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    • 3. 发明授权
    • Distributed air conditioning system
    • 分布式空调系统
    • US6009939A
    • 2000-01-04
    • US806665
    • 1997-02-26
    • Ryoji NakanishiYoshihiro Nakamura
    • Ryoji NakanishiYoshihiro Nakamura
    • F24F11/02F24F11/00F25B13/00F24F3/00
    • F24F11/006F24F2011/0067F24F2011/0091
    • In a distributed air conditioning system capable of controlling cooling or heating by means of a substitute temperature detector when the room temperature detector of a room to be air conditioned is abnormal, room temperatures detected by the temperature detector D2 of an indoor unit 20, the temperature detector D1 of an operation unit 30 and the temperature detector D3 of a monitoring meter 86 for monitoring the environment of the room 85 to be air conditioned are monitored by a central monitoring and control board 50 and the order of selecting the temperature detectors used for the control of cooling or heating is determined. When a temperature detector selected according to the selection order is abnormal, an alarm for the abnormality is displayed by the central monitoring and control board 50 and a temperature detector which is the next in the selection order is selected to control cooling or heating of the indoor unit. By comparing temperature values detected by the temperature detectors, a temperature detector detecting a temperature value whose differences from other temperature values are equal to or more than a predetermined value is judged to be abnormal. Even when the temperature detector D2 of the indoor unit 20 becomes abnormal, it is possible to control cooling or heating without stopping the operation of the system due to an erroneous cooling or heating operation.
    • 在空气调节室的室温检测器异常的情况下,能够通过替代温度检测器控制冷却或加热的分布式空调系统,由室内机20的温度检测器D2检测出的室温, 操作单元30的检测器D1和用于监视待空调的房间85的环境的监视仪表86的温度检测器D3由中央监视和控制板50监视,并且选择用于 确定冷却或加热的控制。 当根据选择顺序选择的温度检测器异常时,中央监控和控制板50显示异常报警,并选择下一个选择顺序的温度检测器来控制室内冷却或加热 单元。 通过比较由温度检测器检测出的温度值,检测出与其他温度值的差异等于或大于预定值的温度值的温度检测器被判定为异常。 即使在室内机20的温度检测器D2变得异常的情况下,也可以在不停止由于错误的制冷或制热运转引起的系统的运转的情况下进行制冷或加热。
    • 5. 发明授权
    • Control device for air conditioner
    • 空调控制装置
    • US5647223A
    • 1997-07-15
    • US564128
    • 1995-12-15
    • Kunihide WadaKoichiro Tamakoshi
    • Kunihide WadaKoichiro Tamakoshi
    • F24F11/02F24F11/00G05D23/19F25B7/00G05D23/00
    • G05D23/1934F24F11/0009G05D23/1905F24F2011/0067
    • A plurality of remote control groups (GR) each have a plurality of indoor units (20, 20, . . . ) designated as a single master unit (2a) and as slave units (2b) cooperating with the master unit (2a). A central monitor board (30) is provided for communicating control signals with each of the indoor units (20, 20, . . . ). A memory of the central monitor board (30) has a type area (M2) for storing type data representing that each indoor unit is a master unit (2a) or a slave unit (2b). The central monitor board (30) transmits a start signal to the indoor unit (20) as a master unit (2a) in accordance with type data of the type area (M2). In addition, the central monitor board (30) determines that the indoor units (20, 20, . . . ) having begun to operate in response to the start signal belong to one group (GR) and enters the determination result in a group area (M3) of the memory.
    • PCT No.PCT / JP95 / 00756 Sec。 371 1995年12月15日第 102(e)1995年12月15日日期PCT 1995年4月18日提交PCT公布。 WO95 / 28607 PCT出版物 日期:1995年10月26日多个遥控组(GR)各自具有指定为单个主单元(2a)的多个室内单元(20,20 ...)和作为与主机配合的从单元(2b) 单元(2a)。 中央监视器板(30)用于与每个室内单元(20,20 ...)通信控制信号。 中央监视器板(30)的存储器具有用于存储表示每个室内单元是主单元(2a)或从单元(2b)的类型数据的类型区域(M2)。 根据类型区域(M2)的类型数据,中央监视器板(30)将作为主单元(2a)的开始信号发送到室内机(20)。 此外,中央监视器板(30)确定已经开始响应于开始信号操作的室内单元(20,20 ...)属于一个组(GR),并将确定结果输入到组区域 (M3)的内存。
    • 7. 发明授权
    • Self-balancing variable air volume heating and cooling system
    • 自平衡可变风量加热和冷却系统
    • US5535814A
    • 1996-07-16
    • US532969
    • 1995-09-22
    • Thomas B. Hartman
    • Thomas B. Hartman
    • F24F11/00F24F11/053F24F3/044
    • F24F11/0009F24F11/053F24F2011/0038F24F2011/0067
    • A variable air volume heating and cooling system that provides automatic system-wide airflow balancing is disclosed. To balance the system, each terminal box maximum airflow setting is automatically and continuously adjusted in response to central supply fan loading conditions together with local zone conditions. The new system has the advantage of automating both initial air balancing of terminal units at the time of installation, as well as rebalancing to respond to changing conditions, without technician intervention. Substantial savings in energy cost can be achieved since the operating curve of each terminal unit is automatically adjusted to demand no more conditioned air volume than necessary.
