Systems and Methods for Different TDD Configurations in Carrier Aggregation
    21.
    发明申请
    Systems and Methods for Different TDD Configurations in Carrier Aggregation 有权
    载波聚合中不同TDD配置的系统和方法

    公开(公告)号:US20120327821A1

    公开(公告)日:2012-12-27

    申请号:US13527286

    申请日:2012-06-19

    摘要: 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.

    摘要翻译: 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。

    Measurement gap configuration in wireless communication systems with carrier aggregation
    22.
    发明授权
    Measurement gap configuration in wireless communication systems with carrier aggregation 有权
    具有载波聚合的无线通信系统中的测量间隙配置

    公开(公告)号:US08750807B2

    公开(公告)日:2014-06-10

    申请号:US13346083

    申请日:2012-01-09

    IPC分类号: H04B17/00

    摘要: A method of measurement gap reporting and configuration is provided. In a mobile network, a UE receives a capability enquiry message from a serving base station. The UE comprises one or more radio frequency modules that support a list of frequency bands and a list of carrier aggregation (CA) band combinations. In response to the enquiry, the UE transmits capability information containing measurement parameters to the base station. In one embodiment, the measurement parameters comprise need-for-gap parameters for each frequency band and each CA band combinations associated with a list of to-be-measured frequency bands of target cells. Based on the reported measurement parameters, the eNB transmits a measurement configuration message to the UE. Finally, the UE transmits a measurement gap application message back to the base station. The measurement gap application message indicates whether the UE applies MG for each configured component carrier.

    摘要翻译: 提供了一种测量间隙报告和配置的方法。 在移动网络中,UE从服务基站接收能力查询消息。 UE包括支持频带列表和载波聚合(CA)频带组合的列表的一个或多个射频模块。 响应于该询问,UE向基站发送包含测量参数的能力信息。 在一个实施例中,测量参数包括对于每个频带的需要间隙参数和与目标小区的待测频带列表相关联的每个CA频带组合。 基于所报告的测量参数,eNB向UE发送测量配置消息。 最后,UE向基站发送测量间隙应用消息。 测量间隙应用消息指示UE是否为每个配置的分量载波应用MG。

    Measurement Gap Configuration in Wireless Communication Systems with Carrier Aggregation
    23.
    发明申请
    Measurement Gap Configuration in Wireless Communication Systems with Carrier Aggregation 有权
    具有载波聚合的无线通信系统中的测量间隙配置

    公开(公告)号:US20120178465A1

    公开(公告)日:2012-07-12

    申请号:US13346083

    申请日:2012-01-09

    IPC分类号: H04W24/00 H04W72/00

    摘要: A method of measurement gap reporting and configuration is provided. In a mobile network, a UE receives a capability enquiry message from a serving base station. The UE comprises one or more radio frequency modules that support a list of frequency bands and a list of carrier aggregation (CA) band combinations. In response to the enquiry, the UE transmits capability information containing measurement parameters to the base station. In one embodiment, the measurement parameters comprise need-for-gap parameters for each frequency band and each CA band combinations associated with a list of to-be-measured frequency bands of target cells. Based on the reported measurement parameters, the eNB transmits a measurement configuration message to the UE. Finally, the UE transmits a measurement gap application message back to the base station. The measurement gap application message indicates whether the UE applies MG for each configured component carrier.

    摘要翻译: 提供了一种测量间隙报告和配置的方法。 在移动网络中,UE从服务基站接收能力查询消息。 UE包括支持频带列表和载波聚合(CA)频带组合的列表的一个或多个射频模块。 响应于该询问,UE向基站发送包含测量参数的能力信息。 在一个实施例中,测量参数包括对于每个频带的需要间隙参数和与目标小区的待测频带列表相关联的每个CA频带组合。 基于所报告的测量参数,eNB向UE发送测量配置消息。 最后,UE向基站发送测量间隙应用消息。 测量间隙应用消息指示UE是否为每个配置的分量载波应用MG。

    System and method for indicating local IP access support via NAS signaling
    24.
    发明授权
    System and method for indicating local IP access support via NAS signaling 有权
    通过NAS信令指示本地IP接入支持的系统和方法

