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    • 2. 发明申请
    • SYSTEMS AND METHODS FOR ALARM FILTERING AND MANAGEMENT WITHIN A REAL-TIME DATA ACQUISITION AND MONITORING ENVIRONMENT
    • 在实时数据采集和监控环境中进行报警过滤和管理的系统和方法
    • US20100168931A1
    • 2010-07-01
    • US12690062
    • 2010-01-19
    • Adib Nasle
    • Adib Nasle
    • G06F1/28
    • G05B17/02G05B23/0272G06F17/5009G06F2217/04G06F2217/78
    • A system for filtering and interpreting real-time sensory data from an electrical system is disclosed. The system includes a data acquisition component, a power analytics server and a client terminal. The data acquisition component acquires real-time data output from the electrical system. The power analytics server is comprised of a virtual system modeling engine, an analytics engine, and a decision engine.The virtual system modeling engine generates predicted data output for the electrical system. The analytics engine monitors real-time data output and predicted data output of the electrical system. The decision engine compares the real-time data output against the predicted data output to filter out and interpret indicia of electrical system health and performance.The client terminal is communicatively connected to the power analytics server and configured to display the filtered and interpreted indicia.
    • 公开了一种用于过滤和解释来自电气系统的实时感觉数据的系统。 该系统包括数据采集组件,功率分析服务器和客户终端。 数据采集​​组件获取从电气系统输出的实时数据。 功率分析服务器由虚拟系统建模引擎,分析引擎和决策引擎组成。 虚拟系统建模引擎为电气系统生成预测数据输出。 分析引擎监控电气系统的实时数据输出和预测数据输出。 决策引擎将实时数据输出与预测数据输出进行比较,以过滤出并解释电气系统健康和性能的指标。 客户终端通信地连接到电力分析服务器并且被配置为显示经过滤和解释的标记。
    • 3. 发明申请
    • METHOD FOR PREDICTING SYMMETRIC, AUTOMATED, REAL-TIME ARC FLASH ENERGY WITHIN A REAL-TIME MONITORING SYSTEM
    • 在实时监控系统中预测自动化,实时弧闪能量的方法
    • US20100023309A1
    • 2010-01-28
    • US12506216
    • 2009-07-20
    • Branislav RadibratovicKevin Meagher
    • Branislav RadibratovicKevin Meagher
    • G06G7/63G06G7/62
    • G06N5/04G05B17/02G06F17/5009
    • A system for making real-time predictions about an arc flash event on an electrical system comprises a data acquisition component communicatively connected to a sensor configured to acquire real-time data output from the electrical system; an analytics server communicatively connected to the data acquisition component and comprising a virtual system modeling engine configured to generate predicted data output for the electrical system using a virtual system model of the electrical system, an analytics engine configured to monitor the real-time data output and the predicted data output of the electrical system, and an arc flash simulation engine configured to use the virtual system model updated based in the real-time data to forecast an aspect of the arc flash event.
    • 用于对电气系统上的电弧闪光事件进行实时预测的系统包括通信地连接到传感器的数据采集组件,该传感器被配置为获取从电气系统输出的实时数据; 分析服务器,其通信地连接到所述数据获取组件,并且包括被配置为使用所述电气系统的虚拟系统模型生成所述电气系统的预测数据输出的虚拟系统建模引擎,被配置为监视所述实时数据输出的分析引擎和 电气系统的预测数据输出以及被配置为使用基于实时数据更新的虚拟系统模型的电弧闪光模拟引擎来预测电弧闪光事件的一个方面。
    • 4. 发明申请
    • SYSTEMS AND METHODS FOR INTUITIVE MODELING OF COMPLEX NETWORKS IN A DIGITAL ENVIRONMENT
    • 用于数字环境中复杂网络的直观建模的系统和方法
    • US20090083019A1
    • 2009-03-26
    • US12237948
    • 2008-09-25
    • Adib Nasle
    • Adib Nasle
    • G06G7/48G06F3/00G06F17/00
    • G06F17/509G06F2217/04G06F2217/78
    • A system for modeling a topology of an electrical power system is disclosed. The system can include a processor, a memory, a display device, and an input device. The memory device can be coupled to the processor and configured to maintain a component database, a component control engine, and a power system topology modeling engine. The display device can be coupled to the processor and configured for displaying the topology of the electrical power system. The input device can be coupled to the processor and can be operative to select one of the plurality of power system components stored in the component database as a selected component, position the selected component within a framework, and interface the selected component with other selected components within the framework. The processor can be operative to execute instructions within the component control engine to control the position of the selected components within the framework and execute instructions within the power system topology modeling engine to render the topology of the electrical system after the selected components have been positioned.
