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    • 82. 发明授权
    • Device and method for acknowledged mode QoS
    • 确认模式QoS的设备和方法
    • US09510358B2
    • 2016-11-29
    • US14408472
    • 2012-06-25
    • Ying SunHongwei Wang
    • Ying SunHongwei Wang
    • H04W72/10H04W72/12H04L1/18H04L1/00H04L12/801H04W28/02
    • H04W72/10H04L1/0033H04L1/1854H04L47/14H04W28/0205H04W72/1247
    • A method (200) for a controlling node of a cell (110) in a cellular system, the method comprising (205) the use of Radio Link Control Acknowledged Mode, RLC AM, and scheduling (210) transmissions in the downlink and uplink directions to/from User Equipments, UEs (115, 120, 125), in the cell (110). The scheduling comprises taking into account a priority which each UE has for its transmissions, and counting (215) the number of scheduled transmissions for a UE in a first of said directions since its latest scheduled transmission in the other of said directions. If (220) the count has reached a predetermined value, the priority of the UE in the other of said directions is increased (225), and when (230) the UE has been scheduled for a transmission in said other direction, the counting in said first direction is restarted (235) from an initial value.
    • 一种用于蜂窝系统中小区(110)的控制节点的方法(200),所述方法包括(205)在下行链路和上行链路方向上使用无线链路控制确认模式,RLC AM和调度(210)传输 来自/来自所述小区(110)中的用户设备UE(115,120,125)。 调度包括考虑每个UE对于其传输的优先级,并且在其它方向上的最新调度传输之后,计数(215)在所述方向中的第一方向上的UE的调度传输次数。 如果(220)计数已经达到预定值,则在另一个所述方向上的UE的优先级增加(225),并且当(230)UE已经被调度为在所述另一个方向上进行传输时,计数 所述第一方向从初始值重新开始(235)。
    • 84. 发明授权
    • Radio base station and method for scheduling radio resources for user equipment
    • 无线基站和用户设备无线资源调度方法
    • US09445424B2
    • 2016-09-13
    • US13880121
    • 2010-11-10
    • Björn NordströmEddie CorbettYing Sun
    • Björn NordströmEddie CorbettYing Sun
    • H04L1/00H04W72/08
    • H04W72/085
    • Embodiments herein relate to a method in a radio base station (12) for scheduling a radio resource to a first user equipment (10). The radio base station (12) is comprised in a radio communications network and controls a number of radio resources to be scheduled for communication to a number of user equipments (10,11). The number of user equipments comprises the first user equipment (10) and being served by the radio base station (12). The scheduling is based on channel quality of channels used by the respective user equipments. The radio base station (12) estimates a first channel quality of a channel used by the first user equipment (10). The radio base station determines a pathloss between the first user equipment (10) and the radio base station (12), and computes a second channel quality of the channel based on the estimated first channel quality and the determined pathloss. The radio base station (12) then schedules a radio resource out of the number of radio resources to the first user equipment (10) based on the second channel quality.
    • 本文的实施例涉及用于向第一用户设备(10)调度无线电资源的无线电基站(12)中的方法。 无线电基站(12)包括在无线电通信网络中,并且控制多个用于与多个用户设备(10,11)进行通信的无线电资源。 用户设备的数量包括第一用户设备(10)并由无线基站(12)服务。 调度是基于各个用户设备使用的信道的信道质量。 无线电基站(12)估计由第一用户设备(10)使用的信道的第一信道质量。 无线基站确定第一用户设备(10)和无线基站(12)之间的路径损耗,并且基于估计的第一信道质量和确定的路径损耗来计算信道的第二信道质量。 然后,无线基站(12)基于第二信道质量向第一用户设备(10)调度无线资源的数量的无线资源。
    • 85. 发明授权
    • Systems and methods for sleep apnea detection from breathing sounds
    • 呼吸音睡眠呼吸暂停检测的系统和方法
    • US09345432B2
    • 2016-05-24
    • US13527051
    • 2012-06-19
    • John SalisburyYing Sun
    • John SalisburyYing Sun
    • A61B7/00A61B5/00A61F5/56
    • A61B5/4818A61B5/7257A61B7/003A61F5/56
    • A method and an apparatus are disclosed for extending the service life of a battery source by fully utilizing the energy in batteries and/or providing higher energy reserve using multiple batteries. An universal battery bank consists of an ensemble of possibly heterogenous batteries all connected in series to provide a usable operational energy source. For a universal battery bank consists on N batteries, the minimum operational voltage for the individual batteries (Vmin) can be lowered to Vmin/N on average, thereby extending the time interval between battery replacements and draining the individual batteries more efficiently. To exploit this power supply that may vary over a wide voltage range, electronics are designed to monitor the individual batteries, guard against excessive voltage and current, and provide constant current sources and/or constant voltage sources for various appliances.
