策略信息,确定策略决定,其中如果请求 在当前政策决策点层次结构层次上从政策执行点收到,将政策决定发送到层次结构当前政策决策点层级的政策执行点,否则将政策决策发送到低于 层次结构。
    • 4. 发明申请
    • METHOD AND APPARATUS FOR SHARING MEMORY IN A MULTIPROCESSOR SYSTEM
    • 用于在多处理器系统中共享存储器的方法和装置
    • WO2007037843A2
    • 2007-04-05
    • PCT/US2006/032634
    • 2006-08-22
    • MOTOROLA, INC.KHAWAND, CharbelKHAWAND, JeanLIU, Bin
    • KHAWAND, CharbelKHAWAND, JeanLIU, Bin
    • G06F5/00
    • G06F9/5016
    • A multiprocessor system (100) for sharing memory has a memory (102), and two or more processors (104). The processors are programmed to establish (202) memory buffer pools between the processors, and for each memory buffer pool, establish (204) an array of buffer pointers that point to corresponding memory buffers. The processors are further programmed to, for each array of buffer pointers, establish (206) a consumption pointer for the processor owning the memory buffer pool, and a release pointer for another processor sharing said memory buffer pool, each pointer initially pointing to a predetermined location of the array, and adjust (208-236) the consumption and release pointers according to buffers consumed and released.
    • 用于共享存储器的多处理器系统(100)具有存储器(102)和两个或更多个处理器(104)。 处理器被编程为在处理器之间建立(202)存储器缓冲池,并且对于每个存储器缓冲池,建立指向相应存储器缓冲器的缓冲器指针阵列(204)。 处理器进一步被编程为对于每个缓冲器指针阵列,建立(206)用于处理器拥有存储器缓冲池的消耗指针,以及用于共享所述存储器缓冲池的另一个处理器的释放指针,每个指针最初指向预定的 阵列的位置,并根据消耗和释放的缓冲区调整(208-236)消耗和释放指针。
    • 6. 发明申请
    • INTERPROCESSOR COMMUNICATION NETWORK PROVIDING DYNAMIC DEDICATION OF PORTS
    • 交互式通信网络提供端口的动态度量
    • WO2005062787A2
    • 2005-07-14
    • PCT/US2004/042402
    • 2004-12-16
    • MOTOROLA, INC.KHAWAND, Charbel
    • KHAWAND, Charbel
    • H04L29/08
    • H04L67/14H04L67/10H04L67/40
    • An IPC protocol/network allows for dynamic dedication of ports in order to reduce system latencies and power consumption. The IPC system allows for either the IPC server or any of the IPC clients to request that a port(s) be dedicated for use in the transfer of data, such as real-time data. The request for a port can occur for example by a client transmitting a control message to the server/another client requesting that a particular port be dedicated for its use. The server and client(s) negotiate the port dedication and once dedicated, the client can use the dedicated port to transfer its data either to the server or to another client. In one embodiment, the server can take away a dedicated port if it determines it needs the port for another data transfer that may be more critical or have a higher priority.
    • IPC协议/网络允许端口的动态投入,以减少系统延迟和功耗。 IPC系统允许IPC服务器或任何IPC客户端请求专用于传输数据(例如实时数据)的端口。 对端口的请求可以例如由客户端向服务器/另一个客户端发送控制消息,请求特定端口专用于其使用。 服务器和客户端协商端口奉献,一旦专用,客户端可以使用专用端口将其数据传输到服务器或另一个客户端。 在一个实施例中,如果服务器确定需要用于可能更关键或具有较高优先级的另一数据传输的端口,则可以取走专用端口。
    • 8. 发明申请
    • FAST SYNCHRONIZATION FOR HALF DUPLEX DIGITAL COMMUNICATIONS
    • 用于半双工数字通信的快速同步
    • WO2005002119A2
    • 2005-01-06
    • PCT/US2004/018448
    • 2004-06-09
    • MOTOROLA, INC.LIU, BinKHAWAND, CharbelMILLER, Jianping, W.
    • LIU, BinKHAWAND, CharbelMILLER, Jianping, W.
    • H04L
    • H04B1/7156H04B2001/71563H04B2001/71566
    • Half duplex, Frequency Hopped-Spread Spectrum wireless transceivers (102), operating without a central controller, maintain time synchronization with the frequency hopping sequence for a period after transmission of a half duplex signal ceases. The wireless transceiver (102) operates their receivers (308) according to the RF frequency hopping sequence and schedule (200). The wireless transceiver (102) is then able to send a short transmission request to signal that it will start transmitting on the Frequency Hopping schedule (200) of the previously ceased transmission. A wireless transceiver (102) that was either the original transmitter or the original receiver is able to transmit this transmission request. A subset of time slots within the hopping schedule (200) can be optionally assigned to the original transmitter and original receiver to obviate collisions of the transmit request transmissions from both device at the same time.
    • 半双工,跳频扩频无线收发器(102)在没有中央控制器的情况下运行,在半双工信号传输停止之后的一段时间内保持与跳频序列的时间同步。 无线收发器(102)根据RF跳频序列和时间表(200)操作其接收机(308)。 无线收发器(102)然后能够发送短的传输请求,以发信号通过先前停止的传输的跳频计划(200)开始发送。 作为原始发送器或原始接收器的无线收发器(102)能够发送该发送请求。 可以可选地将跳频计划(200)内的时隙的子集分配给原始发射机和原始接收机,以同时消除来自两个装置的发射请求传输的冲突。