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    • 34. 发明申请
    • TOUCH- OR PROXIMITY-SENSITIVE INTERFACE
    • 触觉或接近感应界面
    • WO2010136932A1
    • 2010-12-02
    • PCT/IB2010/052202
    • 2010-05-18
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.BIRD, Neil ChristopherAYRES, John
    • BIRD, Neil ChristopherAYRES, John
    • G06F3/044
    • G06F3/044H04B13/005
    • The invention relates to a device, comprising a touch- or proximity-sensitive interface, the interface comprising a sensor electrode arrangement configured to receive one or more body-coupled communication signals via a user part touching or approaching the interface, and a detector configured to detect a position of the user part based on the one or more body- coupled communication signals. Embodiments provide an interactive surface which comprises a sensor electrode arrangement for detecting a position of a finger or other part touching, or approaching, the interactive surface. Body-coupled communication signals received by means of the sense electrode arrangement are evaluated for increasing the sensitivity of position detection.
    • 本发明涉及一种包括触摸或接近敏感界面的设备,所述接口包括被配置为经由接触或接近界面的用户部分接收一个或多个身体耦合通信信号的传感器电极装置,以及被配置为 基于一个或多个身体耦合通信信号来检测用户部分的位置。 实施例提供了一种交互式表面,其包括传感器电极装置,用于检测手指或接触或接近交互式表面的其他部分的位置。 评估通过感测电极装置接收到的身体耦合通信信号以增加位置检测的灵敏度。
    • 36. 发明申请
    • ENERGY EFFICIENT TRANSMISSION IN A NETWORK
    • 网络中的能源效率传输
    • WO2010119370A1
    • 2010-10-21
    • PCT/IB2010/051478
    • 2010-04-06
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.CORROY, Steven
    • CORROY, Steven
    • H04L12/40H04L12/12
    • H04L12/40039H04L12/12Y02D50/40
    • The present invention relates to a method for data packet transmissions between a source node and a destination node in a network, the method comprising: -the nodes being configured with an initial sleeping time period duration SP init and an initial wake-up time period duration LP init , -the source node sending a preamble, segmented in micro-preambles, for indicating the beginning of a transmission, the micro-preambles being separated by listening slots, -the destination node sending, upon receipt of at least one of the micro-preamble, a packet indicating its presence, called "Ready-To-Receive", or RTR, packet, and -the source node sending, in response to the RTR packet, a data packet intended for the destination node, wherein the step of sending a preamble comprises: -the source node determining, based on SP init and on LP init , an optimal size of the micro- preambles that minimizes the overall energy consumption in the network for sending and receiving packets related to this preamble transmission.
    • 本发明涉及一种用于网络中的源节点和目的地节点之间的数据分组传输的方法,所述方法包括: - 节点配置有初始睡眠时间段持续时间SPinit和初始唤醒时间段持续时间LPinit - 源节点发送分段在微前同步码中的前导码,用于指示传输的开始,微前同步码由侦听时隙分离,目的节点发送,在接收到微前同步码中的至少一个时 ,指示其存在的分组,称为“就绪接收”,或RTR,分组,以及 - 源节点响应于RTR分组发送旨在用于目的地节点的数据分组,其中发送步骤 前导码包括:源节点基于SPinit和LPinit确定最小化网络中用于发送和接收与该前导码t相关的分组的总能量消耗的最优大小 ransmission。
    • 37. 发明申请
    • A METHOD FOR SECURE COMMUNICATION IN A NETWORK, A COMMUNICATION DEVICE, A NETWORK AND A COMPUTER PROGRAM THEREFOR
    • 一种网络通信安全的方法,通信设备,网络及其计算机程序
    • WO2010106496A1
    • 2010-09-23
    • PCT/IB2010/051134
    • 2010-03-16
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.GARCIA MORCHON, OscarERDMANN, BozenaKURSAWE, Klaus
    • GARCIA MORCHON, OscarERDMANN, BozenaKURSAWE, Klaus
    • H04L9/08
    • H04L9/083H04L9/085H04L2209/80H04W12/04
    • A method for securing communications between a first node (N1) and a second node (N2) in a network (1) further comprising a management device (2) provided with root keying materials, the method comprising the following steps: the management device generating, based on root keying materials, a first node keying material shares comprising a number of sub-elements and the first node keying material shares being arranged for generating a first complete key, the management device selecting a subset of sub-elements of the first keying material shares, the number of sub-elements selected being less or equal than the total number of sub-elements of the first keying material shares, and the selected sub-elements forming a first node partial keying material shares or symmetric-key generation engine, the first node generating, based on the first node symmetric-key generation engine and on an identifier of the second node, a first key, used for securing communications with the second node.
