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    • 1. 发明申请
    • Scheduling apparatus and method
    • 调度装置和方法
    • US20110066758A1
    • 2011-03-17
    • US12923207
    • 2010-09-09
    • Tomonori MaegawaKeisuke MeraShigeo MatsuzawaKoichi IkedaNobutaka Nishimura
    • Tomonori MaegawaKeisuke MeraShigeo MatsuzawaKoichi IkedaNobutaka Nishimura
    • G06F15/16
    • H04L12/6418H04L67/12
    • According to one embodiment, a scheduling apparatus sends queries to communication modules in buildings and receives facility information measured at monitor-control points from the communication modules. As for each communication module, a network address, a waiting time to receive the facility information after sending a query, and a connection with the monitor-control points, are stored. When a service request indicating at least one monitor-control point is received, queries each including the network address of a communication module connected with a monitor-control point indicated by the service request, are generated. A priority of each query is decided based on the waiting time corresponding to the communication module. Each query is added to a first send queue or a second send queue based on the priority. When queries are sent, a timing to send from the first send queue is same as or earlier than a timing to send from the second send queue.
    • 根据一个实施例,调度装置向建筑物中的通信模块发送查询,并且从通信模块接收在监视控制点处测量的设施信息。 对于每个通信模块,存储网络地址,发送查询之后接收设施信息的等待时间以及与监视控制点的连接。 当接收到指示至少一个监视控制点的服务请求时,生成包括由服务请求指示的监视控制点连接的通信模块的网络地址的查询。 基于对应于通信模块的等待时间来确定每个查询的优先级。 基于优先级将每个查询添加到第一个发送队列或第二个发送队列。 当发送查询时,从第一发送队列发送的定时与从第二发送队列发送的定时相同或较早。
    • 2. 发明授权
    • Scheduling apparatus and method
    • 调度装置和方法
    • US08452892B2
    • 2013-05-28
    • US12923207
    • 2010-09-09
    • Tomonori MaegawaKeisuke MeraShigeo MatsuzawaKoichi IkedaNobutaka Nishimura
    • Tomonori MaegawaKeisuke MeraShigeo MatsuzawaKoichi IkedaNobutaka Nishimura
    • G06F12/173H04L12/00
    • H04L12/6418H04L67/12
    • According to one embodiment, a scheduling apparatus sends queries to communication modules in buildings and receives facility information measured at monitor-control points from the communication modules. As for each communication module, a network address, a waiting time to receive the facility information after sending a query, and a connection with the monitor-control points, are stored. When a service request indicating at least one monitor-control point is received, queries each including the network address of a communication module connected with a monitor-control point indicated by the service request, are generated. A priority of each query is decided based on the waiting time corresponding to the communication module. Each query is added to a first send queue or a second send queue based on the priority. When queries are sent, a timing to send from the first send queue is same as or earlier than a timing to send from the second send queue.
    • 根据一个实施例,调度装置向建筑物中的通信模块发送查询,并且从通信模块接收在监视控制点处测量的设施信息。 对于每个通信模块,存储网络地址,发送查询之后接收设施信息的等待时间以及与监视控制点的连接。 当接收到指示至少一个监视控制点的服务请求时,生成包括由服务请求指示的监视控制点连接的通信模块的网络地址的查询。 基于对应于通信模块的等待时间来确定每个查询的优先级。 基于优先级将每个查询添加到第一个发送队列或第二个发送队列。 当发送查询时,从第一发送队列发送的定时与从第二发送队列发送的定时相同或较早。
    • 3. 发明授权
    • Air conditioning control system
    • 空调控制系统
    • US08498748B2
    • 2013-07-30
    • US13035489
    • 2011-02-25
    • Masahiko MuraiNobutaka NishimuraKoichi IkedaTomonori MaegawaKenichi YamazakiYoshikazu Ooba
    • Masahiko MuraiNobutaka NishimuraKoichi IkedaTomonori MaegawaKenichi YamazakiYoshikazu Ooba
    • G05B13/00
    • G05D23/19F24F11/30F24F11/46F24F11/52F24F11/54F24F11/58F24F11/62
    • According to an embodiment, provided is an air conditioning control system having a remote controller which collectively controls air conditioning facilities respectively provided in multiple buildings through a network. A building monitoring and controlling device is provided in each of the buildings. The building monitoring and controlling device monitors an air conditioning facility in a building where the building monitoring and controlling device itself is installed, and transmits operation data on the air conditioning facility to the remote controller. The remote controller calculates each operation setting value based on each set of operation data, and transmits the calculated operation setting value to the building monitoring and controlling device corresponding to the calculated operation setting value. The building monitoring and controlling device which has received the operation setting value controls the air conditioning facility by transmitting the operation setting value to the air conditioning facility.
