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    • 2. 发明授权
    • Fuel economizer algorithm for hydronic and steam heating systems
    • 用于液压和蒸汽加热系统的燃料节约器算法
    • US08849464B2
    • 2014-09-30
    • US12975560
    • 2010-12-22
    • Christopher FildesTimothy Beight
    • Christopher FildesTimothy Beight
    • G01M1/38F23N1/08F24D19/10G05D23/19
    • F23N1/082F23N2023/48F23N2025/19F24D19/1003F24D19/1006G05D23/1904G05D23/1919
    • An economizer component of a controller used for fuel efficient temperature regulation of a medium circulated through a zone within a hydronic and steam heating system is disclosed. The controller component includes an input interface adapted to determine if the system requires heat based on receiving one or more of a call for heat from the zone, or an indication that a burner of the system is active. The component further includes a dynamic adaptation module configured to provide a burner control signal for heating the system if required. The control signal has an adjustable high limit, and the dynamic adaptation module is configured to increment the adjustable high limit by an increment value, to a value no greater than a maximum high limit, if it is determined that the system requires heat, and decrement the adjustable high limit by a decrement value, to a value no lower than a minimum high limit, if it is determined that the system does not require heat. The component is configured to dynamically adapt to changing heating system requirements received by the input interface. The component is adjusted by the dynamic adaptation module, to control the burner by way of the burner control signal to efficiently regulate the temperature of the medium circulated through the zone within the heating system.
    • 公开了一种控制器的节能器部件,其用于通过液压和蒸汽加热系统中的区域循环的介质的燃料有效温度调节。 控制器部件包括适于基于接收来自该区域的热量呼叫中的一个或多个来确定系统是否需要热量的输入接口,或者指示系统的燃烧器是活动的。 该组件还包括动态适配模块,其被配置为提供燃烧器控制信号,用于在需要时加热系统。 控制信号具有可调节的上限,并且动态适配模块被配置为如果确定系统需要热量并且减小,则将可调高限增加一个增量值到不大于最大上限的值 如果确定系统不需要加热,则通过减量值将可调节的上限设置为不低于最小上限的值。 该组件配置为动态适应输入接口接收到的不断变化的供暖系统要求。 通过动态适应模块调整组件,通过燃烧器控制信号控制燃烧器,以有效地调节在加热系统内通过区域循环的介质的温度。
    • 3. 发明申请
    • Fuel Economizer Algorithm for Hydronic and Steam Heating Systems
    • 用于水力和蒸汽加热系统的燃料节能器算法
    • US20120165992A1
    • 2012-06-28
    • US12975560
    • 2010-12-22
    • Christopher FildesTimothy Beight
    • Christopher FildesTimothy Beight
    • G05D23/00F23N5/00F24D19/10
    • F23N1/082F23N2023/48F23N2025/19F24D19/1003F24D19/1006G05D23/1904G05D23/1919
    • An economizer component of a controller used for fuel efficient temperature regulation of a medium circulated through a zone within a hydronic and steam heating system is disclosed. The controller component includes an input interface adapted to determine if the system requires heat based on receiving one or more of a call for heat from the zone, or an indication that a burner of the system is active. The component further includes a dynamic adaptation module configured to provide a burner control signal for heating the system if required. The control signal has an adjustable high limit, and the dynamic adaptation module is configured to increment the adjustable high limit by an increment value, to a value no greater than a maximum high limit, if it is determined that the system requires heat, and decrement the adjustable high limit by a decrement value, to a value no lower than a minimum high limit, if it is determined that the system does not require heat. The component is configured to dynamically adapt to changing heating system requirements received by the input interface. The component is adjusted by the dynamic adaptation module, to control the burner by way of the burner control signal to efficiently regulate the temperature of the medium circulated through the zone within the heating system.
    • 公开了一种控制器的节能器部件,其用于通过液压和蒸汽加热系统中的区域循环的介质的燃料有效温度调节。 控制器部件包括适于基于接收来自该区域的热量呼叫中的一个或多个来确定系统是否需要热量的输入接口,或者指示系统的燃烧器是活动的。 该组件还包括动态适配模块,其被配置为提供燃烧器控制信号,用于在需要时加热系统。 控制信号具有可调节的上限,并且动态适配模块被配置为如果确定系统需要热量并且减小,则将可调高限增加一个增量值到不大于最大上限的值 如果确定系统不需要加热,则通过减量值将可调节的上限设置为不低于最小上限的值。 该组件配置为动态适应输入接口接收到的不断变化的供暖系统要求。 通过动态适应模块调整组件,通过燃烧器控制信号控制燃烧器,以有效地调节在加热系统内通过区域循环的介质的温度。
    • 4. 发明授权
    • Plant controlling device and method, thermal power plant, and its control method
    • 工厂控制装置及方法,火电厂及其控制方法
    • US08185216B2
    • 2012-05-22
    • US12279348
    • 2006-12-27
    • Takaaki SekiaiSatoru ShimizuAkihiro Yamada
    • Takaaki SekiaiSatoru ShimizuAkihiro Yamada
    • G05B13/02
    • G05B13/048F01K13/02F22B35/007F23N5/00F23N2023/48G05B13/0265
    • A controlling device that includes a model that predicts the value of a measured signal obtained when an operation signal is given to a thermal power generation plant, a function that learns a method of generating a model input such that a model output satisfies the plant value, a function that determines an operation signal to be given to the plant according to the learning result, a database that stores measured signal limit values set in advance, an external input interface that fetches measured signals from the plant, a measured signal database that stores the values of the fetched measured signals, and a function that determines an initial value of the plant model output value by using limit values of the measured signals and at least one of an average value, a maximum value, and a minimum value that are calculated from the measured signals stored in a measured signal database.
    • 一种控制装置,其包括将操作信号赋予火力发电厂时获得的测量信号的值预测的模型,学习生成模型输入的方法,使得模型输出满足工厂值的功能, 确定根据学习结果给予工厂的操作信号的功能,存储预先设定的测量信号限制值的数据库,从工厂取出测量信号的外部输入接口,存储测量信号数据库 获取的测量信号的值,以及通过使用测量信号的限制值和从下式计算的平均值,最大值和最小值中的至少一个来确定植物模型输出值的初始值的函数: 测量信号存储在测量信号数据库中。