    公开(公告)号:US08837369B2

    公开(公告)日:2014-09-16

    申请号:US13540995

    申请日:2012-07-03

    摘要: A method of providing Local IP Access (LIPA) indication is proposed. In one novel aspect, an enhanced cell selection method is proposed using LIPA capability information. Based on LIPA capability related information, a UE is able to prioritize LIPA-capable cells and establish a corresponding packet data network (PDN) connection accordingly. In one embodiment, LIPA information is informed to the UE via Non Access Stratum (NAS) signaling. The UE stores LIPA capability information when receiving a NAS message from a mobility management entity (MME). Later on, when the UE performs cell selection or reselection in idle mode, the UE can use the stored LIPA capability information to prioritize LIPA-capable cells.

    摘要翻译: 提出了一种提供本地IP访问(LIPA)指示的方法。 在一个新颖的方面,提出了使用LIPA能力信息的增强小区选择方法。 基于LIPA能力相关信息,UE能够优先考虑具有LIPA能力的小区并相应地建立对应的分组数据网络(PDN)连接。 在一个实施例中,通过非接入层(NAS)信令向UE通知LIPA信息。 当从移动性管理实体(MME)接收到NAS消息时,UE存储LIPA能力信息。 稍后,当UE在空闲模式下执行小区选择或重选时,UE可以使用存储的LIPA能力信息来优先考虑具有LIPA能力的小区。

    Channel interleaver having a constellation-based unit-wise permuation module
    25.
    发明授权
    Channel interleaver having a constellation-based unit-wise permuation module 有权
    信道交织器具有基于星座的单位置换模块

    公开(公告)号:US08799735B2

    公开(公告)日:2014-08-05

    申请号:US12655521

    申请日:2009-12-30

    IPC分类号: G06F11/00

    摘要: A channel interleaver comprises a novel constellation-based permutation module. The channel interleaver first receives a plurality of sets of encoded bits generated from an FEC encoder. The encoded bits are distributed into multiple subblocks and each subblock comprises a plurality of adjacent bits. A subblock interleaver interleaves each subblock and outputs a plurality of interleaved bits. The constellation-based permutation module rearranges the interleaved bits and outputs a plurality of rearranged bits. The rearranged bits are supplied to a symbol mapper such that a plurality of consecutively encoded bits in the same set of the encoded bits generated from the FEC encoder is prevented to be mapped onto the same level of bit reliability of a modulation symbol. In addition, the plurality of adjacent bits of each subblock is also prevented to be mapped onto the same level of bit reliability to achieve constellation diversity and to improve decoding performance.

    摘要翻译: 信道交织器包括新颖的基于星座的置换模块。 信道交织器首先接收从FEC编码器生成的多组编码比特。 编码的比特被分配到多个子块中,并且每个子块包括多个相邻的比特。 子块交织器交织每个子块并输出多个交织比特。 基于星座的置换模块重新排列交织的比特并输出多个重新排列的比特。 重新排列的比特被提供给符号映射器,使得从FEC编码器生成的同一组编码比特中的多个连续编码比特被阻止被映射到调制符号的相同级别的比特可靠性。 此外,还防止了每个子块的多个相邻位被映射到相同级别的比特可靠性以实现星座分集并提高解码性能。

    Mechanism of dynamic resource transaction for wireless OFDMA systems
    26.
    发明授权
    Mechanism of dynamic resource transaction for wireless OFDMA systems 有权
    无线OFDMA系统的动态资源处理机制

    公开(公告)号:US08717983B2

    公开(公告)日:2014-05-06

    申请号:US12798592

    申请日:2010-04-06

    IPC分类号: H04W28/04

    摘要: A method of dynamic resource transaction in wireless OFDMA systems is proposed. In macro-femto overlay network architecture, network and traffic condition varies dynamically. Dynamic resource transaction is a powerful mechanism to achieve effective interference mitigation and flexible radio resource management to enhance resource utilization as well as to improve link performance. Dynamic resource transaction can be performed by signaling or message exchange through backhaul network or air-interface connections. The signal or message through backhaul network can be directly exchanged among multiple base stations or be routed through a centralized self-organizing network (SON) server. In one embodiment, dynamic resource transaction is used to achieve adaptive reservation region configuration, a solution to avoid interference and frequent handover for high-speed mobile stations.