    • 公开了一种通过充分利用电池中的能量和/或使用多个电池提供较高能量储备来延长电池源的使用寿命的方法和装置。 通用电池组由可能的异质电池组成,它们都串联连接以提供可用的操作能量源。 对于通用电池组由N个电池组成,每个电池的最小工作电压(Vmin)可以平均降低到Vmin / N,从而延长电池更换之间的时间间隔,并更有效地排放各个电池。 为了利用可能在宽电压范围内变化的电源,电子设计用于监控各个电池,防止过大的电压和电流,并为各种电器提供恒定电流源和/或恒定电压源。
    • 88. 发明授权
    • Data retention component and framework
    • 数据保留组件和框架
    • US08706697B2
    • 2014-04-22
    • US12972320
    • 2010-12-17
    • Magdi MorsiYing SunWai Ho AuSanjeev KatariyaScott Sovine
    • Magdi MorsiYing SunWai Ho AuSanjeev KatariyaScott Sovine
    • G06F17/30
    • G06F17/30085
    • Systems and methods for dynamically managed data retention are described. The system comprises a tiered framework having a plurality of namespaces. The namespaces are configured by a user to have selected data retention attributes. Data including a manifest may be received by the system, processed, and directed to a namespace based upon the manifest. Data storage partitions may be created automatically in association with a namespace, and the data partitions may be assigned partition attributes. Data in a storage partition may be migrated automatically to another namespace based on the partition attributes. Code necessary for creating storage partitions and migrating data is generated by the data management system.
    • 描述了用于动态管理数据保留的系统和方法。 该系统包括具有多个命名空间的分层框架。 命名空间由用户配置为具有选定的数据保留属性。 包括清单的数据可以由系统接收,根据清单进行处理并定向到命名空间。 可以与命名空间相关联地创建数据存储分区,并且数据分区可以被分配分区属性。 存储分区中的数据可能会根据分区属性自动迁移到另一个命名空间。 创建存储分区和迁移数据所需的代码由数据管理系统生成。
    • 90. 发明申请
    • RADIO BASE STATION AND METHOD FOR SWITCHING TTI BUNDLING
    • 无线电基站和切换TTI组合的方法
    • US20130329701A1
    • 2013-12-12
    • US13521162
    • 2012-06-11
    • Zelimir BajzecYing Sun
    • Zelimir BajzecYing Sun
    • H04W72/04
    • H04W84/18H04L1/1887
    • A radio base station (RBS), such as an eNodeB, for supporting TTI bundling transmissions from a User Equipment (UE) using is provided. The RBS is arranged for toggling a TTI bundling mode of the UE by transmitting a first signal (531) to the UE, and for receiving a second signal (538) from the UE indicating that the UE has toggled its TTI bundling mode. During the transition state of the switching procedure, between transmitting the first signal and receiving the second signal, all transmissions from the UE are scheduled as TTI bundling transmissions (532, 536), transmissions received from the UE are decoded at time instances for both normal transmissions (511) and TTI bundling transmissions (512), and feedback information is transmitted to the UE at time instances for both normal transmissions (534) and TTI bundling transmissions (535). In this way, all packets received at the RBS may be decoded correctly and retransmission of packets by the UE is avoided. Further, a corresponding method is provided.
    • 提供了一种用于支持来自用户设备(UE)的TTI捆绑传输的诸如eNodeB的无线电基站(RBS)。 所述RBS被配置为通过向所述UE发送第一信号(531)来切换所述UE的TTI绑定模式,并且从所述UE接收指示所述UE切换了其TTI绑定模式的第二信号(538)。 在切换过程的转换状态期间,在发送第一信号和接收第二信号之间,将来自UE的所有传输调度为TTI捆绑传输(532,536),从UE接收的传输在正常情况下被解码 传输(511)和TTI捆绑传输(512),并且在正常传输(534)和TTI绑定传输(535)的时间实例中向UE发送反馈信息。 以这种方式,可以正确解码在RBS处接收的所有分组,并且避免UE重传分组。 此外,提供了相应的方法。