    • 一种用于保护网络(1)中的第一节点(N1)和第二节点(N2)之间的通信的方法,还包括具有根密钥材料的管理设备(2),所述管理设备(2)包括以下步骤:所述管理设备生成 基于根密钥材料,第一节点密钥材料共享包括多个子元素,并且所述第一节点密钥资源共享被布置用于生成第一完整密钥,所述管理设备选择所述第一密钥的子元素的子集 选择的子元素的数量小于或等于第一密钥材料共享的子元素的总数的数量,以及形成第一节点部分密钥材料共享或对称密钥生成引擎的所选择的子元素, 所述第一节点基于所述第一节点对称密钥生成引擎和所述第二节点的标识符生成用于保护与所述第二节点的通信的第一密钥。
    • 39. 发明申请
    • MEASURING AND CORRECTING LENS DISTORTION IN A MULTISPOT SCANNING DEVICE.
    • 测量和校正多个扫描设备中的镜头失真。
    • WO2010018515A1
    • 2010-02-18
    • PCT/IB2009/053489
    • 2009-08-07
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.HULSKEN, BasSTALLINGA, Sjoerd
    • HULSKEN, BasSTALLINGA, Sjoerd
    • G01M11/02G02B21/00G02B27/00
    • G01M11/0264G02B21/002G02B27/0031
    • The invention provides a method of determining the distortion of an imaging system (32), the imaging system having an object plane (40) and an image plane (42). The method comprises the steps of determining (204) the positions of the image light spots (46) on a sensitive area (44) of an image sensor (34) by analyzing the image data; and fitting (205) a mapping function such that the mapping function maps the lattice points of an auxiliary lattice (48) into the positions of the image light spots (46), wherein the auxiliary lattice (48) is geometrically similar to the Bravais lattice (8) of the probe light spots (6). The invention also provides a method of imaging a sample, using an imaging system (32) having an object plane (40) and an image plane (42), the method comprising the steps of determining (304) readout points on the sensitive area (44) of an image sensor (34) by applying a mapping function to the lattice points of an auxiliary lattice (48), the auxiliary lattice being geometrically similar to a Bravais lattice (8) of probe light spots (6); and reading (305) image data from the readout points on the sensitive area (44). Also disclosed are a measuring system (10) for determining the distortion of an imaging system, and a multispot optical scanning device (10).
    • 本发明提供了一种确定成像系统(32)的失真的方法,该成像系统具有物体平面(40)和图像平面(42)。 该方法包括以下步骤:通过分析图像数据来确定(204)图像光点(46)在图像传感器(34)的敏感区域(44)上的位置; 以及拟合(205)映射函数,使得所述映射函数将辅助格子(48)的格点映射到所述图像光点(46)的位置,其中所述辅格(48)几何地类似于所述布拉维点阵 (8)的探针光斑(6)。 本发明还提供了一种使用具有物平面(40)和图像平面(42)的成像系统(32)对样本进行成像的方法,所述方法包括以下步骤:确定(304)敏感区域上的读出点 44)通过对辅助晶格(48)的格点施加映射函数,辅助晶格在几何上类似于探针光点(6)的布拉维点阵(8); 以及从敏感区域(44)上的读出点读取(305)图像数据。 还公开了一种用于确定成像系统的失真的测量系统(10)和多光学光学扫描装置(10)。