    摘要翻译: 提出了无线OFDMA系统中的动态资源处理方法。 在宏毫微微覆盖网络架构中,网络和流量状况动态变化。 动态资源交易是实现有效的干扰减轻和灵活的无线电资源管理以增强资源利用率以及提高链路性能的有力机制。 可以通过回程网络或空中接口连接的信令或消息交换来执行动态资源交易。 通过回程网络的信号或消息可以在多个基站之间直接交换或通过集中式自组织网络(SON)服务器路由。 在一个实施例中,使用动态资源事务来实现自适应预留区域配置,以避免高速移动站的干扰和频繁切换的解决方案。

    System and Method for Indicating Local IP Access Support Via NAS Signaling
    27.
    发明申请
    System and Method for Indicating Local IP Access Support Via NAS Signaling 有权
    通过NAS信令指示本地IP接入支持的系统和方法

    公开(公告)号:US20130010753A1

    公开(公告)日:2013-01-10

    申请号:US13540995

    申请日:2012-07-03

    IPC分类号: H04W36/00

    摘要: A method of providing Local IP Access (LIPA) indication is proposed. In one novel aspect, an enhanced cell selection method is proposed using LIPA capability information. Based on LIPA capability related information, a UE is able to prioritize LIPA-capable cells and establish a corresponding packet data network (PDN) connection accordingly. In one embodiment, LIPA information is informed to the UE via Non Access Stratum (NAS) signaling. The UE stores LIPA capability information when receiving a NAS message from a mobility management entity (MME). Later on, when the UE performs cell selection or reselection in idle mode, the UE can use the stored LIPA capability information to prioritize LIPA-capable cells.

    摘要翻译: 提出了一种提供本地IP访问(LIPA)指示的方法。 在一个新颖的方面,提出了使用LIPA能力信息的增强小区选择方法。 基于LIPA能力相关信息,UE能够优先考虑具有LIPA能力的小区并相应地建立对应的分组数据网络(PDN)连接。 在一个实施例中,通过非接入层(NAS)信令向UE通知LIPA信息。 当从移动性管理实体(MME)接收到NAS消息时,UE存储LIPA能力信息。 稍后,当UE在空闲模式下执行小区选择或重选时,UE可以使用存储的LIPA能力信息来优先考虑具有LIPA能力的小区。

    Unified synchronous ranging channel structure and ranging code generation and detection in wireless OFDMA systems
    28.
    发明授权
    Unified synchronous ranging channel structure and ranging code generation and detection in wireless OFDMA systems 有权
    无线OFDMA系统中的统一同步测距信道结构和测距码生成和检测

    公开(公告)号:US08345659B2

    公开(公告)日:2013-01-01

    申请号:US12653336

    申请日:2009-12-11

    IPC分类号: H04J3/06

    摘要: A unified synchronous ranging channel is provided. The unified synchronous ranging channel has a ranging cyclic prefix length that is the same as a cyclic prefix length of a data channel. The unified synchronous ranging channel is used for one of initial ranging, handover ranging, and periodic ranging between a mobile station and a femto base station. In one embodiment, the synchronous ranging channel spans over a two-dimensional radio resource region having a first number of subcarriers along frequency domain, a second number of OFDM symbols along time domain, and a third number of time-domain repetition. At the transmit side, a ranging code sequence is generated by applying a fixed time-domain cyclic shift per OFDM symbol to a root sequence. At the receive side, the ranging code sequence is decoded by using a summation module, a likelihood-combining module, and a modified peak test module that normalizes a peak value.

