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    • 1. 发明申请
    • AUTOMATED SHADE CONTROL SYSTEM UTILIZING BRIGHTNESS MODELING
    • 自动化阴影控制系统利用亮度建模
    • WO2014074308A1
    • 2014-05-15
    • PCT/US2013066316
    • 2013-10-23
    • MECHOSHADE SYSTEMS INC
    • BERMAN JOELBERMAN JANGREENSPAN ALEXHEBEISEN STEPHEN PRAMALINGAM MUTHUKUMAR
    • G05B13/00
    • E06B9/68E06B2009/6827
    • Automated shade systems comprise motorized window coverings, sensors, and controllers that use algorithms to control operation of the automated shade control system. These algorithms may include information such as: 3-D models of a building and surrounding structures, shadow information, reflectance information, lighting and radiation information, ASHRAE clear sky algorithms, log information related to manual overrides, occupant preference information, motion information, real-time sky conditions, solar radiation on a building, a total foot-candle load on a structure, brightness overrides, actual and/or calculated BTU load, time-of-year information, and microclimate analysis. Modeled brightness information may be utilized to control shades.
    • 自动遮阳系统包括电动窗帘,传感器和控制器,其使用算法来控制自动遮阳帘控制系统的操作。 这些算法可能包括以下信息:建筑物和周围结构的三维模型,阴影信息,反射信息,照明和辐射信息,ASHRAE清晰天空算法,与手动覆盖相关的日志信息,乘客偏好信息,运动信息,实际 时间天空条件,建筑物上的太阳辐射,结构上的总脚烛负载,亮度覆盖,实际和/或计算的BTU负载,时间信息和微气候分析。 可以利用建模的亮度信息来控制阴影。
    • 2. 发明申请
    • AUTOMATED SHADE CONTROL METHOD AND SYSTEM
    • 自动阴影控制方法与系统
    • WO2007030322A3
    • 2009-05-07
    • PCT/US2006032874
    • 2006-08-23
    • MECHOSHADE SYSTEMS INCBERMAN JOELBERMAN JANGREENSPAN ALEXHEBEISEN STEVE
    • BERMAN JOELBERMAN JANGREENSPAN ALEXHEBEISEN STEVE
    • G05B19/042E05F15/20E06B9/56
    • E06B9/56E06B9/32E06B9/322E06B9/68E06B2009/6827Y02A30/257Y02B80/50
    • This invention generally relates to automated shade systems that employ one or more algorithms to provide appropriate solar protection from direct solar penetration, reduce solar heat gain, reduce radiant surface temperatures, control penetration of the solar ray, optimize the interior natural daylighting of a structure and optimize the efficiency of interior lighting systems The invention additionally comprises a motorized window covering (130), radiometers (125), and a central control system (110) that uses algorithms to optimize the interior lighting of a structure These algorithms include information such as geodesic coordinates of a building, solar position, solar angle solar radiation, solar penetration angles, solar intensity, the measured brightness and veiling glare across a surface, time, solar altitude, solar azimuth, detected sky conditions, ASHRAE sky models, sunrise and sunset times, surface orientations of windows, incidence angles of the sun striking windows, window covering positions, minimum BTU load and solar heat gain
    • 本发明一般涉及采用一种或多种算法来提供适当的太阳能保护以免太阳直接穿透,减少太阳热增益,降低辐射表面温度,控制太阳光线穿透,优化结构内部自然采光的自动遮阳系统, 优化室内照明系统的效率本发明还包括电动窗帘(130),辐射计(125)和中央控制系统(110),其使用算法来优化结构的内部照明。这些算法包括诸如测地线 建筑物的坐标,太阳位置,太阳能角度太阳辐射,太阳能穿透角度,太阳能强度,测量的亮度和表面上的眩光,时间,太阳高度,太阳方位角,检测到的天空条件,ASHRAE天空模型,日出和日落时间 ,窗户的表面取向,太阳撞击窗的入射角,窗口cov 最小BTU负载和太阳能热增益
    • 4. 发明申请
    • AUTOMATED SHADE CONTROL IN CONNECTION WITH ELECTROCHROMIC GLASS
    • 与电致发光玻璃相连的自动阴影控制
    • WO2013112255A1
    • 2013-08-01
    • PCT/US2012/071121
    • 2012-12-21
    • MECHOSHADE SYSTEMS, INC.