    • 公开了一种用于对电力系统的拓扑进行建模的系统。 该系统可以包括处理器,存储器,显示设备和输入设备。 存储器设备可以耦合到处理器并且被配置为维护组件数据库,组件控制引擎和电力系统拓扑建模引擎。 显示设备可以耦合到处理器并且被配置为显示电力系统的拓扑。 输入设备可以耦合到处理器,并且可以操作以选择存储在组件数据库中的多个电力系统组件中的一个作为所选择的组件,将所选择的组件定位在框架内,并且将所选择的组件与其他所选组件 在框架内。 处理器可以操作以执行部件控制引擎内的指令,以控制框架内的所选部件的位置,并执行电力系统拓扑建模引擎内的指令,以在所选择的部件定位之后呈现电气系统的拓扑。
    • 5. 发明申请
    • ELECTRICAL POWER SYSTEM MODELING, DESIGN, ANALYSIS, AND REPORTING VIA A CLIENT-SERVER APPLICATION FRAMEWORK
    • 电力系统建模,设计,分析和报告通过客户端服务器应用框架
    • US20090076749A1
    • 2009-03-19
    • US12247886
    • 2008-10-08
    • Adib Nasle
    • Adib Nasle
    • G01R21/00G06F17/50G06F9/44
    • G05B17/02
    • A system for an intelligent web-based monitoring and management of an electrical system is disclosed. The system comprises a data acquisition component communicatively connected to a sensor configured to acquire real-time data output from the electrical system; a web application server communicatively connected to the data acquisition component, the web application server configured to transmit a user interface to a client terminal, the web application server comprising: a virtual system model database communicatively connected to the data acquisition component, the virtual system model database configured to store a virtual system model of the electrical system, a power analytic simulation engine comprising a virtual system modeling engine communicatively connected to the virtual system model database, the virtual system modeling engine configured to generate a predicted data output for the electrical system utilizing the virtual system model of the electrical system, and an analytics engine communicatively connected to the virtual system model database, the analytics engine configured to monitor the real-time data output and the predicted data output of the electrical system, and to initiate a calibration and synchronization operation to update the virtual system model when a difference between the real-time data output and the predicted data output exceeds a threshold, and a client terminal communicatively connected to the web application server, the client terminal configured to display the user interface.
