会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Processor-controlled gas appliances and microprocessor-actuated valves
for use therein
    • 处理器控制的燃气器具和用于其中的微处理器致动阀
    • US4930488A
    • 1990-06-05
    • US233523
    • 1988-08-18
    • A. Noel J. PearmanGerald D. HunterMichael A. Woessner
    • A. Noel J. PearmanGerald D. HunterMichael A. Woessner
    • F23N5/00F24C3/12
    • F24C3/12F23N2023/08F23N2035/14F23N2035/16F23N2041/08F23N5/003Y10T137/86389
    • A microprocessor-controlled gas appliance basically comprising three components: (1) a computer processor with a sensor interface, (2) a valve assembly, and (3) a human interface. The sensor interface is capable of passing the input from a series of sensors through the processor for subsequent use in controlling the operation of a burner valve in the valve assembly. Appropriate sensors are provided for connection to the sensor interface to measure, among other things, flame temperature, gas flow, carbon monoxide, combustibles, occupancy by an individual in the presence of the gas appliance, and gas composition. The valve controls the flow of natural gas through a line from a source of gas to a burner found in the appliance. The valve is controlled through a valve operator that responds to signals obtained from the computer processor via valve interface electronics. The valve, valve operator and valve interface electronics together form the valve assembly which the second basic component of the microprocessor-based system. The third component of the system provides a way for the human user to interact with the gas appliance control system. In this regard, there is provided a visual display and a keypad input device.
    • 微处理器控制的燃气器具基本上包括三个部件:(1)具有传感器接口的计算机处理器,(2)阀组件和(3)人机界面。 传感器接口能够将来自一系列传感器的输入通过处理器,用于随后用于控制阀组件中的燃烧器阀的操作。 提供适当的传感器用于连接到传感器接口,以测量火焰温度,气体流量,一氧化碳,可燃物,个体在燃气器具存在下的占有率和气体成分。 阀控制天然气通过从燃气源到设备中的燃烧器的管线的流动。 阀门通过阀门操作器进行控制,该阀门操作器通过阀门接口电子器件响应从计算机处理器获得的信号。 阀门,阀门操作器和阀门接口电子器件一起构成了基于微处理器的系统的第二个基本部件的阀门组件。 该系统的第三个组件为人类用户与燃气器具控制系统交互提供了一种方式。 在这方面,提供了可视显示器和键盘输入设备。
    • 4. 发明授权
    • Adaptive fuzzy controller that modifies membership functions
    • 自适应模糊控制器修改隶属函数
    • US5822740A
    • 1998-10-13
    • US671997
    • 1996-06-28
    • Christine M. HaissigMichael A. WoessnerDimitris K. Pirovolou
    • Christine M. HaissigMichael A. WoessnerDimitris K. Pirovolou
    • G06F9/44F24D19/10G05B13/02G06N7/02G06G7/00
    • F24D19/1066F24D19/1084G05B13/0275Y10S706/90Y10S706/903
    • A direct adaptive fuzzy controller having an adaptation mechanism that modifies the locations of output membership functions to improve performance of the fuzzy controller. The controller has a fuzzy rule base that has a different or unique output membership function for each fuzzy rule. The adaptation mechanism modifies the location of the output membership functions in response to the performance of the controller system, to continuously improve its performance. The controller is a feedback mechanism that functions not only using measured outputs of the process controlled, but has feedforward compensation that causes the controller to anticipate feedback due to measured disturbances or other parameters of the process. The adaptive fuzzy controller can be used for various processes, including combi-boiler domestic hot water temperature control, automobile cruise control, a residential thermostat, duct air temperature or static pressure control for the air handling unit in a heating ventilation and air conditioning system, and furnace temperature control for curing parts.
    • 一种直接自适应模糊控制器,其具有修改输出隶属函数的位置以改善模糊控制器的性能的适应机制。 控制器具有模糊规则库,每个模糊规则具有不同或唯一的输出隶属函数。 适应机制响应于控制器系统的性能来修改输出隶属函数的位置,以不断提高其性能。 控制器是一种反馈机制,不仅可以使用被控制过程的测量输出,而且具有前馈补偿功能,使得控制器可以预测由于测量的干扰或过程的其他参数所引起的反馈。 自适应模糊控制器可用于各种过程,包括组合锅炉家用热水温度控制,汽车巡航控制,住宅恒温器,通风和空调系统中空气处理单元的管道空气温度或静压控制, 和炉温控制固化部件。