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    • 3. 发明申请
    • AMBIENCE RENDERING CONTROL SYSTEM
    • 环境渲染控制系统
    • US20140039684A1
    • 2014-02-06
    • US14111303
    • 2012-04-10
    • Bartel Marinus Van De SluisWinifried Antonius Henricus BerkvensEvert Jan Van LoenenIngrid Christina Maria FlinsenbergNicolle Hanneke Van Schijndel
    • Bartel Marinus Van De SluisWinifried Antonius Henricus BerkvensEvert Jan Van LoenenIngrid Christina Maria FlinsenbergNicolle Hanneke Van Schijndel
    • G05B11/01G05B13/02
    • G05B11/01G05B13/028H05B37/029
    • The present invention relates to a method of operating an ambience control system (10) comprising an ambience rendering system (14) configured to adapt the ambience in an area (16) so as to establish a current ambience state, a data storage (12) comprising data relating to occurrence of events and ambience states, each of the events being associated with a specific ambience state, and a processor configured to determine estimated time to next event based on the data relating to occurrence of events, provided that the next event relates to an ambience state different from the current ambience state the ambience rendering system (14) (10) being configured to gradually adapt the ambience in the area (16) to match the next ambient state, the method comprising determining current ambience state, determining estimated time to next event, and operating the area (16) ambience system (10) based on the estimated time to next event. The present invention further relates to an ambience control system (10) comprising a data storage (12) comprising data relating to occurrence of events and ambience states, the events being associated with a specific ambience state, an ambience rendering system (14) configured to adapt the ambience in an area (16) corresponding to the specific ambience state, a processor configured to determine estimated time to next event based on the data relating to occurrence of event, provided that the next event relates to an ambience state being different from the current ambience state the area ambience system being configured to gradually adapt the ambience in the area (16) to match the next ambient state.
    • 本发明涉及一种操作环境控制系统(10)的方法,该环境控制系统(10)包括环境渲染系统(14),其被配置成在区域(16)中调整环境以便建立当前环境状态,数据存储器(12) 包括与事件和环境状态的发生相关的数据,每个事件与特定的环境状态相关联,以及处理器,被配置为基于与事件的发生有关的数据来确定对下一个事件的估计时间,只要下一个事件相关 环境渲染系统(14)(10)被配置为逐渐调整区域(16)中的氛围以匹配下一环境状态,该方法包括确定当前环境状态,确定估计的当前环境状态 时间到下一个事件,以及基于预计到下一个事件的时间来操作区域(16)环境系统(10)。 本发明还涉及一种环境控制系统(10),其包括数据存储器(12),其包括与事件和环境状态的发生相关的数据,所述事件与特定的环境状态相关联,环境渲染系统(14)被配置为 在与特定氛围状态相对应的区域(16)中适应环境,处理器被配置为基于与事件发生相关的数据来确定对下一事件的估计时间,只要下一个事件与不同于 当前氛围状态区域环境系统被配置为逐渐适应区域(16)中的氛围以匹配下一环境状态。
    • 6. 发明授权
    • Indication of the condition of a user
    • 指示用户的状况
    • US08436810B2
    • 2013-05-07
    • US12293115
    • 2007-03-07
    • Geert LangereisEvert Jan Van LoenenRalph KurtDavid Paul WalkerSteffen Reymann
    • Geert LangereisEvert Jan Van LoenenRalph KurtDavid Paul WalkerSteffen Reymann
    • G09G5/00
    • A61B5/02438A61B5/0205A61B5/165A61B5/681A61B5/7445G04G21/025
    • A wearable electronic device such as a wrist watch (60) is supplied with conventional clock with two pointers (32,33). The device displays a parameter indicative of how “cool” the wearer has been over the past period as a function of time, using the time axis of one of the pointers (32,33). “Coolness” can be based on the measurement of related physiological parameters like heart-rate, body temperature, movement, skin resistance or muscle activity. “Coolness” of a person is understood as being the ability to cope with stress. Therefore, the stability of physiological parameters can be used to derive a signal for the subjective trait called “coolness”. All physiological parameters can be measured by sensors (10) in the watch (60) or in the strap (50). The invention is used as a gadget for self expression and emotional feedback.
