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11.
公开(公告)号:US20160348932A1
公开(公告)日:2016-12-01
申请号:US15117675
申请日:2014-11-19
发明人: Shingo TAMARU , Yuuichi HANADA , Dai MURAYAMA , Masahiko MURAI , Koji KIMURA
CPC分类号: F24F11/30 , F24F11/46 , F24F11/52 , F24F11/62 , F24F11/64 , F24F2110/00 , F24F2110/70 , F24F2120/10 , F24F2130/30 , F24F2140/50 , F24F2140/60 , G01R22/061 , G01R22/10 , G05B1/00 , G05B13/02 , G05B2219/2614
摘要: According to an embodiment, a thermal load estimating device receives actual power consumption of various types of devices installed in a room, a thermal load pattern of a time-series maximum thermal load of the room, and power consumption of the various types of devices in the room; estimates a thermal load of the room at appropriate time based on the actual power consumption, the thermal load pattern, and the power consumption; and outputs an estimated thermal-load value as a result of estimation.
摘要翻译: 根据实施例,热负荷估计装置接收室内安装的各种装置的实际功率消耗,房间的时间序列最大热负荷的热负荷模式和各种装置的功耗 房间; 基于实际功耗,热负载模式和功耗估计在适当时间的房间的热负荷; 并且作为估计的结果输出估计的热负荷值。
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公开(公告)号:US20160252268A1
公开(公告)日:2016-09-01
申请号:US15150116
申请日:2016-05-09
发明人: Mohammad Aljabari , Michael Lunacek , Jeff Tauer
CPC分类号: G01K3/14 , F24F11/30 , F24F11/62 , F24F11/63 , F24F2110/10 , F24F2110/12 , F24F2130/30 , F24F2140/50 , G01K1/00 , G01K1/026 , G01K1/20 , G01K7/42 , G01K7/427 , G05D23/1917 , G05D23/1932
摘要: A mechanism for indicating ambient temperature of an enclosure from temperatures determined within the enclosure. The temperatures may be obtained from two or more sensors at each of two or more locations within the enclosure. The enclosure may include heat generating components such as electronics. The enclosure may also incorporate one or more dynamic components that emanate sudden amounts of heat. The present mechanism compensates for such heat sources with a compensating scheme.
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公开(公告)号:US20160066067A1
公开(公告)日:2016-03-03
申请号:US14476116
申请日:2014-09-03
申请人: Oberon, Inc.
IPC分类号: H04Q9/00
CPC分类号: H04Q9/00 , F24F11/30 , F24F2110/00 , F24F2110/10 , F24F2110/20 , F24F2110/50 , F24F2110/64 , F24F2130/30 , F24F2130/40 , G16H40/20
摘要: A patient satisfaction sensor device comprises a data bus, a multitude of sensors, at least one processing unit, a communications interface, and memory. The multitude of sensors may include light sensor(s), sound sensor(s), humidity sensor(s), temperature sensor(s), air quality sensor(s), and/or the like. The memory is configured to hold data and machine executable instructions. The machine executable instructions are configured to cause at least one processing unit to: collect sensor data from at least one of the multitude of sensors, generate processed sensor data from the sensor data, and generate a report that comprises processed sensor data that exceeds at least one threshold. The communications interface is configured to communicate the report to at least one external device.
摘要翻译: 患者满意度传感器装置包括数据总线,多个传感器,至少一个处理单元,通信接口和存储器。 多个传感器可以包括光传感器,声音传感器,湿度传感器,温度传感器,空气质量传感器和/或类似物。 内存被配置为保存数据和机器可执行指令。 机器可执行指令被配置为使至少一个处理单元:从多个传感器中的至少一个收集传感器数据,从传感器数据生成经处理的传感器数据,并且生成包括处理过的传感器数据的报告,该报告至少超过 一个门槛。 通信接口被配置为将报告传达到至少一个外部设备。
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公开(公告)号:US20130295835A1
公开(公告)日:2013-11-07
申请号:US13996464
申请日:2011-12-19
CPC分类号: G01N21/17 , F24F11/30 , F24F11/72 , F24F2110/50 , F24F2110/70 , F24F2110/72 , F24F2130/30 , G01N21/532
摘要: A control/regulation unit and a sensor device in an air-conditioning device enable detecting presence of an analyte in room air to infer the quality of the room air. A light source emits light into the room on a light path that is reflected to a light-sensitive detector. The air-conditioning device is controlled/regulated as a function of an output of the detector. If the analyte is situated on the light path, the light is scattered and/or absorbed such that the detector detects a smaller quantity of light, on the basis of which it is possible to infer the presence of the analyte. The light source can be pivoted to set various light paths through the room to determine where the analyte is situated in the room based on the output of the detector for each light path. The air-conditioning device can controlled to selectively influence the atmospheric environment locally.
