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    • 2. 发明申请
    • STRUCTURED SUPER-POSITION CODING TO ENHANCE CONTROL CHANNEL CAPACITY
    • 结构化超级位置编码以增强控制信道容量
    • WO2016048580A2
    • 2016-03-31
    • PCT/US2015/047476
    • 2015-08-28
    • INTEL CORPORATION
    • XUE, FengFWU, Jong-KaeKWON, Hwan-Joon
    • H04L27/26H04L25/03
    • H04W72/042H04B1/7107H04J11/0036H04J11/004H04J11/005H04W48/12H04W84/042
    • Systems and methods to encode and/or decode structured super-position coding to enhance control channel capacity are disclosed herein. User equipment (UE) may be configured to communicatively couple to an Evolved Universal Terrestrial Radio Access Network (E-UTRAN) Node B (eNB). A first UE and a second UE may be coupled to the eNB. Basic PDCCH may be sent to the second UE, and extra PDCCH may be sent to the first UE on the same time-frequency resource. The second UE may be able to decode the basic PDCCH as it normally does. The first UE may be able to decode the basic PDCCH for the second UE, cancel the basic PDCCH from the signal, and decode the extra PDCCH. The extra PDCCH may be restricted to certain positions relative to the basic PDCCH to simplify searching by the first UE.
    • 本文公开了用于编码和/或解码结构化超位置编码以增强控制信道容量的系统和方法。 用户设备(UE)可以被配置为通信地耦合到演进的通用陆地无线电接入网络(E-UTRAN)节点B(eNB)。 第一UE和第二UE可以耦合到eNB。 基本PDCCH可以被发送到第二UE,并且可以在相同的时间 - 频率资源上向第一UE发送额外的PDCCH。 第二UE可能能够像通常那样解码基本PDCCH。 第一UE可能能够解码第二UE的基本PDCCH,从该信号中消除基本PDCCH,并解码额外的PDCCH。 额外的PDCCH可以被限制在相对于基本PDCCH的某些位置,以简化第一UE的搜索。
    • 3. 发明申请
    • PHYSICAL RESOURCE BLOCK (PRB) DEFINITION WITH SCALABLE SUBCARRIER SPACING
    • 具有可扩展子空间间隔的物理资源块(PRB)定义
    • WO2018064403A1
    • 2018-04-05
    • PCT/US2017/054145
    • 2017-09-28
    • INTEL CORPORATION
    • BENDLIN, RalfKWON, Hwan-JoonXIONG, Gang
    • H04L5/00
    • H04L5/0007H04L5/0044
    • Technology for a user equipment (UE) configured to communicate with scalable subcarrier spacing is disclosed. The UE can encode data in a plurality of physical resource blocks (PRBs), for transmission to a new radio node B (gNB), in a plurality of subcarriers having different subcarrier spacing. Subcarrier spacing for the plurality of PRBs can be defined as 2 n * 15 kilohertz (kHz). Each PRB in the plurality of PRBs can comprise a fixed number of subcarriers per PRB irrespective of subcarrier spacing. The plurality of PRBs for each subcarrier spacing can comprise a subset or a superset of the plurality of PRBs for the subcarrier spacing of 15 kHz in the frequency domain. A maximum number of PRBs can be used to fill a bandwidth of a carrier frequency that is transmitted to the gNB. A memory interface can be configured to receive the encoded data from a memory.