    • 诸如手表(60)的可穿戴电子装置用两个指针(32,33)提供常规时钟。 设备使用指针之一(32,33)的时间轴,显示表示使用者在过去一段时间内作为时间的函数如何“冷静”的参数。 “冷静”可以基于相关生理参数的测量,如心率,体温,运动,皮肤抵抗力或肌肉活动。 一个人的“冷静”被理解为应付压力的能力。 因此,可以使用生理参数的稳定性来导出称为“冷静”的主观性状的信号。 所有的生理参数可以通过手表(60)中或传感器(50)中的传感器(10)来测量。 本发明用作自我表达和情感反馈的小工具。
    • 7. 发明申请
    • SYSTEM AND METHOD FOR PROCESSING APPLICATION LOGIC OF A VIRTUAL AND A REAL-WORLD AMBIENT INTELLIGENCE ENVIRONMENT
    • 虚拟和真实世界环境智能环境处理应用逻辑的系统与方法
    • US20110066412A1
    • 2011-03-17
    • US12990804
    • 2009-04-30
    • Markus Gerardus Leonardus Maria Van DoornEvert Jan Van Loenen
    • Markus Gerardus Leonardus Maria Van DoornEvert Jan Van Loenen
    • G06G7/48
    • G06N3/006G06T13/00
    • The invention relates to the processing of application logic of a virtual and a real-world ambient intelligence environment. An embodiment of the invention provides a system (10) for processing application logic (12) of a virtual and a real-world ambient intelligence environment, wherein the virtual ambient intelligence environment is a computer generated simulation of the real-world ambient intelligence environment and—the application logic defines at least one interactive scene in the virtual and the real-world ambient intelligence environment. The system comprises—a database (14) containing a computer executable reference model (16), which represents both the virtual and the real-world ambient intelligence environment and contains the application logic, —a translation processor (18) being adapted for translating the output of at least one sensor (20) of the virtual and real-world ambient intelligence environment into the reference model, and—an ambient creation engine (22) being adapted for processing the application logic of the reference model and controlling the rendering of the virtual and real-world ambient intelligence environment in accordance with the translated output of the at least one sensor of the virtual and real-world ambient intelligence environment.
    • 本发明涉及对虚拟和真实环境智能环境的应用逻辑的处理。 本发明的实施例提供了一种用于处理虚拟和真实环境智能环境的应用逻辑(12)的系统(10),其中所述虚拟环境智能环境是计算机生成的真实环境智能环境的模拟,以及 - 应用逻辑在虚拟和现实环境智能环境中定义至少一个交互场景。 该系统包括 - 包含计算机可执行参考模型(16)的数据库(14),其代表虚拟和真实环境智能环境并且包含应用逻辑, - 翻译处理器(18),其适于翻译 输出虚拟和真实环境智能环境的至少一个传感器(20)到参考模型中; - 环境创建引擎(22),其适于处理参考模型的应用逻辑并且控制 根据虚拟和现实环境智能环境的至少一个传感器的翻译输出,虚拟和现实环境智能环境。
    • 9. 发明授权
    • Lighting system for providing a daylight appearance and a luminaire
    • 用于提供日光外观和灯具的照明系统
    • US09097410B2
    • 2015-08-04
    • US14233403
    • 2012-07-05
    • Jacobus Dingenis Machiel Van BovenBerent Willem MeerbeekGabriel-Eugen OnacEvert Jan Van Loenen
    • Jacobus Dingenis Machiel Van BovenBerent Willem MeerbeekGabriel-Eugen OnacEvert Jan Van Loenen
    • F21V14/02F21S10/02F21W121/00F21Y101/02
    • F21V14/02F21S10/02F21S10/026F21W2121/008F21Y2115/10
    • A lighting system for providing a daylight appearance and a luminaire are provided. The lighting system comprises a plurality of light emitters and a plurality of optical elements. Said plurality of light emitters emit a wide light beam. Each optical element of at least a subset of the plurality of optical elements is related to a light emitter of the plurality of light emitters, thereby forming a pair. For each pair it applies that if a light emitter of a pair is arranged in a first relative position with respect to the optical element of said pair, the light emitter and the optical element are configured to emit the wide light beam, and if the light emitter of the pair is arranged in a second relative position with respect to the optical element of said pair, the optical element is configured to collimate a portion of the wide light beam to obtain a collimated light beam, and the optical element is configured to absorb another portion of light of the wide light beam in a predefined spectral range to obtain a blue light emission at light emission angles at least outside the collimated light beam.