    • BERMAN, JoelBERMAN, JanGREENSPAN, AlexHEBEISEN, Stephen
    • G02F1/15E06B9/24
    • E06B9/24G02F1/163G05B2219/2642G05B2219/2653
    • Automated shade systems may comprise controllers that use algorithms to control operation of the automated shade control system and components thereof, for example window coverings, glass having variable characteristics, and so forth. These algorithms may include information such as: 3-D models of a building and surrounding structures, shadow information, reflectance information, lighting and radiation information, information regarding one or more variable characteristics of glass, clear sky algorithms, log information related to manual overrides, occupant preference information, motion information, real-time sky conditions, solar radiation on a building, a total foot-candle load on a structure, brightness overrides, actual and/or calculated BTU load, time-of-year information, and microclimate analysis.
    • 自动遮阳系统可以包括使用算法来控制自动遮光罩控制系统及其部件的操作的控制器,例如窗帘,具有可变特性的玻璃等。 这些算法可以包括以下信息:建筑物和周围结构的三维模型,阴影信息,反射信息,照明和辐射信息,关于玻璃的一个或多个可变特性的信息,晴天算法,与手动覆盖有关的日志信息 ,乘客偏好信息,运动信息,实时天空条件,建筑物上的太阳辐射,结构上的总脚烛负载,亮度覆盖,实际和/或计算的BTU负载,时间信息和小气候 分析。
    • 6. 发明申请
    • AUTOMATED SHADE CONTROL METHOD AND SYSTEM
    • 自动阴影控制方法与系统
    • WO2007030322A2
    • 2007-03-15
    • PCT/US2006/032874
    • 2006-08-23
    • MECHOSHADE SYSTEMS, INC.BERMAN, JoelBERMAN, JanGREENSPAN, AlexHEBEISEN, Steve
    • BERMAN, JoelBERMAN, JanGREENSPAN, AlexHEBEISEN, Steve
    • E06B9/56
    • E06B9/56E06B9/32E06B9/322E06B9/68E06B2009/6827Y02A30/257Y02B80/50
    • This invention generally relates to automated shade systems that employ one or more algorithms to provide appropriate solar protection from direct solar penetration; reduce solar heat gain; reduce radiant surface temperatures; control penetration of the solar ray, optimize the interior natural daylighting of a structure and optimize the efficiency of interior lighting systems. The invention additionally comprises a motorized window covering, radiometers, and a central control system that uses algorithms to optimize the interior lighting of a structure. These algorithms include information such as: geodesic coordinates of a building; solar position; solar angle solar radiation; solar penetration angles; solar intensity; the measured brightness and veiling glare across a surface; time, solar altitude, solar azimuth, detected sky conditions, ASHRAE sky models, sunrise and sunset times, surface orientations of windows, incidence angles of the sun striking windows, window covering positions, minimum BTU load and solar heat gain.
    • 本发明一般涉及采用一种或多种算法来提供适当的太阳能保护免受直接太阳能渗透的自动遮阳系统; 降低太阳能热增益; 降低辐射表面温度; 控制太阳射线的穿透,优化结构的内部自然采光并优化室内照明系统的效率。 本发明还包括电动窗户覆盖物,辐射计和使用算法来优化结构的内部照明的中央控制系统。 这些算法包括诸如:建筑物的测地坐标; 太阳位; 太阳角太阳辐射; 太阳能穿透角度 太阳强度; 测量的亮度和面罩在表面上闪烁; 时间,太阳高度,太阳方位角,探测天空条件,ASHRAE天空模型,日出和落日时间,窗户的表面方向,太阳入射窗的入射角,窗户覆盖位置,最小BTU负载和太阳热增益。
    • 10. 发明专利
    • Automated shade control in connection with electrochromic glass
    • GB2572913A8
    • 2019-10-30
    • GB201910406
    • 2012-12-21
    • MECHOSHADE SYSTEMS INC
    • JOEL BERMANJAN BERMANALEX GREENSPANSTEPHEN HEBEISEN
    • G02F1/15E06B9/24
    • Automatic control of a variable characteristic of glass, such as a window of a building. A standard management routine is established based upon solar load on the glass or solar penetration through the glass. The standard routine may for example be based on a proactive algorithm (i.e. predictive) which models the scheduled sun’s rays on the glass throughout the day. The automatic control overrides the standard routine in response to the presence of at least one of: calculated reflected light on the glass (900, fig 9), calculated shadow on the glass (800, fig 8), the actual thermal load on the glass exceeding a predetermined value, or a calculated thermal load on the glass exceeding a predetermined value 700. The override control may be based on a reactive algorithm (i.e. real-time). The variable characteristic of the glass may be, for example, a shading coefficient, visible light transmission, heat flow or reflectivity. The variable characteristic of the glass may be implemented using switchable, dynamic or smart glass, which may use electrochromic or magnetochromic coatings/layers, or glass having suspended particle coatings/layers, or polymer dispersed liquid crystal coatings/layers. The glass may form part of a window, skylight, door, or animal enclosure.