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    • 1. 发明申请
    • Uplink Scheduling in a Cellular System
    • 蜂窝系统中的上行链路调度
    • US20110038341A1
    • 2011-02-17
    • US12989670
    • 2008-04-28
    • Krister NorlundKelvin MalitiAnders PerssonYing Sun
    • Krister NorlundKelvin MalitiAnders PerssonYing Sun
    • H04W72/14H04W72/04
    • H04L1/1887H04L1/1812H04W72/1247H04W72/1252
    • A method (1000) for scheduling uplink transmission resources such as transmission duration and frequency to users (120) in a cell (110) of a cellular system (100). Grants for the use of uplink transmission resources are sent (1005) on a downlink control channel to users in the cell and the users' uplink transmissions are sent (1010) in subframes which have a certain extension in time and frequency. For each of at least a number of subframes, a decision (1015) is made on the number of users that will be scheduled resources for uplink transmission in the subframe, so that said number of users is maximized (1020) with respect to the control channel's capacity to transmit uplink grants for that subframe.
    • 一种用于在蜂窝系统(100)的小区(110)中向用户(120)调度诸如传输持续时间和频率的上行链路传输资源的方法(1000)。 在下行链路控制信道上发送用于上行链路传输资源的授权(1005)给小区中的用户,并且在时间和频率上具有一定扩展的子帧中发送(1010)用户的上行链路传输(1010)。 对于至少多个子帧中的每一个,对子帧中将被用于上行链路传输的调度资源的用户数量做出决定(1015),使得所述用户数相对于控制被最大化(1020) 信道发送该子帧的上行链路许可的能力。
    • 2. 发明授权
    • Uplink scheduling in a cellular system
    • 蜂窝系统中的上行链路调度
    • US08660083B2
    • 2014-02-25
    • US12989670
    • 2008-04-28
    • Krister NorlundKelvin MalitiAnders PerssonYing Sun
    • Krister NorlundKelvin MalitiAnders PerssonYing Sun
    • H04W72/14
    • H04L1/1887H04L1/1812H04W72/1247H04W72/1252
    • A method (1000) for scheduling uplink transmission resources such as transmission duration and frequency to users (120) in a cell (110) of a cellular system (100). Grants for the use of uplink transmission resources are sent (1005) on a downlink control channel to users in the cell and the users' uplink transmissions are sent (1010) in subframes which have a certain extension in time and frequency. For each of at least a number of subframes, a decision (1015) is made on the number of users that will be scheduled resources for uplink transmission in the subframe, so that said number of users is maximized (1020) with respect to the control channel's capacity to transmit uplink grants for that subframe.
    • 一种用于向蜂窝系统(100)的小区(110)中的用户(120)调度诸如传输持续时间和频率的上行链路传输资源的方法(1000)。 在下行链路控制信道上发送用于上行链路传输资源的授权(1005)给小区中的用户,并且在时间和频率上具有一定扩展的子帧中发送(1010)用户的上行链路传输(1010)。 对于至少多个子帧中的每一个,对子帧中将被用于上行链路传输的调度资源的用户数量做出决定(1015),使得所述用户数相对于控制被最大化(1020) 信道发送该子帧的上行链路许可的能力。
    • 3. 发明申请
    • Network Driven L3 Control Signalling Prioritization
    • 网络驱动L3控制信令优先级
    • US20120044880A1
    • 2012-02-23
    • US12935025
    • 2008-03-28
    • Ying SunChristian SkärbyGunnar PetersKelvin MalitiKrister Norlund
    • Ying SunChristian SkärbyGunnar PetersKelvin MalitiKrister Norlund
    • H04W74/04
    • H04W72/1242H04W72/1289
    • A node of a radio access network includes a transceiver and a radio resource control unit. The transceiver is configured to facilitate communication with plural wireless terminals over a radio interface including transmissions on an uplink from the wireless terminals to the node and transmissions on a downlink from the node to the wireless terminals.The radio resource control unit configured to perform radio resource control functionality including layer three (L3) signaling between the node and the wireless terminals. The radio resource control unit includes an uplink scheduler configured to predict transmission of an uplink L3 message from the wireless terminals to the node and, for a particular wireless terminal, to generate, for transmission on the downlink, a grant message which in accordance with the prediction prioritizes a predicted L3 message of the particular wireless terminal relative to messages of others of the plural wireless terminals.