    • 公开了用于被配置为与可缩放子载波间隔通信的用户设备(UE)的技术。 UE可以在多个物理资源块(PRB)中编码数据,以便在具有不同副载波间隔的多个副载波上传输到新的无线电节点B(gNB)。 多个PRB的副载波间隔可以被定义为2 * 15千赫(kHz)。 无论子载波间隔如何,多个PRB中的每个PRB可以包括每个PRB的固定数量的子载波。 用于每个子载波间隔的多个PRB可以包括频域中15kHz的子载波间隔的多个PRB的子集或超集。 可以使用最大数量的PRB来填充传送给gNB的载波频率的带宽。 存储器接口可以配置为从存储器接收编码数据。
    • 4. 发明申请
    • FLEXIBLE TRANSMISSION TIME INTERVAL AND ON SLOT AGGREGATION FOR DATA TRANSMISSION FOR NEW RADIO
    • 新型无线电数据传输的灵活传输时间间隔和时隙聚合
    • WO2018031623A1
    • 2018-02-15
    • PCT/US2017/046038
    • 2017-08-09
    • INTEL CORPORATION
    • JEON, JeonghoBENDLIN, RalfCHO, JoonyoungHAN, SeungheeKWON, Hwan-JoonXIONG, GangNIMBALKER, AjitHE, HongCHATTERJEE, Debdeep
    • H04L5/00
    • H04L5/0053H04L5/0007H04L5/0096
    • An apparatus of a New Radio (NR) NodeB (gNB) comprises one or more baseband processors to configure a physical downlink control channel (PDCCH) for the transmission of data to a user equipment (UE) in a physical downlink shared channel (PDSCH), wherein the PDCCH indicates a duration of a transmission time interval (TTI) for the PDSCH, and wherein the duration of the TTI is to be a standard duration, shorter than a standard duration, or longer than a standard duration, and a memory to store a value indicating the duration of the TTI. An apparatus of a New Radio (NR) NodeB (gNB) comprises one or more baseband processors to configure a number of slots for downlink (DL) data transmission to a user equipment (UE) or for uplink (UL) data reception from the UE in an aggregation of one or more slots, and a memory to store the configuration of the slots.
    • 新无线电(NR)节点B(gNB)的装置包括一个或多个基带处理器以配置用于向用户设备(UE)传输数据的物理下行链路控制信道(PDCCH) 物理下行链路共享信道(PDSCH),其中所述PDCCH指示所述PDSCH的传输时间间隔(TTI)的持续时间,并且其中所述TTI的持续时间将是标准持续时间,短于标准持续时间或长于 标准持续时间,以及存储指示TTI持续时间的值的存储器。 新无线电(NR)节点B(gNB)的设备包括一个或多个基带处理器,以配置用于到用户设备(UE)的下行链路(DL)数据传输或从UE接收上行链路(UL)数据的多个时隙 在一个或多个插槽的聚合中,以及一个用于存储插槽配置的内存。
    • 6. 发明申请
    • SYSTEMS AND METHODS FOR MODULATION AND CODING SCHEME SELECTION AND CONFIGURATION
    • 用于调制和编码方案选择和配置的系统和方法
    • WO2015103588A1
    • 2015-07-09
    • PCT/US2015/010271
    • 2015-01-06
    • INTEL IP CORPORATIONINTEL CORPORATION
    • DAVYDOV, AlexeiKWON, Hwan-JoonHAN, SeungheeMOROZOV, Gregory V.
    • H04L27/34
    • H04L5/0091H04L5/0046
    • Methods, systems, and devices for modulation and coding scheme selection and configuration. A mobile communication device includes a table component, a table selection component, and a communication component. The table component is configured to maintain two or more tables each having entries for a plurality of available modulation schemes. The two or more tables include a default table and a secondary table. The default table and the secondary table have a matching number of entries, and the secondary table includes an entry corresponding to a 256-QAM scheme. The table selection component is configured to select a selected table from one of the default table and the secondary table. The communication component is configured to receive and process a communication from a base station based on a modulation and coding scheme of the selected table.
    • 用于调制和编码方案选择和配置的方法,系统和设备。 移动通信设备包括表组件,表选择组件和通信组件。 表组件被配置为维护两个或更多个表,每个表具有用于多个可用调制方案的条目。 两个或多个表包括默认表和辅助表。 默认表和辅助表具有匹配的条目数,副表包括与256-QAM方案对应的条目。 表选择组件配置为从默认表和辅助表之一中选择一个选定的表。 通信部件被配置为基于所选择的表的调制和编码方案从基站接收和处理通信。