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    • 3. 发明公开
    • RESOURCE DETERMINING METHOD AND APPARATUS
    • EP4340507A2
    • 2024-03-20
    • EP23208706.4
    • 2019-02-12
    • Huawei Technologies Co., Ltd.
    • LI, XueruZHANG, Ruiqi
    • H04W72/04
    • Embodiments of the present invention provide a resource determining method and apparatus. The method includes: determining, by a terminal device, that at least two physical uplink control channel PUCCH resources collide in a time unit n, where n is an integer, and the at least two PUCCH resources include a first resource configured for first uplink control information UCI and a second resource configured for second UCI; and determining, by the terminal device, the first resource and a third resource in the time unit n, where the third resource is one of M PUCCH resources, the first resource and the third resource do not include a same orthogonal frequency division multiplexing OFDM symbol in time domain, and M is a positive integer greater than or equal to 1, and the first resource is used to carry a part or all of the first UCI, and the third resource is used to carry a part or all of the second UCI. According to this method, UCI corresponding to two PUCCHs can be sent in a same time unit in a time division manner, and a waste in configured resources may be avoided.
    • 4. 发明公开
    • DOWNLINK SCHEDULING METHOD AND APPARATUS
    • EP4319026A1
    • 2024-02-07
    • EP22815096.7
    • 2022-05-24
    • Huawei Technologies Co., Ltd.
    • WANG, BichaiLI, XueruKUANG, Yiru
    • H04L5/00
    • This application provides a downlink scheduling method and an apparatus. The method includes: A terminal device reports first capability information to a network device, where the first capability information indicates that values of a maximum quantity of downlink MIMO layers supported by the terminal device on a first component carrier CC include a first maximum quantity M1 of downlink MIMO layers and a second maximum quantity M2 of downlink MIMO layers; and the terminal device receives first signaling sent by the network device, where the first signaling configures maximum MIMO layer quantity information corresponding to the first CC, and the maximum MIMO layer quantity information includes a first maximum quantity N1 of MIMO layers and a second maximum quantity N2 of MIMO layers. The first maximum quantity N1 of MIMO layers is not greater than the first maximum quantity M1 of downlink MIMO layers, and the second maximum quantity N2 of MIMO layers is not greater than the second maximum quantity M2 of downlink MIMO layers. According to the method, the network device can directly switch or dynamically adjust, after activating or deactivating one or more carriers by using a MAC CE, a maximum quantity of MIMO layers on an activated CC without reconfiguring a PDSCH parameter by using RRC signaling. This can avoid a delay and overheads caused by RRC-based reconfiguration.
    • 9. 发明公开
    • RESOURCE PROCESSING METHOD AND APPARATUS, AND STORAGE MEDIUM
    • EP4224963A1
    • 2023-08-09
    • EP21888585.3
    • 2021-11-03
    • Huawei Technologies Co., Ltd.
    • HE, HongliLI, Xueru
    • H04W72/04
    • This application relates to the field of communication technologies, and in particular, to a resource processing method and apparatus and a storage medium. The method includes: A first device receives first SCI. The first SCI includes first indication information. The first indication information indicates a first time-frequency resource, and the first indication information further indicates the first device to send second SCI. The first device sends the second SCI. The second SCI includes second indication information. The second indication information indicates a second time-frequency resource. The first time-frequency resource is a time-frequency resource reserved for a second device for sending data to the first device or a time-frequency resource that is reserved for the second device for sending data to the first device and that is reserved for the first device for receiving data. The second time-frequency resource is a time-frequency resource reserved for the first device for receiving data. In embodiments of this application, both the first device and the second device send SCI for channel resource reservation, to resolve a hidden terminal problem and an exposed terminal problem.