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    • 5. 发明申请
    • PRESSURE SENSING TOUCH SYSTEMS AND METHODS
    • 压力感应触摸系统及方法
    • WO2014055809A1
    • 2014-04-10
    • PCT/US2013/063355
    • 2013-10-04
    • CORNING INCORPORATEDCHEN, MinghanGOLLIER, JacquesLI, Ming-JunMILLER, William JamesNOLAN, Daniel AloysiusMICHALOSKI, Paul, Francis
    • CHEN, MinghanGOLLIER, JacquesLI, Ming-JunMILLER, William JamesNOLAN, Daniel AloysiusMICHALOSKI, Paul, Francis
    • G06F3/042
    • G06F3/0421G06F3/044G06F3/045
    • Pressure-sensing touch systems and methods are disclosed for sensing the occurrence of a touch event based on pressure applied at a touch location. The touch system includes a light-source system and a detector system operably disposed adjacent respective input and output edges of a waveguide either in the form of a transparent sheet or as formed in a transparent sheet. Pressure at a touch location on the waveguide that gives rise to a touch event causes the waveguide to bend or flex. The waveguide bending causes a change in the optical paths of light traveling by FTIR in the waveguide. This in turn causes the light distribution in the output light to change. The changes in the light distribution are detected and are used to determine whether a touch event occurred, as well as the time-evolution of the touch event. The changes in the output light can include polarization changes caused by birefringence induced in the waveguide by the pressure applied at the touch location. Various detector configurations are disclosed for sensing the location and pressure of a touch event.
    • 公开了用于基于在触摸位置处施加的压力来感测触摸事件的发生的压力感测触摸系统和方法。 触摸系统包括光源系统和可操作地设置在波导的相应输入和输出边缘处的透光片或形成在透明片中的检测器系统。 在波导上的触摸位置处的压力导致触摸事件导致波导弯曲或弯曲。 波导弯曲导致在波导中通过FTIR行进的光的光路的变化。 这又导致输出光中的光分布发生变化。 检测到光分布的变化,并用于确定触摸事件是否发生,以及触摸事件的时间演化。 输出光的变化可以包括由在触摸位置处施加的压力在波导中引起的双折射引起的偏振变化。 公开了用于感测触摸事件的位置和压力​​的各种检测器配置。
    • 8. 发明申请
    • SUPERIMPOSING OPTICAL TRANSMISSION MODES
    • 超光传输模式
    • WO2014093194A1
    • 2014-06-19
    • PCT/US2013/073788
    • 2013-12-09
    • CORNING INCORPORATEDALFANO, Robert R.MILIONE, GiovanniNOLAN, Daniel Aloysius
    • ALFANO, Robert R.MILIONE, GiovanniNOLAN, Daniel Aloysius
    • H04J14/04H04B10/2581
    • H04B10/2569H04B10/0795H04B10/0799H04B10/2581H04J14/04
    • A method of transmitting N optical signals along a multimode optical fiber where each of the N signals comprises N distinct superimposed transmission modes (M1, M2,...) and a portion of each of the N propagating optical signals is sampled at a receiving end of the data transmission network. N 2 - 1 distinct measurement conditions are derived from a transmission matrix T and a special unitary matrix group SU(N) corresponding to the superimposed transmission modes (M1, M2,...) at the receiving end of the data transmission network, and N 2 -1 measurements are extracted from the sampled signals. The extracted N 2 -1 measurements are used to solve a matrix equation ( T ⋅ Λ ) \ V ) = τ\ V ) where A represents generated SU(N) matrices, τ represents the extracted measurements, and |V> represents principal state eigenvectors of an output matrix corresponding to the N optical signals at the receiving end of the data transmission network.
    • 一种沿着多模光纤发送N个光信号的方法,其中N个信号中的每一个包括N个不同的叠加传输模式(M1,M2,...),并且N个传播光信号中的每一个的一部分在接收端被采样 的数据传输网络。 N2-1个不同的测量条件是从数据传输网络接收端的传输矩阵T和对应于叠加的传输模式(M1,M2,...)的特殊的酉矩阵组SU(N)导出的,N2 从采样信号中提取-1个测量值。 提取的N2-1测量用于求解矩阵方程(T⋅Λ)\ V)=τ\ V)其中A表示生成的SU(N)矩阵,τ表示提取的测量值,| V>表示主状态特征向量 对应于数据传输网络的接收端处的N个光信号的输出矩阵。