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    • 3. 发明申请
    • DEVICES AND METHODS FOR EPDCCH MONITORING IN WIRELESS COMMUNICATION SYSTEMS
    • 无线通信系统中EPDCCH监控的设备和方法
    • US20160219557A1
    • 2016-07-28
    • US14748802
    • 2015-06-24
    • Hong HeSeunghee HanJong-Kae FwuHwan-Joon Kwon
    • Hong HeSeunghee HanJong-Kae FwuHwan-Joon Kwon
    • H04W72/04
    • H04W76/28H04L5/0007H04L5/001H04L5/0053H04L5/0091H04W52/0216H04W52/0229H04W76/15
    • Devices and methods of reducing blind decoding attempts of user equipment (UE) suing carrier aggregation are generally described. The UE may determine at least one subframe in a modification period to monitor for a physical downlink control channel (PDCCH) formed in accordance with a Discontinuous Transmission Downlink Control Information (DTX DCI) format. The DTX DCI format may indicate whether the serving cell is in a DTX or non-DTX state. The UE may determine the DTX state of each serving cell from the DTX DCI format and monitor an enhanced PDCCH of each serving cell in the non-DTX state to provide a scheduling assignment for the UE, without monitoring each serving cell in the DTX state. The UE may receive higher layer signaling that indicates a repetition period and subframe offset for DTX DCI format transmissions or a bitmap of the DTX DCI format transmissions for subframes within each modification period.
    • 通常描述减少用户设备(UE)对载波聚合的盲解码尝试的设备和方法。 UE可以在修改周期中确定至少一个子帧,以监视根据不连续传输下行链路控制信息(DTX DCI)格式形成的物理下行链路控制信道(PDCCH)。 DTX DCI格式可以指示服务小区是否处于DTX或非DTX状态。 UE可以从DTX DCI格式确定每个服务小区的DTX状态,并且监视非DTX状态下的每个服务小区的增强PDCCH,以便为UE提供调度分配,而不监视DTX状态下的每个服务小区。 UE可以接收指示DTX DCI格式传输的重复周期和子帧偏移的更高层信令,或者在每个修改周期内子帧的DTX DCI格式传输的位图。
    • 9. 发明申请
    • SYSTEM AND METHODS FOR SUPPORT OF FREQUENCY HOPPING FOR UES WITH REDUCED BANDWIDTH SUPPORT
    • 用于支持带宽减少带宽支持的UES频率振荡的系统和方法
    • US20160226639A1
    • 2016-08-04
    • US14748814
    • 2015-06-24
    • Gang XiongDebdeep ChatterjeeSeunghee Han
    • Gang XiongDebdeep ChatterjeeSeunghee Han
    • H04L5/00H04B1/713
    • An eNodeB (eNB), Machine Type Communications (MTC) user equipment (UE) and method using a physical uplink control channel (PUCCH) in a non-legacy PUCCH region are generally described. The UE may be in an enhanced coverage (EC) mode. The UE may receive higher layer signaling indicating physical resource blocks in the PUCCH region and offsets in a cell- or UE-specific manner on a per-slot basis or, when in EC mode, per-set of N subframes basis. The UE may receive a resource allocation for a PUCCH in a PUCCH region separate from a legacy PUCCH region and reserved for non-legacy UEs. The UE may transmit a frequency hopping PUCCH in the PUCCH region and use shortened PUCCH format to accommodate an extended retuning time by puncturing a first and/or last symbol of at least one slot. If retuning, the UE may drop a sounding reference signal transmission in the next subframe.
    • 通常描述在非传统PUCCH区域中使用eNodeB(eNB),机器类型通信(MTC)用户设备(UE)和使用物理上行链路控制信道(PUCCH)的方法。 UE可以处于增强覆盖(EC)模式。 UE可以接收指示PUCCH区域中的物理资源块的更高层信令,并且在每个时隙的基础上以小区或UE特定的方式偏移,或者当在EC模式下,基于N个子帧的每组。 UE可以在与传统PUCCH区域分离并且为非传统UE分配的PUCCH区域中接收用于PUCCH的资源分配。 UE可以在PUCCH区域中发送跳频PUCCH,并且使用缩短的PUCCH格式以通过对至少一个时隙的第一和/或最后一个符号进行删截来适应扩展的重新调度时间。 如果重新调度,则UE可以在下一个子帧中丢弃探测参考信号传输。