Systems and Methods for Different TDD Configurations in Carrier Aggregation
    1.
    发明申请
    Systems and Methods for Different TDD Configurations in Carrier Aggregation 审中-公开
    载波聚合中不同TDD配置的系统和方法

    公开(公告)号:US20150358978A1

    公开(公告)日:2015-12-10

    申请号:US14827419

    申请日:2015-08-17

    Applicant: MEDIATEK INC.

    Abstract: Systems and Methods for supporting carrier aggregation with different TDD configurations are proposed. In a first novel aspect, corresponding apparatus structure is described. In a second novel aspect, aggregation constraint is discussed. In a third novel aspect, transceiving mechanisms over multiple component carriers in DL/UL overlapped subframes are proposed. For simultaneous DL/UL transceiving, band combination indication methods are proposed, and HARQ feedback mechanisms are proposed. For non-simultaneous DL/UL transceiving, transceiving configuration methods are proposed, and the same HARQ feedback mechanisms are proposed. In a fourth novel aspect, CQI/RLM/RRM measurement mechanisms are proposed. In a fifth novel aspect, UE capability signaling mechanisms are proposed. The objective is to support flexible aggregation, to enhance DL data throughout, and to improve UL transmit power efficiency.

    Abstract translation: 提出了用于支持具有不同TDD配置的载波聚合的系统和方法。 在第一新颖方面,描述了相应的装置结构。 在第二个新颖的方面,讨论了聚合约束。 在第三个新颖的方面,提出了在DL / UL重叠子帧中的多分量载波上的收发机制。 为了同时进行DL / UL收发,提出了频带组合指示方法,提出了HARQ反馈机制。 对于非同步DL / UL收发,提出了收发配置方法,提出了相同的HARQ反馈机制。 在第四个新颖的​​方面,提出了CQI / RLM / RRM测量机制。 在第五个新颖的方面,提出了UE能力信令机制。 目的是支持灵活的聚合,提高DL数据的整体性能,并提高UL的传输功率效率。

    Minimization of drive tests for uplink link coverage
    2.
    发明授权
    Minimization of drive tests for uplink link coverage 有权
    最小化上行链路覆盖的驱动器测试

    公开(公告)号:US09272851B2

    公开(公告)日:2016-03-01

    申请号:US13670394

    申请日:2012-11-06

    Applicant: MEDIATEK, INC.

    Abstract: A method of using additional uplink measurements for MDT UL coverage is provided. A base station (eNodeB) establishes a radio resource control (RRC) connection with a user equipment (UE) in a mobile communication network. The eNodeB and the UE are configured for Minimization of Drive Test (MDT). The eNodeB receives a Power Headroom Report (PRH) corresponds to a Physical Uplink Shared Channel (PUSCH) from the UE, and forwards the PHR to an MDT server. The eNodeB performs uplink measurement of a Demodulation Reference Signal (DM-RS) allocated in the PUSCH. The uplink measurement also involves measuring an uplink Received Interference Power (RIP) associated with the PUSCH. The eNodeB then reports uplink measurement results to the MDT server. The MDT server is able to determine uplink coverage based on the PHR and the uplink measurement results.

    Abstract translation: 提供了一种使用额外的上行链路测量用于MDT UL覆盖的方法。 基站(eNodeB)在移动通信网络中建立与用户设备(UE)的无线电资源控制(RRC)连接。 eNodeB和UE配置为最小化驱动测试(MDT)。 eNodeB从UE接收对应于物理上行链路共享信道(PUSCH)的功率余量报告(PRH),并将PHR转发到MDT服务器。 eNodeB执行在PUSCH中分配的解调参考信号(DM-RS)的上行链路测量。 上行链路测量还涉及测量与PUSCH相关联的上行接收干扰功率(RIP)。 eNodeB然后将上行链路测量结果报告给MDT服务器。 MDT服务器能够基于PHR和上行链路测量结果确定上行链路覆盖。

    Minimization of Drive Tests for Uplink Link Coverage
    4.
    发明申请
    Minimization of Drive Tests for Uplink Link Coverage 有权
    最小化上行链路覆盖的驱动器测试

    公开(公告)号:US20130114454A1

    公开(公告)日:2013-05-09

    申请号:US13670394

    申请日:2012-11-06

    Applicant: Mediatek, Inc.

    Abstract: A method of using additional uplink measurements for MDT UL coverage is provided. A base station (eNodeB) establishes a radio resource control (RRC) connection with a user equipment (UE) in a mobile communication network. The eNodeB and the UE are configured for Minimization of Drive Test (MDT). The eNodeB receives a Power Headroom Report (PRH) corresponds to a Physical Uplink Shared Channel (PUSCH) from the UE, and forwards the PHR to an MDT server. The eNodeB performs uplink measurement of a Demodulation Reference Signal (DM-RS) allocated in the PUSCH. The uplink measurement also involves measuring an uplink Received Interference Power (RIP) associated with the PUSCH. The eNodeB then reports uplink measurement results to the MDT server. The MDT server is able to determine uplink coverage based on the PHR and the uplink measurement results.

    Abstract translation: 提供了一种使用额外的上行链路测量用于MDT UL覆盖的方法。 基站(eNodeB)在移动通信网络中建立与用户设备(UE)的无线电资源控制(RRC)连接。 eNodeB和UE配置为最小化驱动测试(MDT)。 eNodeB从UE接收对应于物理上行链路共享信道(PUSCH)的功率余量报告(PRH),并将PHR转发到MDT服务器。 eNodeB执行在PUSCH中分配的解调参考信号(DM-RS)的上行链路测量。 上行链路测量还涉及测量与PUSCH相关联的上行接收干扰功率(RIP)。 eNodeB然后将上行链路测量结果报告给MDT服务器。 MDT服务器能够基于PHR和上行链路测量结果确定上行链路覆盖。

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