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    • 2. 发明授权
    • Communications architecture for intelligent electronic devices
    • 智能电子设备通信架构
    • US06751562B1
    • 2004-06-15
    • US09814436
    • 2001-03-22
    • Andrew W. BlackettBryan J. GilbertJohn C. Van GorpMichael E. TeachmanJeffrey W. Yeo
    • Andrew W. BlackettBryan J. GilbertJohn C. Van GorpMichael E. TeachmanJeffrey W. Yeo
    • G06F1900
    • G05B19/4185G01R19/2513G05B2219/32142H02J3/008Y02P90/18Y04S50/10
    • A power management architecture for an electrical power distribution system, or portion thereof, is disclosed. The architecture includes multiple intelligent electronic devices (“IED's”) distributed throughout the power distribution system to manage the flow and consumption of power from the system. The IED's are linked via a network to back-end servers. Power management application software and/or hardware components operate on the IED's and the back-end servers and inter-operate via the network to implement a power management application. The communications between the IED's and the back-end servers are facilitated through network security devices such as firewalls. The architecture provides a scalable and cost effective framework of hardware and software upon which such power management applications can operate to manage the distribution and consumption of electrical power by one or more utilities/suppliers and/or customers which provide and utilize the power distribution system.
    • 公开了用于配电系统或其一部分的电力管理架构。 该架构包括分布在整个配电系统中的多个智能电子设备(“IED”),以管理来自系统的电力的流量和消耗。 IED通过网络链接到后端服务器。 电源管理应用软件和/或硬件组件在IED和后端服务器上运行,并通过网络进行互操作以实现电源管理应用。 IED和后端服务器之间的通信通过网络安全设备(如防火墙)来实现。 该架构提供了一种可扩展且具有成本效益的硬件和软件框架,通过该框架,这些电源管理应用可以由一个或多个提供和利用配电系统的公用设施/供应商和/或客户来管理电力的分配和消耗。
    • 5. 发明申请
    • PREDICTION OF AVAILABLE GENERATOR RUNNING TIME
    • 可用发电机运行时间的预测
    • US20150324696A1
    • 2015-11-12
    • US14409697
    • 2012-06-29
    • Markus F. HirschboldJohn C. Van Gorp
    • Markus F. HirschboldJohn C. Van Gorp
    • G06N5/04H02J3/12
    • G06N5/04G06N99/005H02J3/12H02J3/14H02J9/08H02J2003/003Y02B70/3225Y04S10/54Y04S20/222Y04S20/224
    • At least one aspect of the invention is directed to a power monitoring system including a generator coupled to a fuel tank, a plurality of monitors, and a processor configured to monitor one or more loads drawing power from the generator; monitor one or more parameters that affect the amount of power drawn by the one or more loads; monitor a fuel consumption rate of the generator; generate one or more load profiles for each of the one or more loads; receive a set of the one or more loads for which a predicted time is to be generated; receive values for the one or more parameters; generate a predicted load profile for the set of the one or more loads and the values of the one or more parameters; receive information indicating an amount of remaining fuel; and calculate a predicted available run time.
    • 本发明的至少一个方面涉及一种功率监测系统,其包括耦合到燃料箱的发电机,多个监视器和被配置为监测从发电机牵引电力的一个或多个负载的处理器; 监视影响由一个或多个负载牵引的功率量的一个或多个参数; 监测发电机的燃油消耗率; 为一个或多个负载中的每一个生成一个或多个负载曲线; 接收要生成预测时间的一个或多个负载的集合; 接收一个或多个参数的值; 生成所述一个或多个负载的集合以及所述一个或多个参数的值的预测负载曲线; 接收指示剩余燃料量的信息; 并计算预测的可用运行时间。
    • 9. 发明授权
    • Power monitoring system with proxy server for processing and transforming messages and context-specific caching
    • 具有代理服务器的电力监控系统,用于处理和转换消息和上下文特定的缓存
    • US08892721B2
    • 2014-11-18
    • US12650640
    • 2009-12-31
    • David AndersonJohn C. Van Gorp
    • David AndersonJohn C. Van Gorp
    • G06F15/173G01R21/00G06F11/00H04L29/08H04L12/26H04L12/24
    • H04L43/0817H04L41/0213H04L67/125H04L67/2857Y04S40/168
    • An electrical power monitoring system includes a proxy server between (1) monitoring devices coupled to an electrical power distribution system for sensing and storing data representing operating characteristics of the power distribution system, and (2) at least one client device coupled to the monitoring devices for requesting data from the monitoring device and processing, storing and presenting data received from the monitoring devices. A communications network is coupled to the monitoring and client devices, and proxy server is coupled to the communications network for processing and transforming messages and context-specific caching. The proxy server receives messages from the client device as a virtual device, processes the messages, and alters the messages before communicating the messages to the monitoring devices to which the messages are directed, or defers communication of at least portions of the messages to the actual monitoring devices to which the requests are directed until a later time.
    • 电力监控系统包括代理服务器,所述代理服务器包括:(1)耦合到电力分配系统的监控设备,用于感测和存储表示所述配电系统的操作特性的数据;以及(2)至少一个客户端设备,其耦合到所述监控设备 用于从监视设备请求数据并处理,存储和呈现从监视设备接收的数据。 通信网络耦合到监控和客户端设备,代理服务器耦合到通信网络,用于处理和转换消息和上下文特定的缓存。 代理服务器从客户端设备接收消息作为虚拟设备,处理消息,并在将消息传达到消息所针对的监视设备之前改变消息,或者将消息的至少部分的通信延迟到实际 监视请求所针对的设备,直到稍后的时间。
    • 10. 发明申请
    • Systems, methods, and devices for analyzing utility usage with load duration curves
    • 用于分析实用程序使用量与负载持续时间曲线的系统,方法和设备
    • US20120072140A1
    • 2012-03-22
    • US12886715
    • 2010-09-21
    • Peter CowanJohn C. Van GorpDaniel J. Wall
    • Peter CowanJohn C. Van GorpDaniel J. Wall
    • G01R21/06G06F19/00
    • G06Q50/06
    • Systems, methods, and devices for regulating usage of at least one utility by a utility consuming system. One aspect of the present disclosure is directed to a method for regulating usage of at least one utility by a utility consuming system having a plurality of utility consuming segments. The method includes: generating a load duration curve (LDC); selecting a portion of the LDC to be analyzed; generating an associated duration chart (ADC) that is indicative of one or more associated duration parameters relating to the selected portion of the LDC; and modifying usage of the utility by at least one of the utility consuming segments based, at least in part, upon the one or more associated duration parameters indicated in the first ADC.
    • 用于由公用事业消费系统调节至少一个公用事业的使用的系统,方法和设备。 本公开的一个方面涉及一种用于通过具有多个效用消耗段的公用事业消费系统来调节至少一个公用事业的使用的方法。 该方法包括:生成负载持续时间曲线(LDC); 选择要分析的最不发达国家的一部分; 产生指示与所述LDC的所选部分相关的一个或多个相关联的持续时间参数的关联持续时间表(ADC); 以及至少部分地基于在所述第一ADC中指示的所述一个或多个相关联的持续时间参数,由所述效用消费段中的至少一个来修改所述公用程序的使用。