    • 根据实施例,提供一种具有遥控器的空调控制系统,其通过网络共同控制分别设置在多个建筑物中的空调设备。 在每个建筑物中都提供建筑监控装置。 建筑物监视和控制装置监视安装有建筑物监视和控制装置本身的建筑物中的空调设备,并将空调设备上的操作数据发送到遥控器。 遥控器基于每组操作数据计算每个操作设置值,并将所计算的操作设置值发送到与所计算的操作设置值相对应的建筑物监控和控制装置。 已经接收到操作设定值的建筑物监视和控制装置通过将操作设定值发送到空调设备来控制空调设备。
    • 4. 发明申请
    • AIR CONDITIONING CONTROL SYSTEM
    • 空调控制系统
    • US20110210178A1
    • 2011-09-01
    • US13035489
    • 2011-02-25
    • Masahiko MuraiNobutaka NishimuraKoichi IkedaTomonori MaegawaKenichi YamazakiYoshikazu Ooba
    • Masahiko MuraiNobutaka NishimuraKoichi IkedaTomonori MaegawaKenichi YamazakiYoshikazu Ooba
    • G05D23/00
    • G05D23/19F24F11/30F24F11/46F24F11/52F24F11/54F24F11/58F24F11/62
    • According to an embodiment, provided is an air conditioning control system having a remote controller which collectively controls air conditioning facilities respectively provided in multiple buildings through a network. A building monitoring and controlling device is provided in each of the buildings. The building monitoring and controlling device monitors an air conditioning facility in a building where the building monitoring and controlling device itself is installed, and transmits operation data on the air conditioning facility to the remote controller. The remote controller calculates each operation setting value based on each set of operation data, and transmits the calculated operation setting value to the building monitoring and controlling device corresponding to the calculated operation setting value. The building monitoring and controlling device which has received the operation setting value controls the air conditioning facility by transmitting the operation setting value to the air conditioning facility.
    • 根据实施例,提供一种具有遥控器的空调控制系统,其通过网络共同控制分别设置在多个建筑物中的空调设备。 在每个建筑物中都提供建筑监控装置。 建筑物监视和控制装置监视安装有建筑物监视和控制装置本身的建筑物中的空调设备,并将空调设备上的操作数据发送到遥控器。 遥控器基于每组操作数据计算每个操作设置值,并将所计算的操作设置值发送到与所计算的操作设置值相对应的建筑物监控和控制装置。 已经接收到操作设定值的建筑物监视和控制装置通过将操作设定值发送到空调设备来控制空调设备。
    • 9. 发明授权
    • Conveyor diagnostic device and conveyor diagnostic system
    • 输送机诊断装置和输送机诊断系统
    • US08589118B2
    • 2013-11-19
    • US12917040
    • 2010-11-01
    • Kimito IdemoriTakahiro ShirotaHiroyuki KobayashiKatsuhiro SumiTomohiko TanimotoNobutaka Nishimura
    • Kimito IdemoriTakahiro ShirotaHiroyuki KobayashiKatsuhiro SumiTomohiko TanimotoNobutaka Nishimura
    • G01C9/00G06F15/00
    • B66B29/005
    • According to one embodiment, a conveyor diagnostic device diagnoses an abnormal state of a cyclically moving conveyor. The conveyor diagnostic device includes a first tilt sensor, a second tilt sensor, a table, and a processing unit. The first and second tilt sensors are attached to a predetermined position of the conveyor and detect tilt angles of the conveyor in a vertical direction and horizontal direction, respectively. The table indicates a relationship between a tilt angle which changes in the vertical direction and sections included in one revolution of the conveyor. The processing unit specifies an abnormality occurrence position of the conveyor based on a tilt angle in the vertical direction, the table, and an elapsed time after ingression for a section corresponding to the tilt angle in the vertical direction, when a tilt angle in the horizontal direction exceeds a predetermined management limit value.
    • 根据一个实施例,输送机诊断装置诊断循环移动的输送机的异常状态。 输送机诊断装置包括第一倾斜传感器,第二倾斜传感器,工作台和处理单元。 第一和第二倾斜传感器附接到输送机的预定位置,分别检测输送机在垂直方向和水平方向上的倾斜角度。 该表表示垂直方向上的倾斜角度和输送机一圈所包括的部分之间的关​​系。 处理单元基于垂直方向上的倾斜角度,台面和对应于垂直方向上的倾斜角度的部分的入口之后的经过时间来指定输送机的异常发生位置,当水平方向上的倾斜角度 方向超过预定的管理限制值。