    • 提供了一种用于提供日光外观和照明设备的照明系统。 照明系统包括多个发光体和多个光学元件。 所述多个发光体发射宽光束。 多个光学元件的至少一个子集的每个光学元件与多个发光体的光发射器有关,从而形成一对。 对于每一对,适用的是,如果一对光发射器相对于所述对的光学元件布置在第一相对位置,则光发射器和光学元件被配置为发射宽光束,并且如果光 一对的发射极相对于所述对的光学元件布置在第二相对位置,所述光学元件被配置为准直所述宽光束的一部分以获得准直光束,并且所述光学元件被配置为吸收 在预定的光谱范围内的宽光束的另一部分光以至少在准直光束外部以发光角获得蓝色发光。
    • 10. 发明申请
    • ELECTROPHORETIC DISPLAY WINDOW
    • 电子显示窗
    • US20110038030A1
    • 2011-02-17
    • US12989454
    • 2009-04-23
    • Sander Jurgen RoosendaalMark Thomas JohnsonTatiana Aleksandrovna LashinaEvert Jan Van Loenen
    • Sander Jurgen RoosendaalMark Thomas JohnsonTatiana Aleksandrovna LashinaEvert Jan Van Loenen
    • G02F1/167
    • G09F9/372E06B9/24E06B2009/2464G09F19/14G09F19/22
    • A window (110, 210, 310, 410, 510) including blind elements (120, 210, 320, 330, 340, 350, 360, 370, 380, 385, 390, 420, 430, 490) embedded within the window (110, 210, 310, 410, 510) and/or associated with the window (110, 210, 310, 410, 510). The blind elements (120, 210, 320, 330, 340, 350, 360, 370, 380, 385, 390, 420, 430, 490) may be embedded at least partially in the window (110, 210, 310, 410, 510). The blind elements (120, 210, 320, 330, 340, 350, 360, 370, 380, 385, 390, 420, 430, 490) may be positioned substantially perpendicular to a viewing surface of the window (110, 210, 310, 410, 510). Each of the blind elements (120, 210, 320, 330, 340, 350, 360, 370, 380, 385, 390, 420, 430, 490) includes a display surface (150) that may include display elements (750, 760) positioned to be viewable through the window (110, 210, 310, 410, 510) such that if the window (110, 210, 310, 410, 510) is viewed from an angle offset from a normal viewing angle, the surface on each of the blind elements (750, 760) are together configured to provide a display image. A further layer (316, 318) may be associated with the window (110, 210, 310, 410, 510) and the blind elements (120, 210, 320, 330, 340, 350, 360, 370, 380, 385, 390, 420, 430, 490) may be sandwiched between the further layer (316, 318) and the window (110, 210, 310, 410, 510).
    • 一个窗口(110,210,310,410,510)包括嵌入在窗口内的盲元件(120,210,320,330,340,350,360,370,380,385,390,420,430,490) 110,210,310,410,510)和/或与窗口(110,210,310,410,510)相关联。 盲元件(120,210,320,330,340,350,360,370,380,385,390,420,430,490)可以至少部分地嵌入窗口(110,210,310,410,440,490,490,490,340,340,340,340,340,350,360,340,340,340,350,360,340,340,340,450,360,340,340,340,450,340 510)。 盲元件(120,210,320,330,340,350,360,370,380,385,390,420,430,490)可以被定位成基本上垂直于窗(110,210,310)的观察表面 ,410,510)。 每个盲元件(120,210,320,330,340,350,360,370,380,385,390,420,430,490,490)包括显示表面(150),其可以包括显示元件(750,760 )定位成可通过窗口(110,210,310,410,510)观看,使得如果从与正常视角偏移的角度观察窗口(110,210,310,410,510),则表面开 每个盲元件(750,760)一起配置成提供显示图像。 另一层(316,318)可以与窗口(110,210,310,410,510)和盲元件 390,320,430,490)可夹在另一层(316,318)和窗口(110,210,310,410,510)之间。