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
    • 5. 发明授权
    • Systems and methods involving balancing currents for thyristors
    • 包括平衡晶闸管电流的系统和方法
    • US07706157B2
    • 2010-04-27
    • US11950837
    • 2007-12-05
    • William Robert PearsonPedro Monclova
    • William Robert PearsonPedro Monclova
    • H02M7/122
    • H02M1/088
    • An exemplary embodiment includes a method for balancing thyristor bridge circuits, the method comprising, determining currents of thyristors in a first leg of thyristors of a thyristor bridge circuit, determining a first set of gate firing times for the thyristors in the first leg of thyristors responsive to determining the current of the thyristors in the first gate of thyristors, wherein the first set of gate firing times are operative to balance a current load between the thyristors in the first leg of thyristors, and gating the thyristors in the first leg of thyristors according to the first set of gate firing times.
    • 示例性实施例包括用于平衡晶闸管桥接电路的方法,所述方法包括:确定晶闸管桥接电路的第一支路晶闸管中的晶闸管的电流,确定第一支路晶闸管中的晶闸管的第一组栅极点火时间响应 以确定晶闸管的第一栅极中的晶闸管的电流,其中第一组栅极点火时间可操作以平衡第一支路晶闸管中的晶闸管之间的电流负载,以及在第一支路晶闸管中门控晶闸管, 到第一组门火时间。
    • 6. 发明申请
    • METHOD AND SYSTEM FOR RAPID MODELING AND VERIFICATION OF EXCITATION SYSTEMS FOR SYNCHRONOUS GENERATORS
    • 同步发电机激励系统的快速建模与验证方法与系统
    • US20070260334A1
    • 2007-11-08
    • US11381592
    • 2006-05-04
    • William PearsonPedro MonclovaJames Zeleznik
    • William PearsonPedro MonclovaJames Zeleznik
    • G05B13/02
    • G05B17/02G06F17/5036
    • A method for modeling an excitation system for a synchronous electrical power generator including: selecting a standard mathematical excitation system model from a plurality of standard excitation system models stored electronically; wherein the selected standard model is selected based on a similarity to the excitation system and can be an IEEE standard model; collecting data from the excitation system; determining parameter settings for the selected standard model using first pre-calculated and then collected (measured) data; verifying the selected standard model with tailored parameter settings by comparing an output of the model to a corresponding output of the excitation system; storing electronically the verified selected standard model with tailored settings; generating a report of the verified selected standard model with the tailored settings; performing rapidly and automatically model generation from a maintenance computer proximate to the excitation system; performing rapidly and automatically model generation without the need for system experts or extra equipment; and providing means to repeat test an operating excitation system at low cost and risk
    • 一种用于同步电力发生器的励磁系统建模的方法,包括:从电子存储的多个标准励磁系统模型中选择标准数学激励系统模型; 其中所选择的标准模型是基于与激励系统的相似性来选择的,并且可以是IEEE标准模型; 从励磁系统收集数据; 使用第一预先计算然后收集(测量)数据确定所选标准模型的参数设置; 通过将模型的输出与励磁系统的相应输出进行比较来验证所选择的具有定制参数设置的标准模型; 以经过定制的设置电子存储经过验证的选定标准模型; 通过定制的设置生成已验证的选定标准模型的报告; 从靠近励磁系统的维护计算机快速自动地执行模型生成; 无需系统专家或额外的设备即可实现快速自动的模型生成; 并提供以低成本和风险重复测试操作励磁系统的手段
    • 10. 发明授权
    • Method and system for rapid modeling and verification of excitation systems for synchronous generators
    • 同步发电机励磁系统快速建模与验证方法与系统
    • US07881814B2
    • 2011-02-01
    • US11381592
    • 2006-05-04
    • William Robert PearsonPedro MonclovaJames William Zeleznik
    • William Robert PearsonPedro MonclovaJames William Zeleznik
    • G05B13/02G05B21/00G06F17/50
    • G05B17/02G06F17/5036
    • A method for modeling an excitation system for a synchronous electrical power generator including: selecting a standard mathematical excitation system model from a plurality of standard excitation system models stored electronically; wherein the selected standard model is selected based on a similarity to the excitation system and can be an IEEE standard model; collecting data from the excitation system; determining parameter settings for the selected standard model using first pre-calculated and then collected (measured) data; verifying the selected standard model with tailored parameter settings by comparing an output of the model to a corresponding output of the excitation system; storing electronically the verified selected standard model with tailored settings; generating a report of the verified selected standard model with the tailored settings; performing rapidly and automatically model generation from a maintenance computer proximate to the excitation system; performing rapidly and automatically model generation without the need for system experts or extra equipment; and providing means to repeat test an operating excitation system at low cost and risk.
    • 一种用于同步电力发生器的励磁系统建模的方法,包括:从电子存储的多个标准励磁系统模型中选择标准数学激励系统模型; 其中所选择的标准模型是基于与激励系统的相似性来选择的,并且可以是IEEE标准模型; 从励磁系统收集数据; 使用第一预先计算然后收集(测量)数据确定所选标准模型的参数设置; 通过将模型的输出与励磁系统的相应输出进行比较来验证所选择的具有定制参数设置的标准模型; 以经过定制的设置电子存储经过验证的选定标准模型; 通过定制的设置生成已验证的选定标准模型的报告; 从靠近励磁系统的维护计算机快速自动地执行模型生成; 无需系统专家或额外的设备即可实现快速自动的模型生成; 并提供以低成本和风险重复测试操作励磁系统的手段。