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    • 51. 发明授权
    • Metamaterial for deflecting electromagnetic wave
    • 用于偏转电磁波的超材料
    • US08827502B2
    • 2014-09-09
    • US13522500
    • 2011-11-29
    • Ruopeng LiuChunlin JiLin LuanJinjin Wang
    • Ruopeng LiuChunlin JiLin LuanJinjin Wang
    • F21V5/00H01Q15/00
    • H01Q15/0086
    • The present embodiment relates to a metamaterial for deflecting electromagnetic wave, includes a functional layer made up by at least one metamaterial sheet layer, each of the metamaterial sheet layers including a substrate and a number of artificial microstructures attached onto the substrate. The functional layer is divided into several strip-like regions. The refractive indices in all the strip-like regions continually increase along the same direction and there are at least two adjacent first and second regions, wherein, the refractive indices in the first region continually increase from n1 to n2, the refractive indices in the second region continually increase from n3 to n4, and n2>n3. The metamaterial of the present invention that deflects electromagnetic wave has a number of regions disposed thereon. In each region, the refractive indices can continuously increase or decrease so that the electromagnetic waves within the regions will be slowly deflected.
    • 本实施例涉及用于偏转电磁波的超材料,包括由至少一个超材料片层构成的功能层,每个超材料片层包括基片和多个附着在基片上的人造微结构。 功能层分为几个条状区域。 所有带状区域中的折射率沿着相同的方向连续地增加,并且存在至少两个相邻的第一和第二区域,其中,第一区域中的折射率从n1连续增加到n2,第二区域中的折射率 区域从n3不断增加到n4,n2> n3。 偏转电磁波的本发明的超材料具有设置在其上的多个区域。 在每个区域中,折射率可以连续地增加或减小,使得区域内的电磁波将被缓慢偏转。
    • 53. 发明授权
    • Impedance matching component
    • 阻抗匹配组件
    • US08421549B2
    • 2013-04-16
    • US13522335
    • 2011-11-18
    • Ruopeng LiuGuanxiong XuLin LuanChunlin JiZhiya ZhaoNenghui Fang
    • Ruopeng LiuGuanxiong XuLin LuanChunlin JiZhiya ZhaoNenghui Fang
    • H03H7/38
    • H01P1/2005G02B1/002H01Q15/0026H01Q15/0086H05K1/0236H05K1/024H05K1/025
    • The present disclosure discloses an impedance matching component disposed between a first medium and a second medium, which is formed by stacking a plurality of homogeneous metamaterial sheet layers in a direction perpendicular to surfaces thereof. Each of the metamaterial sheet layers comprises a substrate and a plurality of man-made microstructures attached thereon. A first and last metamaterial sheet layers have impedances identical to those of the first and second media respectively. The man-made microstructures attached on the first metamaterial sheet layer have a first pattern, the man-made microstructures attached on the last metamaterial sheet layer have a second pattern, and the man-made microstructures attached on intermediate ones of the metamaterial sheet layers have patterns that are combinations of the first and second patterns, with the first pattern becoming smaller continuously and the second pattern becoming larger continuously in the stacking direction of the metamaterial sheet layers.
    • 本公开公开了一种设置在第一介质和第二介质之间的阻抗匹配部件,其通过在垂直于其表面的方向上层叠多个均匀的超材料片层而形成。 每个超材料片层包括基底和附着在其上的多个人造微结构。 第一和最后的超材料片层分别具有与第一和第二介质相同的阻抗。 附着在第一超材料片层上的人造微结构具有第一图案,附着在最后的超材料片层上的人造微结构具有第二图案,并且附着在中间的超材料片层上的人造微结构具有 图案是第一图案和第二图案的组合,其中第一图案连续变小并且第二图案在超材料片层的堆叠方向上连续变大。
    • 60. 发明申请
    • HANDSHAKE SYNCHRONIZATION METHOD AND SYSTEM BASED ON VISIBLE LIGHT COMMUNICATION
    • 基于可见光通信的汉斯同步方法与系统
    • US20150349886A1
    • 2015-12-03
    • US14821794
    • 2015-08-10
    • KUANG-CHI INNOVATIVE TECHNOLOGY LTD.
    • Ruopeng LIULin LUANGuangjin XIAO
    • H04B10/116H04L9/08H04L7/00
    • H04B10/116H04L7/0075H04L9/0852H04L9/0869H04L9/12H04L2209/80
    • A handshake synchronization restoration method and system based on visible light communication are provided. The method includes: after a transmitting end in which a state machine varies with unit time is powered on again, transmitting in the form of a visible light signal, to a receive and control system, a status reset signal which varies with unit time, wherein the receive and control system comprises one or multiple receiving ends; and receiving, by the receive and control system, the visible light signal, and when it is determined that the received visible light signal is a status reset signal, adjusting status of a state machine of a receiving end to a state indicated by the status reset signal. Status synchronization with the transmitting end is restored, avoiding a case in which the transmitting end is asynchronous with the receiving end after encountering power outage and being powered on again.
    • 提供了一种基于可见光通信的握手同步恢复方法和系统。 该方法包括:在状态机随单位时间变化的发送端再次通电后,以可见光信号的形式向接收和控制系统发送随单位时间变化的状态复位信号,其中, 接收和控制系统包括一个或多个接收端; 并且由接收和控制系统接收可见光信号,并且当确定接收到的可见光信号是状态复位信号时,将接收端的状态机的状态调整到由状态复位指示的状态 信号。 恢复与发送端的状态同步,避免发生端在遇到停电并重新上电后发送端与接收端异步的情况。