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    • 54. 发明授权
    • Methods and apparatus for modified PHICH
    • 修改PHICH的方法和装置
    • US09197379B2
    • 2015-11-24
    • US13499720
    • 2012-02-09
    • Erik ErikssonCheng Jung-FuDaniel Larsson
    • Erik ErikssonCheng Jung-FuDaniel Larsson
    • H04W72/04H04L1/18
    • H04L1/1861
    • Techniques provide additional Hybrid-ARQ indication resources for LTE TDD subframes that are normally without conventional LTE PHICH resources or that have too few LTE PHICH resources. In some embodiments, a modified PHICH is created using unused REGs in the control region of the downlink subframe. In others, a modified PHICH resides within the resources of an AL=1 PDCCH, and is formed using encoding and modulation processes that differ from normal PDCCH processing. In other embodiments, the PUSCH HARQ feedback bits are carried by a conventional LTE PDCCH, which is distinguished from other PDCCHs by scrambling it with a new type of RNTI: HARQ indicator Radio-network temporary identifier (HI-RNTI). In still other embodiments, the modulation symbols of PHICH are then placed on top of those normally reserved for PDCCHs. For such overlapped radio resources, the modulation symbols from the modified PHICH will replace those from normal PDCCHs for transmission.
    • 技术为通常不具有常规LTE PHICH资源或具有太少LTE PHICH资源的LTE TDD子帧提供额外的混合ARQ指示资源。 在一些实施例中,使用在下行链路子帧的控制区域中的未使用的REG来创建修改的PHICH。 在其他情况下,修改的PHICH驻留在AL = 1 PDCCH的资源内,并且使用与正常PDCCH处理不同的编码和调制过程来形成。 在其他实施例中,PUSCH HARQ反馈比特由常规LTE PDCCH携带,其通过用新型RNTI:HARQ指示符无线电网络临时标识符(HI-RNTI)对其进行加扰来与其他PDCCH区分开来。 在其他实施例中,PHICH的调制符号然后被放置在通常为PDCCH保留的那些之上。 对于这种重叠的无线电资源,来自修改的PHICH的调制符号将取代来自正常PDCCH的传输。
    • 55. 发明授权
    • Flexible reactor assembly for polymerization of olefins
    • 用于烯烃聚合的柔性反应器组件
    • US09192905B2
    • 2015-11-24
    • US14002516
    • 2012-03-02
    • Erik ErikssonMichiel BergstraKlaus NyforsGünter Weickert
    • Erik ErikssonMichiel BergstraKlaus NyforsGünter Weickert
    • C08F2/01C08F2/34B01J8/24B01J8/38B01J8/18B01J19/24C08F10/00C08F10/02C08F210/08C08F110/06
    • B01J8/388B01J8/1827B01J8/1872B01J19/2465B01J2208/00274B01J2219/0004B01J2219/00254C08F10/00C08F110/06C08F2500/12C08F2/34C08F2/01
    • The invention relates to a reactor assembly for the production of polymers including a fluidized bed reactor (1) comprising a bottom zone (5), a middle zone (6) and an upper zone (7), an inlet (8) for the fluidization gas located in the bottom zone (5), an outlet (9) for the fluidization gas located in the upper zone (7); the outlet (9) for the fluidization gas being coupled with the fluidized bed reactor (1) via inlet (8); the equivalent cross-sectional diameter of the bottom zone (5) being monotonically increasing with respect to the flow direction of the fluidization gas through the fluidized bed reactor; the middle zone (6) having an essentially constant equivalent cross-sectional diameter with respect to the flow direction of the fluidization gas through the fluidized bed reactor; the equivalent cross-sectional diameter of the upper zone (7) being monotonically decreasing with respect to the flow direction of the fluidization gas through the fluidized bed reactor; wherein that the ratio of the height of the fluidized bed reactor to the equivalent cross-sectional diameter of the middle zone of the fluidized bed reactor is from 2 to 10; and wherein there is an unobstructed passageway in the direction of flow of the fluidization gas through the fluidized bed reactor from the bottom zone (5) to the upper zone (7).
    • 本发明涉及一种用于生产聚合物的反应器组件,包括流化床反应器(1),其包括底部区域(5),中间区域(6)和上部区域(7),用于流化的入口(8) 位于底部区域(5)中的气体,位于上部区域(7)中的用于流化气体的出口(9); 用于流化气体的出口(9)通过入口(8)与流化床反应器(1)联接; 底部区域(5)的等效横截面直径相对于通过流化床反应器的流化气体的流动方向单调增加; 所述中间区域(6)具有相对于通过所述流化床反应器的流化气体的流动方向具有基本恒定的等效横截面直径; 上部区域(7)的等效横截面直径相对于通过流化床反应器的流化气体的流动方向单调减小; 其中流化床反应器的高度与流化床反应器的中间区域的等效横截面直径之比为2至10; 并且其中在从底部区域(5)到上部区域(7)的流化床反应器的流化气体的流动方向上存在无障碍通道。
    • 60. 发明授权
    • Methods and network nodes for scheduling transmission
    • 方法和网络节点进行调度传输
    • US08971271B2
    • 2015-03-03
    • US13637405
    • 2012-05-11
    • Martin HesslerErik Eriksson
    • Martin HesslerErik Eriksson
    • H04W72/04
    • H04L1/1819H04L1/1893H04L1/1896
    • A radio network node (110) configured to schedule transmission between the radio network node (110) and a user equipment (120) and a method therein as well as a user equipment (120) configured to receive a scheduling grant for a transmission between the user equipment (120) and the radio network node (110) and a method therein are provided. The radio network node (110) determines (201) a transport block size scaling factor. Next, the radio network node (110) determines (206) a scheduling grant for the transmission based on the transport block size scaling factor. Furthermore, the radio network node (110) sends (207) the transport block size scaling factor and the scheduling grant to the user equipment (120).
    • 一种无线电网络节点(110),被配置为调度所述无线电网络节点(110)和用户设备(120)之间的传输及其中的方法以及用户设备(120),所述用户设备(120)被配置为接收所述无线电网络节点 用户设备(120)和无线电网络节点(110)及其中的方法。 无线电网络节点(110)确定(201)传输块大小缩放因子。 接下来,无线电网络节点(110)基于传输块大小缩放因子确定(206)用于传输的调度许可。 此外,无线电网络节点(110)向用户设备(120)发送(207)传输块大小缩放因子和调度许可。