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    • 4. 发明申请
    • Wireless Communication via Combined Channel Training and Physical Layer Header Signaling
    • 通过组合信道训练和物理层报头信令进行无线通信
    • US20160066324A1
    • 2016-03-03
    • US14583253
    • 2014-12-26
    • Qinghua LiXiaogang ChenHuaning NiuYuan Zhu
    • Qinghua LiXiaogang ChenHuaning NiuYuan Zhu
    • H04W72/04H04W72/00H04B7/06H04B7/04H04L29/06H04L5/00
    • H04B7/0452H04B7/0617H04L5/0023H04L5/0048H04L5/0091H04L25/0232H04L69/22
    • Embodiments herein relate to wireless communication using combined channel training and physical layer header (SIG) signaling. Devices that comply with the 802.11 ax or High Efficiency WLAN (HEW) standard may generate and transmit packets that include such combined information. The combined information may be beamformed to a receiver device via an OFDM signal, which may be decoded by the receiver device to obtain subsequent data included in the signal. For example, initial training symbols associated with channel training subcarriers in the signal may be detected and used to perform a rough estimate of the channel. The rough estimate may thereafter be refined using data symbols detected from adjacent data subcarriers using the channel training symbols. In this way, data subcarriers may also be used to determine a channel response along with channel training subcarriers. Channel training information may be transmitted with data, such as user-specific information, in a single symbol.
    • 本文的实施例涉及使用组合信道训练和物理层报头(SIG)信令的无线通信。 符合802.11 ax或高效WLAN(HEW)标准的设备可能会生成并传输包含这些组合信息的数据包。 组合的信息可以经由OFDM信号被波束形成到接收机设备,OFDM信号可以被接收机设备解码以获得包括在信号中的后续数据。 例如,可以检测与信号中的信道训练子载波相关联的初始训练符号,并用于执行信道的粗略估计。 之后可以使用使用信道训练符号从相邻数据子载波检测的数据符号来粗略估计。 以这种方式,数据副载波也可以用于确定与信道训练子载波一起的信道响应。 信道训练信息可以用单个符号中的诸如用户特定信息的数据发送。
    • 5. 发明申请
    • DEVICE, METHOD AND SYSTEM USING THE HE SIG-B FIELD SPATIAL RESOURCE INDICATION
    • 使用HE SIG-B的设备,方法和系统场地空间资源指示
    • US20170048844A1
    • 2017-02-16
    • US14977397
    • 2015-12-21
    • Xiaogang ChenQinghua LiRobert J. StaceyHuaning NiuYuan Zhu
    • Xiaogang ChenQinghua LiRobert J. StaceyHuaning NiuYuan Zhu
    • H04W72/04H04W8/24
    • H04W72/0413H04W84/12
    • A STA, AP and method of reducing channel allocation control overhead are disclosed. The STA receives a high-efficiency Physical Layer Convergence Protocol Data Unit (HE PPDU) having a HE SIG-A field followed by a HE SIG-B field. The SIG-B field has user-specific subfields (USS), each having a stream allocation value (SAV) for an associated STA and associated with a unique stream index number (SIN) indicating a position among the USSs. The SINs increase with increasing position from the SIG-B field. The number of channels allocated in each USS is constrained to stay the same or monotonically change with increasing SIN. The STA determines channel allocation from the SAV, SIN and number of USSs. The channels may be allocated non-contiguously. The SAVs in most USSs may indicate an allocation to increasing or decreasing channels and in the final USS to at least one channel starting from a final or initial channel.
    • 公开了降低信道分配控制开销的STA,AP和方法。 STA接收具有HE SIG-A字段和HE SIG-B字段的高效率物理层汇聚协议数据单元(HE PPDU)。 SIG-B字段具有用户特定子字段(USS),每个子字段具有用于相关联的STA的流分配值(SAV),并且与指示USS之间的位置的唯一流索引号(SIN)相关联。 SINS随着SIG-B领域的增长而增加。 在每个USS中分配的信道数量被限制为保持不变或单调随着SIN增加而变化。 STA从SAV,SIN和USS的数量确定信道分配。 频道可以非连续地分配。 大多数USS中的SAV可以指示从最终或初始信道开始的增加或减少信道和最终USS中的至少一个信道的分配。