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    • 3. 发明申请
    • SYSTEMS AND METHODS FOR INTELLIGENT DISCARD IN A COMMUNICATION NETWORK
    • 通信网络中智能查询的系统和方法
    • US20110292796A1
    • 2011-12-01
    • US13207159
    • 2011-08-10
    • Kenneth StanwoodDavid Gell
    • Kenneth StanwoodDavid Gell
    • H04W28/08
    • H04L47/32H04L41/0645H04L41/0893H04L41/0896H04L41/5009H04L41/5035H04L41/5067H04L47/12H04L47/20H04W28/24
    • Systems and methods for optimizing system performance of capacity and spectrum constrained, multiple-access communication systems by selectively discarding packets are provided. The systems and methods provided herein can drive changes in the communication system using control responses. One such control responses includes the optimal discard (also referred to herein as “intelligent discard”) of network packets under capacity constrained conditions. Some embodiments provide an interactive response by selectively discarding packets to enhance perceived and actual system throughput, other embodiments provide a reactive response by selectively discarding data packets based on their relative impact to service quality to mitigate oversubscription, others provide a proactive response by discarding packets based on predicted oversubscription, and others provide a combination thereof
    • 提供了通过选择性地丢弃数据包来优化容量和频谱约束的系统性能的多址通信系统的系统和方法。 本文提供的系统和方法可以使用控制响应来驱动通信系统中的变化。 一种这样的控制响应包括在容量限制条件下的网络分组的最佳丢弃(在本文中也称为“智能丢弃”)。 一些实施例通过选择性地丢弃分组以提高感知和实际的系统吞吐量来提供交互式响应,其他实施例通过根据其对服务质量的相对影响选择性地丢弃数据分组来提供反应性响应,以减轻超额预订,其他实施例通过基于分组丢弃来提供主动响应 预测超额预订,其他提供其组合
    • 4. 发明申请
    • System and method for wireless communication in a time division duplexing region
    • 时分双工区域无线通信系统和方法
    • US20080107049A1
    • 2008-05-08
    • US11969770
    • 2008-01-04
    • Kenneth StanwoodIsrael Klein
    • Kenneth StanwoodIsrael Klein
    • H04J3/00
    • H04B7/2621H04B7/2656H04B7/2687
    • A method and system for using half-duplex base stations and half-duplex nodes in a Frequency Division Duplexing region to provide wireless connectivity between the half-duplex base stations and customers in multiple sectors of a cell. The method and system can use two physical channels to form two logical channels. Each logical channel shares both physical channels during alternating frames of time. The half-duplex nodes can include a millimeter-wave band frequency synthesizer configured to transmit and receive on different channels to and from the half-duplex base station. Re-use patterns of the physical channels are used for deployment of half-duplex base stations and half-duplex nodes in the FDD region to minimize co-channel interference and interference due to uncorrelated rain fade. Additional methods and systems utilize full-duplex base stations and smart antenna to communicate with the half-duplex nodes.
    • 一种在频分双工区域中使用半双工基站和半双工节点的方法和系统,用于提供半双工基站与小区多个扇区中的客户之间的无线连接。 该方法和系统可以使用两个物理信道来形成两个逻辑信道。 每个逻辑信道在交替的时间帧期间共享物理信道。 半双工节点可以包括毫米波频率频率合成器,其被配置为在与半双工基站的不同信道上进行发送和接收。 物理信道的重用模式用于在FDD区域中部署半双工基站和半双工节点,以使由于不相关的降雨衰落引起的同信道干扰和干扰最小化。 其他方法和系统利用全双工基站和智能天线与半双工节点进行通信。
    • 8. 发明授权
    • Systems and methods for prioritizing and scheduling packets in a communication network
    • 在通信网络中对数据包进行优先排序和调度的系统和方法
    • US09065779B2
    • 2015-06-23
    • US13236308
    • 2011-09-19
    • Kenneth StanwoodDavid GellYiliang Bao
    • Kenneth StanwoodDavid GellYiliang Bao
    • H04J1/16H04J3/14H04L1/00H04L12/26H04L12/28H04L12/16H04L12/863H04L12/801H04W72/12
    • H04L47/623H04L47/12H04W72/1242
    • Systems and methods provide a weight-based scheduling system that incorporates end-user application awareness and can be used with scheduling groups that contain data streams from heterogeneous applications. Individual data queues within a scheduling group can be created based on application class, specific application, individual data streams or some combination thereof. Application information and Application Factors (AF) are used to modify scheduler weights to differentiate between data streams assigned to a scheduling group. Dynamic AF settings may adjust relative importance of user applications to maximize user Quality of Experience (QoE) in response to recurring network patterns, one-time events, application characteristics, protocol characteristics, device characteristics, service level agreements, or combinations thereof. Scheduling weights may be dynamic and incorporate the notions of “duration neglect” and “recency effect” in an end-user's perception of video quality in order to optimally manage video traffic during periods of congestion.
    • 系统和方法提供了基于权重的调度系统,其结合最终用户应用程序感知,并且可以与包含异构应用程序的数据流的调度组一起使用。 可以基于应用程序类,特定应用程序,单个数据流或其某种组合来创建调度组内的各个数据队列。 应用信息和应用因子(AF)用于修改调度器权重以区分分配给调度组的数据流。 动态AF设置可以调整用户应用程序的相对重要性,以响应循环网络模式,一次性事件,应用特性,协议特性,设备特性,服务级别协议或其组合来最大化用户体验质量(QoE)。 调度权重可以是动态的,并且在最终用户对视频质量的感知中并入“持续时间忽视”和“近似效应”的概念,以便在拥塞期间最佳地管理视频流量。
    • 10. 发明申请
    • SYSTEMS AND METHODS FOR INTELLIGENT DISCARD IN A COMMUNICATION NETWORK
    • 通信网络中智能查询的系统和方法
    • US20120033573A1
    • 2012-02-09
    • US13270122
    • 2011-10-10
    • Kenneth StanwoodDavid Gell
    • Kenneth StanwoodDavid Gell
    • H04L12/26H04W4/00
    • H04L47/32H04L41/0645H04L41/0893H04L41/0896H04L41/5009H04L41/5035H04L41/5067H04L47/12H04L47/20H04W28/24
    • Systems and methods for optimizing system performance of capacity and spectrum constrained, multiple-access communication systems by selectively discarding packets are provided. The systems and methods provided herein can drive changes in the communication system using control responses. One such control responses includes the optimal discard (also referred to herein as “intelligent discard”) of network packets under capacity constrained conditions. Some embodiments provide an interactive response by selectively discarding packets to enhance perceived and actual system throughput, other embodiments provide a reactive response by selectively discarding data packets based on their relative impact to service quality to mitigate oversubscription, others provide a proactive response by discarding packets based on predicted oversubscription, and others provide a combination thereof.
    • 提供了通过选择性地丢弃数据包来优化容量和频谱约束的系统性能的多址通信系统的系统和方法。 本文提供的系统和方法可以使用控制响应来驱动通信系统中的变化。 一种这样的控制响应包括在容量限制条件下的网络分组的最佳丢弃(在本文中也称为“智能丢弃”)。 一些实施例通过选择性地丢弃分组以提高感知和实际的系统吞吐量来提供交互式响应,其他实施例通过根据其对服务质量的相对影响选择性地丢弃数据分组来提供反应性响应,以减轻超额预订,而其他实施例通过基于分组丢弃来提供主动响应 预测超额预订,其他提供其组合。