    摘要翻译: 提供统一的同步测距通道。 统一同步测距信道具有与数据信道的循环前缀长度相同的测距循环前缀长度。 统一的同步测距信道用于移动台和毫微微基站之间的初始测距,切换测距和周期性测距之一。 在一个实施例中,同步测距信道跨越具有沿频域的第一数量子载波的二维无线电资源区域,沿时域的第二数量的OFDM符号和第三数量的时域重复。 在发送侧,通过对根序列应用每OFDM符号的固定时域循环移位来生成测距码序列。 在接收侧,通过使用求和模块,似然合成模块和归一化峰值的修改峰值测试模块对测距代码序列进行解码。

    Measurement configuration in multi-carrier OFDMA wireless communication systems
    29.
    发明申请
    Measurement configuration in multi-carrier OFDMA wireless communication systems 审中-公开
    多载波OFDMA无线通信系统中的测量配置

    公开(公告)号:US20110310753A1

    公开(公告)日:2011-12-22

    申请号:US13134810

    申请日:2011-06-17

    IPC分类号: H04W24/00

    CPC分类号: H04W48/16 H04W84/045

    摘要: Various measurement configurations and s-Measure mechanism in multi-carrier OFDMA systems are provided. In one embodiment, a user equipment (UE) measures a first reference signal received power (RSRP) level in a primary serving cell (Pcell) over a primary component carrier (PCC). The UE also measures a second RSRP level in a secondary serving cell (Scell) over a secondary component carrier (SCC). The UE compares the first RSRP level with a first s-Measure value and compares the second RSRP level with a second s-Measure value. The UE then enables s-Measure mechanism and stops measuring neighbor cells over the PCC if the first RSRP level is higher than the first s-Measure value. The UE also enables s-Measure mechanism and stops measuring neighbor cells over the SCC if the second RSRP level is higher than the second s-Measure value. By having independent s-Measure mechanism and independent s-Measure value, maximum flexibility is achieved.

    摘要翻译: 提供了多载波OFDMA系统中的各种测量配置和s-Measure机制。 在一个实施例中,用户设备(UE)通过主分量载波(PCC)测量主服务小区(Pcell)中的第一参考信号接收功率(RSRP)电平。 UE还通过辅助分量载波(SCC)测量辅助服务小区(Scell)中的第二RSRP级别。 UE将第一RSRP级别与第一s-Measure值进行比较,并将第二RSRP级别与第二s-Measure值进行比较。 然后,如果第一RSRP电平高于第一s-Measure值,则UE然后启用s测量机制并停止通过PCC测量相邻小区。 如果第二RSRP级别高于第二s-Measure值,则UE还启用s-Measure机制并停止在SCC上测量相邻小区。 通过独立的s-Measure机制和独立的s-Measure值,实现了最大的灵活性。

    Mechanism of dynamic resource transaction for wireless OFDMA systems
    30.
    发明申请
    Mechanism of dynamic resource transaction for wireless OFDMA systems 有权
    无线OFDMA系统的动态资源处理机制

    公开(公告)号:US20100254344A1

    公开(公告)日:2010-10-07

    申请号:US12798592

    申请日:2010-04-06

    IPC分类号: H04W72/04

    摘要: A method of dynamic resource transaction in wireless OFDMA systems is proposed. In macro-femto overlay network architecture, network and traffic condition varies dynamically. Dynamic resource transaction is a powerful mechanism to achieve effective interference mitigation and flexible radio resource management to enhance resource utilization as well as to improve link performance. Dynamic resource transaction can be performed by signaling or message exchange through backhaul network or air-interface connections. The signal or message through backhaul network can be directly exchanged among multiple base stations or be routed through a centralized self-organizing network (SON) server. In one embodiment, dynamic resource transaction is used to achieve adaptive reservation region configuration, a solution to avoid interference and frequent handover for high-speed mobile stations.

    摘要翻译: 提出了无线OFDMA系统中的动态资源处理方法。 在宏毫微微覆盖网络架构中,网络和流量状况动态变化。 动态资源交易是实现有效的干扰减轻和灵活的无线电资源管理以增强资源利用率以及提高链路性能的有力机制。 可以通过回程网络或空中接口连接的信令或消息交换来执行动态资源交易。 通过回程网络的信号或消息可以在多个基站之间直接交换或通过集中式自组织网络(SON)服务器路由。 在一个实施例中,使用动态资源事务来实现自适应预留区域配置,以避免高速移动站的干扰和频繁切换的解决方案。