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    • 3. 发明授权
    • Dynamic contingency avoidance and mitigation system
    • 动态应急避免和减轻系统
    • US09395707B2
    • 2016-07-19
    • US13214057
    • 2011-08-19
    • Roger N. AndersonAlbert BoulangerJohn A. Johnson
    • Roger N. AndersonAlbert BoulangerJohn A. Johnson
    • G06F1/28G06F17/00G05B13/02G06Q10/04G06Q10/06G05B23/02G05B15/02H02J3/00
    • G06Q10/06315G05B13/0265G05B15/02G05B23/0283G06F17/5009G06Q10/04G06Q10/06375G06Q50/06H02J2003/007Y04S10/54
    • The disclosed subject matter provides systems and methods for allocating resources within an infrastructure, such as an electrical grid, in response to changes to inputs and output demands on the infrastructure, such as energy sources and sinks. A disclosed system includes one or more processors, each having respective communication interfaces to receive data from the infrastructure, the data including infrastructure network data, one or more software applications, operatively coupled to and at least partially controlling the one or more processors, to process and characterize the infrastructure network data; and a display, coupled to the one or more processors, for visually presenting a depiction of at least a portion of the infrastructure including any changes in condition thereof, and one or more controllers in communication with the one or more processors, to manage processing of the resource, wherein the resource is obtained and/or distributed based on the characterization of the real time infrastructure data.
    • 所公开的主题提供了用于在诸如电网之类的基础设施(例如电网)内分配资源的系统和方法,以响应对基础设施(例如能量源和汇)的输入和输出需求的改变。 所公开的系统包括一个或多个处理器,每个处理器具有各自的通信接口以从基础设施接收数据,数据包括基础设施网络数据,一个或多个软件应用,可操作地耦合到并且至少部分地控制一个或多个处理器,以处理 并表征基础设施网络数据; 以及耦合到所述一个或多个处理器的显示器,用于可视地呈现所述基础设施的至少一部分的描绘,包括其条件的任何改变,以及与所述一个或多个处理器通信的一个或多个控制器,以管理 资源,其中基于实时基础设施数据的表征来获得和/或分发资源。
    • 4. 发明申请
    • Dynamic Contingency Avoidance and Mitigation System
    • 动态应急避免和减轻系统
    • US20120072039A1
    • 2012-03-22
    • US13214057
    • 2011-08-19
    • Roger N. AndersonAlbert BoulangerJohn A. Johnson
    • Roger N. AndersonAlbert BoulangerJohn A. Johnson
    • G06F1/28G06F17/00
    • G06Q10/06315G05B13/0265G05B15/02G05B23/0283G06F17/5009G06Q10/04G06Q10/06375G06Q50/06H02J2003/007Y04S10/54
    • The disclosed subject matter provides systems and methods for allocating resources within an infrastructure, such as an electrical grid, in response to changes to inputs and output demands on the infrastructure, such as energy sources and sinks. A disclosed system includes one or more processors, each having respective communication interfaces to receive data from the infrastructure, the data comprising infrastructure network data, one or more software applications, operatively coupled to and at least partially controlling the one or more processors, to process and characterize the infrastructure network data; and a display, coupled to said one or more processors, for visually presenting a depiction of at least a portion of the infrastructure including any changes in condition thereof, and one or more controllers in communication with the one or more processors, to manage processing of the resource, wherein the resource is obtained and/or distributed based on the characterization of said real time infrastructure data.
    • 所公开的主题提供了用于在诸如电网之类的基础设施(例如电网)内分配资源的系统和方法,以响应对基础设施(例如能量源和汇)的输入和输出需求的改变。 所公开的系统包括一个或多个处理器,每个处理器具有各自的通信接口以从基础设施接收数据,该数据包括基础设施网络数据,一个或多个软件应用,可操作地耦合到且至少部分地控制一个或多个处理器,以处理 并表征基础设施网络数据; 以及耦合到所述一个或多个处理器的显示器,用于可视地呈现基础设施的至少一部分的描绘,包括其条件的任何改变,以及与所述一个或多个处理器通信的一个或多个控制器,以管理 所述资源,其中基于所述实时基础设施数据的表征来获得和/或分发所述资源。
    • 5. 发明授权
    • Learning-based controller for biotechnology processing, and method of using
    • 基于学习的生物技术处理控制器及其使用方法
    • US06792336B1
    • 2004-09-14
    • US09647134
    • 2000-09-26
    • John A. JohnsonDaphne L. StonerEric D. LarsenKaren S. MillerCharles R. Tolle
    • John A. JohnsonDaphne L. StonerEric D. LarsenKaren S. MillerCharles R. Tolle
    • G05B2100
    • G05B13/0275C22B3/18Y02P10/234
    • The present invention relates to process control where some of the controllable parameters are difficult or impossible to characterize. The present invention relates to process control in biotechnology of such systems, but not limited to. Additionally, the present invention relates to process control in biotechnology minerals processing. In the inventive method, an application of the present invention manipulates a minerals bioprocess to find local exterma (maxima or minima) for selected output variables/process goals by using a learning-based controller for bioprocess oxidation of minerals during hydrometallurgical processing. The learning-based controller operates with or without human supervision and works to find processor optima without previously defined optima due to the non-characterized nature of the process being manipulated.
