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    • 6. 发明申请
    • Channel Allocation When Using Measurement Gaps with H-ARQ
    • 使用H-ARQ测量间隙时的通道分配
    • US20100284360A1
    • 2010-11-11
    • US12811278
    • 2008-01-04
    • Lars DalsgaardFrank FrederiksenTroels Emil Kolding
    • Lars DalsgaardFrank FrederiksenTroels Emil Kolding
    • H04W72/04
    • H04W24/10H04L1/0025H04L1/0027H04L1/1812H04L1/1854H04W72/042H04W72/10
    • A user equipment (UE) receives a first dynamic resource allocation on a first channel (PDCCH), then sends data according to the first resource allocation. During a time at which an ACK/NACK for the sent data is scheduled to occur on a second channel (PHICH), the UE is engaging in an activity that takes priority over the ACK/NACK. The UE then receives a second dynamic resource allocation on the first channel and determines the ACK/NACK for the sent data from the second dynamic resource allocation. The determining can be direct, as in receiving a zero-valued resource allocation; or it may be indirect as in mapping the second dynamic resource allocation to the second channel and receiving the acknowledgement on the second channel after that mapping. Also detailed are similar mirror actions from the Node B's perspective, as well as apparatus, methods, and embodied computer programs.
    • 用户设备(UE)在第一信道(PDCCH)上接收第一动态资源分配,然后根据第一资源分配发送数据。 在发送数据的ACK / NACK被调度在第二信道(PHICH)上发生的时间内,UE正在参与比ACK / NACK优先的活动。 然后,UE在第一信道上接收第二动态资源分配,并从第二动态资源分配确定所发送数据的ACK / NACK。 确定可以是直接的,如接收零值资源分配; 或者它可以是间接的,因为在将第二动态资源分配映射到第二信道并且在该映射之后在第二信道上接收确认。 还详细介绍了从节点B的角度来看类似的镜像动作,以及设备,方法和体现的计算机程序。
    • 7. 发明授权
    • Channel allocation when using measurement gaps with H-ARQ
    • 使用H-ARQ测量间隙时的通道分配
    • US08249022B2
    • 2012-08-21
    • US12811278
    • 2008-01-04
    • Lars DalsgaardFrank FrederiksenTroels Emil Kolding
    • Lars DalsgaardFrank FrederiksenTroels Emil Kolding
    • H04W72/00
    • H04W24/10H04L1/0025H04L1/0027H04L1/1812H04L1/1854H04W72/042H04W72/10
    • A user equipment (UE) receives a first dynamic resource allocation on a first channel (PDCCH), then sends data according to the first resource allocation. During a time at which an ACK/NACK for the sent data is scheduled to occur on a second channel (PHICH), the UE is engaging in an activity that takes priority over the ACK/NACK. The UE then receives a second dynamic resource allocation on the first channel and determines the ACK/NACK for the sent data from the second dynamic resource allocation. The determining can be direct, as in receiving a zero-valued resource allocation; or it may be indirect as in mapping the second dynamic resource allocation to the second channel and receiving the acknowledgement on the second channel after that mapping. Also detailed are similar mirror actions from the Node B's perspective, as well as apparatus, methods, and embodied computer programs.
    • 用户设备(UE)在第一信道(PDCCH)上接收第一动态资源分配,然后根据第一资源分配发送数据。 在发送数据的ACK / NACK被调度在第二信道(PHICH)上发生的时间内,UE正在参与比ACK / NACK优先的活动。 然后,UE在第一信道上接收第二动态资源分配,并从第二动态资源分配确定所发送数据的ACK / NACK。 确定可以是直接的,如接收零值资源分配; 或者它可以是间接的,因为在将第二动态资源分配映射到第二信道并且在该映射之后在第二信道上接收确认。 还详细介绍了从节点B的角度来看类似的镜像动作,以及设备,方法和体现的计算机程序。