    • 公开了一种用于智能基于网络的监视和管理电气系统的系统。 该系统包括通信地连接到被配置为获取从电气系统输出的实时数据的传感器的数据采集组件; 通信地连接到所述数据获取组件的web应用服务器,所述web应用服务器被配置为向客户端发送用户界面,所述web应用服务器包括:通信地连接到所述数据获取组件的虚拟系统模型数据库,所述虚拟系统模型 数据库,被配置为存储电气系统的虚拟系统模型;功率分析模拟引擎,包括通信地连接到所述虚拟系统模型数据库的虚拟系统建模引擎,所述虚拟系统建模引擎被配置为生成用于所述电气系统的预测数据输出 电气系统的虚拟系统模型以及通信地连接到虚拟系统模型数据库的分析引擎,分析引擎被配置为监视电气系统的实时数据输出和预测数据输出,并且启动校准和 同步操作向上 在所述实时数据输出与所述预测数据输出之间的差异超过阈值的情况下计算所述虚拟系统模型;以及客户终端,通信地连接到所述Web应用服务器,所述客户终端被配置为显示所述用户界面。
    • 6. 发明授权
    • Automatic real-time optimization and intelligent control of electrical power distribution and transmission systems
    • 电力配电和传输系统的自动实时优化和智能控制
    • US08126685B2
    • 2012-02-28
    • US11770190
    • 2007-06-28
    • Adib Nasle
    • Adib Nasle
    • G05B11/01G05D3/12G01R21/00G06F7/60G06G7/58G06G7/54
    • G05B17/02
    • A system for real-time optimization of power resources on an electrical system is disclosed. The system includes a data acquisition component, an analytics server, a control element and a client terminal. The data acquisition component is communicatively connected to a sensor configured to acquire real-time data output from the electrical system. The analytics server is communicatively connected to the data acquisition component and is comprised of a virtual system modeling engine, an analytics engine and a power flow optimization engine. The virtual system modeling engine is configured to generate predicted data output for the electrical system utilizing a virtual system model of the electrical system. The control element is interfaced with an electrical system component and communicatively connected to the analytics server. The client terminal is communicatively connected to the analytics server.
    • 公开了一种用于电力系统上的电力资源的实时优化的系统。 该系统包括数据采集组件,分析服务器,控制元件和客户终端。 数据采集​​部件通信地连接到被配置为获取从电气系统输出的实时数据的传感器。 分析服务器通信地连接到数据采集组件,并且包括虚拟系统建模引擎,分析引擎和功率流优化引擎。 虚拟系统建模引擎被配置为利用电气系统的虚拟系统模型生成用于电气系统的预测数据输出。 控制元件与电气系统组件连接并且通信地连接到分析服务器。 客户终端通信地连接到分析服务器。
    • 7. 发明授权
    • Systems and methods for real-time dynamic simulation of uninterruptible power supply solutions and their control logic systems
    • 用于不间断电源解决方案及其控制逻辑系统的实时动态仿真的系统和方法
    • US07844440B2
    • 2010-11-30
    • US11775146
    • 2007-07-09
    • Adib NasleAli NasleAli Moshref
    • Adib NasleAli NasleAli Moshref
    • G06F7/60G06F17/10G06F17/50G06G7/54
    • G06F17/5009G06F2217/78
    • A system for real-time modeling of uninterruptible power supply (UPS) control elements protecting an electrical system is disclosed. The system includes a data acquisition component, a power analytics server and a client terminal. The data acquisition component acquires real-time data output from the electrical system. The power analytics server is comprised of a virtual system modeling engine, an analytics engine and a UPS transient stability simulation engine. The virtual system modeling engine generates predicted data output for the electrical system. The analytics engine monitors real-time data output and predicted data output of the electrical system. The UPS transient stability simulation engine stores and processes patterns observed from the real-time data output and utilizes a user-defined UPS control logic model to forecast an aspect of the interaction between UPS control elements and the electrical system subjected to a simulated contingency event.
    • 公开了一种用于实时建模用于保护电气系统的不间断电源(UPS)控制元件的系统。 该系统包括数据采集组件,功率分析服务器和客户终端。 数据采集​​组件获取从电气系统输出的实时数据。 功率分析服务器由虚拟系统建模引擎,分析引擎和UPS瞬态稳定性仿真引擎组成。 虚拟系统建模引擎为电气系统生成预测数据输出。 分析引擎监控电气系统的实时数据输出和预测数据输出。 UPS瞬态稳定性仿真引擎存储和处理从实时数据输出观察到的模式,并利用用户定义的UPS控制逻辑模型来预测UPS控制元件与经受模拟应急事件的电气系统之间的相互作用的一个方面。
    • 9. 发明申请
    • REAL-TIME SYSTEM FOR VERIFICATION AND MONITORING OF PROTECTIVE DEVICE SETTINGS WITHIN AN ELECTRICAL POWER DISTRIBUTION NETWORK AND AUTOMATIC CORRECTION OF DEVIANCES FOUND
    • 用于电力分配网络中的保护设备设置的验证和监控的实时系统和发现的DEVIANCES的自动校正
    • US20090149972A1
    • 2009-06-11
    • US12334153
    • 2008-12-12
    • Adib Nasle
    • Adib Nasle
    • G05B9/02G06F1/28G06G7/66
    • G06F17/5009G05B17/02G05B23/0245G06F2217/04G06F2217/78H02H1/0092H02H6/00Y02E60/76Y04S40/22
    • A system for real-time verification of protective device system configuration settings on a monitored system, is disclosed. The system includes a data acquisition component, a virtual system model database, a protective device system verification engine. The data acquisition component is communicatively connected to a sensor configured to real-time protective device configuration data output from a protective device that is part of the monitored system. The virtual system model database is configured to update a virtual mode of the system based on the status of the protective devices and to store a virtual system model of the monitored system, including preset protective device configuration settings for the protective device. The protective device system verification engine configured to monitor the real-time protective device configuration data and the preset protective device configuration settings and generate a warning when there is a difference between the real-time protective device configuration data and the preset protective device configuration settings.