    • 无线电接入网络的节点包括收发机和无线电资源控制单元。 收发器被配置为促进通过无线电接口与多个无线终端的通信,包括在从无线终端到节点的上行链路上的传输和在从节点到无线终端的下行链路上的传输。 所述无线资源控制部被配置为执行包括所述节点与所述无线终端之间的第三层(L3)信令的无线资源控制功能。 无线电资源控制单元包括上行链路调度器,被配置为预测来自无线终端的上行链路L3消息的传输到节点,并且对于特定的无线终端,为了在下行链路上的传输而生成根据 预测将特定无线终端的预测L3消息相对于多个无线终端中的其他消息的优先级排序。
    • 4. 发明授权
    • Network driven L3 control signalling prioritization
    • 网络驱动的L3控制信令优先级
    • US08547917B2
    • 2013-10-01
    • US12935025
    • 2008-03-28
    • Ying SunChristian SkärbyGunnar PetersKelvin MalitiKrister Norlund
    • Ying SunChristian SkärbyGunnar PetersKelvin MalitiKrister Norlund
    • H04W4/00
    • H04W72/1242H04W72/1289
    • A node of a radio access network includes a transceiver and a radio resource control unit. The transceiver is configured to facilitate communication with plural wireless terminals over a radio interface including transmissions on an uplink from the wireless terminals to the node and transmissions on a downlink from the node to the wireless terminals.The radio resource control unit configured to perform radio resource control functionality including layer three (L3) signaling between the node and the wireless terminals. The radio resource control unit includes an uplink scheduler configured to predict transmission of an uplink L3 message from the wireless terminals to the node and, for a particular wireless terminal, to generate, for transmission on the downlink, a grant message which in accordance with the prediction prioritizes a predicted L3 message of the particular wireless terminal relative to messages of others of the plural wireless terminals.
    • 无线电接入网络的节点包括收发机和无线电资源控制单元。 收发器被配置为促进通过无线电接口与多个无线终端的通信,包括在从无线终端到节点的上行链路上的传输和在从节点到无线终端的下行链路上的传输。 所述无线资源控制部被配置为执行包括所述节点与所述无线终端之间的第三层(L3)信令的无线资源控制功能。 无线电资源控制单元包括上行链路调度器,被配置为预测来自无线终端的上行链路L3消息的传输到节点,并且对于特定的无线终端,为了在下行链路上的传输而生成根据 预测将特定无线终端的预测L3消息相对于多个无线终端中的其他消息的优先级排序。
    • 9. 发明授权
    • Automatically matching data sets with storage components
    • 自动将数据集与存储组件进行匹配
    • US08949293B2
    • 2015-02-03
    • US12972137
    • 2010-12-17
    • Magdi A. MorsiWai Ho AuYing SunSanjeev KatariyaYang XuNina Sarawgi
    • Magdi A. MorsiWai Ho AuYing SunSanjeev KatariyaYang XuNina Sarawgi
    • G06F17/30G06F11/34
    • G06F17/30289G06F11/3442G06F11/3485
    • An administrator of an enterprise storage set may be tasked with storing a large number and variety of data sets on a large number and variety of storage components. However, the manual selection of a physical schema by an administrator may be time-consuming, may generate inefficient physical schemata, and may not be easily reevaluated as the data sets and storage set change. Presented herein are techniques for automatically determining a physical schema by comparing the storage factors of each data set (e.g., data size, relationships with other data sets, and usages of the data set by users) with the storage capabilities of the storage components, selecting a suitable storage component, and implementing the storage of the data set on the storage component. An embodiment of these techniques may thereby achieve an automated identification of a physical schema with improved efficiency and flexibility of the physical schema while conserving administrative resources.
    • 企业存储集的管理员可以负责在大量和多种存储组件上存储大量和多种数据集。 然而,由管理员手动选择物理模式可能是耗时的,可能产生低效的物理模式,并且可能不会随数据集和存储集改变而容易地重新评估。 这里提出的技术是通过将每个数据集的存储因子(例如,数据大小,与其他数据集的关系以及用户的数据集的使用)与存储组件的存储能力进行比较来自动确定物理模式,选择 合适的存储组件,以及在存储组件上实现数据集的存储。 因此,这些技术的实施例可以实现物理模式的自动识别,同时节省管理资源,同时提高物理模式的效率和灵活性。