摘要翻译: 空调装置中的控制/调节单元和传感器装置能够检测室内空气中的分析物的存在以推断室内空气的质量。 光源将光反射到光敏检测器的光路上发射到房间中。 空调装置作为检测器的输出的函数被控制/调节。 如果分析物位于光路上,则光被散射和/或吸收,使得检测器检测到较少量的光,据此可以推断分析物的存在。 光源可以枢转,以设置穿过房间的各种光路,以根据每个光路的检测器的输出来确定分析物位于房间中的位置。 可以控制空调装置以选择性地影响大气环境。
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公开(公告)号:US20110251725A1
公开(公告)日:2011-10-13
申请号:US13081617
申请日:2011-04-07
申请人: MARK KIT JIUN CHAN
发明人: MARK KIT JIUN CHAN
CPC分类号: H05B37/0227 , F24F2130/30
摘要: A utility control system governs provision of genuine on-demand lighting, as well other utilities as in heating, ventilation and air conditioning (“HVAC”) in territories of a building in accordance with occupant demand. In lighting control, the present invention enacts on-demand illumination anterior to the occupant entering a normally dimmed/unlighted territory; lighting is provided immediately anterior to occupant entry into an oncoming territory. As the occupant leaves each territory, lighting provision is suspended/terminated in that territory for energy conservation. Signals and commands received by the utility control system from a plurality of override switches, interactive sensors and occupancy sensors within each monitored territory, as well as the control units of an elevator control system (“ECS”), a Building Management System (“BMS”) and a client computer govern the utility control system for configuring automated lighting provision. The utility control system predicts an occupant traversal path and provides the occupant with the best-suited lighted environments in each territory of the occupant traversal path.
摘要翻译: 公用事业控制系统管理根据乘客需求,在建筑物的领土内提供真正的按需照明以及其他电力,如采暖,通风和空调(“暖通空调”)。 在照明控制中,本发明在进入正常暗淡/不明亮的地区的乘员前进行按需照明; 在乘客进入即将到来的领土之前提供照明。 随着乘客离开每个地区,照明设施在该地区暂停/终止节能。 公用事业控制系统从各监控区域内的多个超控开关,交互式传感器和占用传感器以及电梯控制系统(“ECS”),楼宇管理系统(“BMS”)的控制单元接收的信号和命令 “)和客户端计算机管理公用事业控制系统以配置自动照明提供。 公用事业控制系统预测乘员穿越路径,并为乘客在乘员穿越路径的每个领域提供最适合的照明环境。
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公开(公告)号:US11832365B2
公开(公告)日:2023-11-28
申请号:US17738245
申请日:2022-05-06
发明人: Rhodes B. Baker , Craig Alan Casey , Galen Edgar Knode , Brent Protzman , Thomas M. Shearer , James P. Steiner
IPC分类号: G06T5/20 , G06T5/50 , G06T7/11 , G06T7/246 , G06V10/10 , G06V10/141 , G06V10/22 , G06V20/52 , H05B47/105 , H05B47/19 , H05B45/20 , H05B47/11 , H05B47/115 , H05B47/125 , H05B47/13 , H05B45/12 , H05B45/10 , H04N23/62 , H04N23/661 , H04N23/667 , G01V8/20 , H04N1/40 , G05B15/02 , H04N7/18 , F24F120/10 , F24F130/30 , F24F11/88 , F24F11/56 , F24F110/10
CPC分类号: H05B47/105 , G01V8/20 , G05B15/02 , G06T5/20 , G06T5/50 , G06T7/11 , G06T7/246 , G06V10/10 , G06V10/141 , G06V10/235 , G06V20/52 , H04N1/40012 , H04N23/62 , H04N23/661 , H04N23/667 , H05B45/10 , H05B45/12 , H05B45/20 , H05B47/11 , H05B47/115 , H05B47/125 , H05B47/13 , H05B47/19 , F24F11/56 , F24F11/88 , F24F2110/10 , F24F2120/10 , F24F2130/30 , G06T2207/10004 , G06T2207/10016 , G06T2207/10024 , G06T2207/10048 , G06T2207/20224 , G06T2207/30196 , G06T2207/30232 , H04N7/185 , H04N2201/0084
摘要: A visible light sensor (VLS) may be configured to sense environmental characteristics using images of a space. The VLS may be controlled in one or more modes, including a daylight glare sensor mode, a daylighting sensor mode, a color sensor mode, and/or an occupancy/vacancy sensor mode. In the daylight glare sensor mode, the VLS may be configured to decrease or eliminate glares. In the daylighting sensor mode and/or color sensor mode, the VLS may be configured to provide a preferred amount of light and color temperature, respectively, within the space. In the occupancy/vacancy sensor mode, the VLS may be configured to detect an occupancy/vacancy condition within the space and adjust one or more control devices according to the occupation or vacancy of the space. The visible light sensor may be configured to protect the privacy of users within the space via software, a removable module, and/or a special sensor.