    • 公开了一种用于实时验证受监视系统上的保护设备系统配置设置的系统。 该系统包括数据采集组件,虚拟系统模型数据库,保护装置系统验证引擎。 数据采集​​部件通信地连接到传感器,该传感器被配置为实时保护设备配置数据,该保护设备配置数据是作为受监视系统一部分的保护设备输出的。 虚拟系统模型数据库被配置为基于保护设备的状态来更新系统的虚拟模式并存储被监视系统的虚拟系统模型,包括用于保护设备的预设保护设备配置设置。 保护装置系统验证引擎被配置为监视实时保护装置配置数据和预设的保护装置配置设置,并且当实时保护装置配置数据与预设保护装置配置设置之间存在差异时产生警告。
    • 10. 发明申请
    • SYSTEMS AND METHODS FOR AUTOMATICALLY CONVERTING CAD DRAWING FILES INTO INTELLIGENT OBJECTS WITH DATABASE CONNECTIVITY FOR THE DESIGN, ANALYSIS, AND SIMULATION OF ELECTRICAL POWER SYSTEMS
    • 将CAD图形文件自动转换为具有数据库连接性的智能对象的系统和方法,用于电力系统的设计,分析和仿真
    • US20090099832A1
    • 2009-04-16
    • US12247873
    • 2008-10-08
    • Adib Nasle
    • Adib Nasle
    • G06F17/50
    • G06F17/5009G06F2217/04G06F2217/78Y10S715/964
    • A computer system for converting a computer aided design drawing file of an electrical power system into one or more component objects for power analytic analysis and simulation, is disclosed. The computer system can include a processor, a memory, a display device, and an input device. The memory device can be coupled to the processor and configured to maintain a component classification database, an import engine, computer aided design drawing parser, and a symbol classification engine. The display device can be coupled to the processor and configured for displaying the computer aided design drawing file of the electrical power system. The processor can be operative to execute instructions within the import engine to control the import of the computer aided design drawing file to the computer, execute instructions within the computer aided design drawing parser to control the parsing of the computer aided design drawing file into at least one component object containing a component symbol and execute instructions within the symbol classification engine to control the assigning of a component classification to the component symbol.
    • 公开了一种用于将电力系统的计算机辅助设计图文件转换成用于功率分析分析和模拟的一个或多个组件对象的计算机系统。 计算机系统可以包括处理器,存储器,显示设备和输入设备。 存储器设备可以耦合到处理器并且被配置为维护组件分类数据库,导入引擎,计算机辅助设计图解析器和符号分类引擎。 显示装置可以耦合到处理器并且被配置为显示电力系统的计算机辅助设计图文件。 处理器可操作以执行导入引擎内的指令,以控制将计算机辅助设计图文件导入计算机,执行计算机辅助设计图解析器内的指令,以至少至少控制计算机辅助设计图文件的解析 包含组件符号的一个组件对象,并在符号分类引擎内执行指令以控制组件分类到组件符号。