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    • 1. 发明申请
    • COMMUNICATIONS TECHNIQUES FOR BURSTY NOISE ENVIRONMENTS
    • 通信噪声环境的通信技术
    • WO2012078326A2
    • 2012-06-14
    • PCT/US2011061081
    • 2011-11-16
    • INTEL CORPGAO JIELIN XINTIANLI QINGHUALIU HSIN-YUO
    • GAO JIELIN XINTIANLI QINGHUALIU HSIN-YUO
    • H04W74/08H04W84/12
    • H04L43/0811H04L43/10H04L47/14H04L47/22H04L47/263
    • Techniques are disclosed that involve communicating in bursty noise environments. For instance, a source device may send a probing packet to a destination device. This probing packet is for determining whether the communications medium (e.g., one or more frequency channels) is currently exhibiting a busy or jammed (e.g., due to bursty noise) condition. More particularly, based on whether an acknowledgment of the probing packet is received, the source device determines whether the channel is jammed (or busy) or clear. For example, an unacknowledged probing packet indicates that the channel is jammed or busy, while an acknowledged probing packet indicates that the channel is clear. If the channel is determined to be clear, then the source device may transmit one or more data packets to the destination device. Such data packet transmissions may be in accordance with a non rate-adaptive technique.
    • 公开了涉及在突发噪声环境中通信的技术。 例如,源设备可以向目的地设备发送探测分组。 该探测分组用于确定通信介质(例如,一个或多个频率信道)当前是否正在呈现忙或卡住(例如,由于突发噪声)条件。 更具体地,基于是否接收到探测分组的确认,源设备确定信道是否被卡住(或忙)或清除。 例如,未确认的探测分组指示信道被卡住或占线,而确认的探测分组指示信道是清除的。 如果信道被确定为清除,则源设备可以向目的设备发送一个或多个数据分组。 这种数据分组传输可以是根据非速率自适应技术。
    • 10. 发明专利
    • Far infra-red garment fabric
    • GB2476133A
    • 2011-06-15
    • GB201009815
    • 2010-06-11
    • GAO JIE
    • GAO JIE
    • A61L2/00A41B11/00A41D19/00A61N2/00A61N5/06
    • A garment fabric which is a far infra-red fabric comprises a fabric support 11 for defining the shape of a garment and a therapeutic fabric layer 14 secured to a surface of the fabric support to cover at least a part of the surface of the fabric support, the therapeutic fabric layer comprises fibres or filaments which have been provided with antibacterial properties and which have been provided with magnetic properties by treatment with magnetic particles. The therapeutic fabric layer may be secured to the fabric support by means of a flexible adhesive, such as natural latex that has been filtered to remove impurities. Preferably, the adhesive comprises one or more of potassium hydroxide, allantoin, acetylsalicylic acid and an accelerant. The therapeutic fabric layer can comprise one or more of sulphur, zinc oxide, allantoin and lanolin. Typically, the therapeutic fabric layer is provided with antibacterial properties by treatment with a colourless nano silver solution. The fabric support may define the shape of a sock 10 and the therapeutic fabric layer can be secured to one or each of the heel 12 and ball 13 regions of the sock.