    • 公开了一种提供自动全系统气流平衡的可变风量加热和冷却系统。 为了平衡系统,每个接线盒最大气流设置都会自动连续调节,以响应中央供风扇的负载情况以及当地的区域条件。 新系统具有在安装时实现终端机初始空气平衡自动化的优点,并且在没有技术人员干预的情况下重新平衡以应对不断变化的条件。 由于每个终端单元的操作曲线被自动调整以便不需要更多的调节空气量,所以可以大幅节省能源成本。
    • 8. 发明授权
    • Temperature control system and controller therefor
    • 温控系统及其控制器
    • US5495887A
    • 1996-03-05
    • US64653
    • 1993-05-21
    • Jerry KathnelsonMichael S. D. Reid
    • Jerry KathnelsonMichael S. D. Reid
    • F24F11/00G05D23/19F25B29/00
    • F24F11/0009G05D23/1934F24F11/0012F24F2011/0067
    • A temperature control system for a building structure such as a household is divided into a plurality of zones. A controller acts between temperature sensing devices in each of the zones and an adjustable thermostat which allows the desired temperature in the building structure to be selected. The controller allows individual zones to be selected to receive conditioned air and allows one of the selected zones to be designated as a control zone. A heating or cooling decision for the temperature control system for all of the selected zones is made based on the difference between the thermostat setting and the output of the temperature sensing device in the control zone. The control zone can be changed manually to the next available selected zone. Different visual indications are given for the control zone and the selected zones. Zones with faulty temperature sensing devices cannot be control zones or selected zones.
    • 用于诸如家庭的建筑结构的温度控制系统被分成多个区域。 控制器在每个区域中的温度感测装置之间起作用,并且可调节恒温器,其允许选择建筑结构中的期望温度。 控制器允许单独的区域被选择以接收经调节的空气,并允许将所选择的区域中的一个指定为控制区域。 基于控制区域中恒温器设置和温度感测装置的输出之间的差异,对所有选定区域的温度控制系统进行加热或冷却决定。 控制区域可以手动更改为下一个可用的选定区域。 给出了控制区和选定区域的不同视觉指示。 具有温度感测装置故障的区域不能是控制区域或选定的区域。
    • 10. 发明授权
    • Activity based equipment scheduling method and system
    • 基于活动的设备调度方法和系统
    • US6073110A
    • 2000-06-06
    • US898657
    • 1997-07-22
    • Neil RhodesTheo FrutigerMaria A. PowerMichael H. Soemo
    • Neil RhodesTheo FrutigerMaria A. PowerMichael H. Soemo
    • G06Q10/06G06Q10/10G06F17/60
    • G06Q10/109G06Q10/06G06Q10/0631F24F2011/0067F24F2011/0091Y10S715/963
    • A computer based equipment scheduling system uses activity definition data to schedule equipment. The method may be carried out by a networked computer system that receives activity definition data representing an activity, such as a volleyball game or board meeting, that occurs in a building. This data is stored in a database for use by multiple nodes. The activity definition data may include text or graphical data indicating an activity name, data representing a list of zones that the activity will affect and data representing the mode of possible operation of each building zone affected by the activity. The method also includes assigning zone mode data to the activity data for use in controlling building resources and then automatically controlling the building resources to attain a zone mode of operation assigned to the activity definition data.
    • 基于计算机的设备调度系统使用活动定义数据来调度设备。 该方法可以由接收表示在建筑物中发生的诸如排球游戏或董事会议的活动的活动定义数据的联网计算机系统来执行。 该数据存储在数据库中供多个节点使用。 活动定义数据可以包括指示活动名称的文本或图形数据,表示活动将影响的区域列表的数据和表示受活动影响的每个建筑区域的可能操作模式的数据。 该方法还包括将区域模式数据分配给活动数据,以用于控制建筑资源,然后自动控制建筑资源以获得分配给活动定义数据的区域操作模式。