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公开(公告)号:US11739957B2
公开(公告)日:2023-08-29
申请号:US18112645
申请日:2023-02-22
发明人: Hirosato Sakai , Hidenori Syougen , Nobuyuki Morimoto , Tsuraki Nakajima , Shingo Takenawa , Masahiro Yamaguchi , Kazuki Doumoto
IPC分类号: F24F7/007 , F24F11/00 , F24F11/30 , F24F11/77 , F24F11/56 , F24F110/10 , F24F110/20 , F24F110/70 , F24F110/72 , F24F120/10 , F24F130/30
CPC分类号: F24F7/007 , F24F11/0001 , F24F11/30 , F24F11/56 , F24F11/77 , F24F2110/10 , F24F2110/20 , F24F2110/70 , F24F2110/72 , F24F2120/10 , F24F2130/30
摘要: A ventilation fan includes a body unit, which has a fan disposed in a body case and a fan controller operable to control an air volume of the fan. The ventilation fan also includes a sensor module having an indoor environment detecting sensor and a module controller operable to control a detecting operation of the indoor environment detecting sensor. The body unit has a module mount on which the sensor module is mounted and another sensor module can be mounted in place of the sensor module. The module mount is connected to the fan controller. The module controller outputs detection information obtained based on a detection result of the indoor environment detecting sensor to the fan controller, which in turn controls the air volume of the fan based on the detection information inputted thereto.
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公开(公告)号:US20180320916A1
公开(公告)日:2018-11-08
申请号:US15770982
申请日:2016-10-21
申请人: CARRIER CORPORATION
CPC分类号: F24F11/46 , F24F11/30 , F24F11/58 , F24F2110/50 , F24F2110/70 , F24F2120/10 , F24F2130/30 , G05D23/1931 , H04W4/80
摘要: A HVAC management system includes a space having an atmospheric condition to be controlled. Also included are air manipulation components to alter the atmospheric condition of the space. Further included is a sensor assembly located proximate the space for approximating a number of occupants present in the space based on a number of mobile devices located within the space. The sensor assembly includes a receiver capable of detecting communication data associated with a mobile device. The HVAC management system yet further includes a controller in operative communication with the air manipulation components and the sensor assembly, the controller receiving information from the sensor assembly comprising temperature data and the number of mobile devices, the controller controlling the air manipulation components based on the information received from the sensor assembly.
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公开(公告)号:US20180168020A1
公开(公告)日:2018-06-14
申请号:US15838305
申请日:2017-12-11
CPC分类号: H05B37/0272 , F24F11/56 , F24F11/88 , F24F2110/10 , F24F2120/10 , F24F2130/30 , G01V8/20 , G05B15/02 , G06K9/00771 , G06K9/20 , G06K9/2081 , G06T5/20 , G06T5/50 , G06T7/11 , G06T7/246 , G06T2207/10004 , G06T2207/10016 , G06T2207/10024 , G06T2207/10048 , G06T2207/20224 , G06T2207/30196 , G06T2207/30232 , H04N1/40012 , H04N5/23206 , H04N5/23216 , H04N5/23245 , H04N7/185 , H04N2201/0084 , H05B33/0851 , H05B33/0854 , H05B33/0863 , H05B33/0872 , H05B37/0218 , H05B37/0227
摘要: A visible light sensor may be configured to sense environmental characteristics of a space using an image of the space. The visible light sensor may be controlled in one or more modes, including a daylight glare sensor mode, a daylighting sensor mode, a color sensor mode, and/or an occupancy/vacancy sensor mode. In the daylight glare sensor mode, the visible light sensor may be configured to decrease or eliminate glare within a space. In the daylighting sensor mode and the color sensor mode, the visible light sensor may be configured to provide a preferred amount of light and color temperature, respectively, within the space. In the occupancy/vacancy sensor mode, the visible light sensor may be configured to detect an occupancy/vacancy condition within the space and adjust one or more control devices according to the occupation or vacancy of the space. The visible light sensor may be configured to protect the privacy of users within the space via software, a removable module, and/or a special sensor.
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公开(公告)号:US20180031265A1
公开(公告)日:2018-02-01
申请号:US15659022
申请日:2017-07-25
申请人: James P. Janniello
发明人: James P. Janniello
CPC分类号: F24F11/79 , F24F11/30 , F24F11/74 , F24F13/15 , F24F2110/10 , F24F2110/12 , F24F2110/20 , F24F2110/22 , F24F2120/10 , F24F2120/12 , F24F2120/14 , F24F2130/00 , F24F2130/10 , F24F2130/20 , F24F2130/30
摘要: Methods, systems, and apparatus for controlling an air flow are described. A monitor obtains an environmental parameter and an air deflector controls the air flow exiting an air duct. An air deflector actuator configures the air deflector, the configuration of the air deflector being based on the environmental parameter.
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