    • 本发明涉及其中一些可控参数难于或不可能表征的过程控制。 本发明涉及这种系统的生物技术中的过程控制,但不限于此。 另外,本发明涉及生物技术矿物加工中的过程控制。 在本发明的方法中,本发明的应用通过在湿法冶金加工过程中使用基于学习的控制器进行矿物的生物过程氧化来操纵矿物质生物过程以找到所选择的输出变量/过程目标的局部外部(最大值或最小值)。 基于学习的控制器操作有或没有人工监督,并且由于所处理的过程的未被描述的特性而在没有先前定义的最佳状态下找到处理器最优。
    • 6. 发明授权
    • Automated barrel panel transfer and processing system
    • 自动桶面转印加工系统
    • US06457932B1
    • 2002-10-01
    • US09376765
    • 1999-08-17
    • John A. JohnsonRichard K. HansenBrent K. Christner
    • John A. JohnsonRichard K. HansenBrent K. Christner
    • B25J502
    • G01N23/04B24B7/005B24B7/06B24D13/04G01N23/046G01N2223/419
    • An automated system for preparing weld land areas of panels to be welded to each other is disclosed. Generally, the system of the present invention includes a system for cleaning contaminants from such weld land areas. In one embodiment, the system for cleaning contaminants includes a system for blasting carbon dioxide granules or pellets against the weld land areas. In instances where the panels comprise aluminum, the system may further include a system for removing at least a first layer of aluminum oxide from the weld land areas. In one embodiment, the system for removing includes a system for moving a plurality of sheets of sand paper over the weld land areas. For purposes of moving the panels relative to the system for cleaning contaminants and/or the system for removing at least the first layer of aluminum oxide, the automated system of the present invention may further include a shuttle system for supporting and moving at least the first panel therethrough.
    • 公开了一种用于准备彼此焊接的面板的焊接区域的自动化系统。 通常,本发明的系统包括用于清洁这些焊接区域的污染物的系统。 在一个实施例中,用于清洁污染物的系统包括用于将二氧化碳颗粒或颗粒喷射到焊接区域的系统。 在面板包括铝的情况下,该系统还可以包括用于从焊接区域去除至少第一层氧化铝的系统。 在一个实施例中,用于移除的系统包括用于在焊接区域上移动多张砂纸的系统。 为了相对于用于清洁污染物的系统移动面板和/或用于去除至少第一层氧化铝的系统的目的,本发明的自动化系统还可以包括穿梭系统,用于支撑并移动至少第一层 面板。
    • 10. 发明授权
    • Systems and methods for operating electrical supply
    • 操作电源的系统和方法
    • US08521337B1
    • 2013-08-27
    • US13187335
    • 2011-07-20
    • John A. Johnson
    • John A. Johnson
    • G05D11/00
    • H02J3/008G06Q50/06Y04S50/10
    • One embodiment of the instant invention is a computer-implemented method that includes steps of: receiving load data for a load, where the load is associated with a smart node that controls a flow of electricity, where the load data includes a service type indication; where the service type indication identifies whether the load receive in a non-firm electricity service, a firm electricity service, or both, where the non-firm electricity service is based on a non-firm service supply arrangement associated with the load and a supplier of electricity, where the non-firm service supply arrangement defines electricity usage based on a reliability level of the electrical supply provided by the supplier of electricity without a guaranteed level of uninterrupted electricity supply, and where the reliability level of the electrical supply is based on an ability to instruct to reduce or shut off the electricity supply.
    • 本发明的一个实施例是一种计算机实现的方法,其包括以下步骤:接收负载的负载数据,其中所述负载与控制电流的智能节点相关联,其中所述负载数据包括服务类型指示; 其中服务类型指示识别在非固定电力服务,固定电力服务或两者中的负载是否接收非公司电力服务是基于与负载相关联的非公司服务供应安排和供应商 的电力,其中非公司服务供应安排基于由供电商提供的电力的可靠性水平而定义电力使用,而没有保证的不间断电力供应水平,并且电力供应的可靠性水平基于 指示减少或关闭电力供应的能力。