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
    • Current differential protection
    • 电流差动保护
    • US08963558B2
    • 2015-02-24
    • US13665479
    • 2012-10-31
    • General Electric Company
    • Yan PanWilliam James Premerlani
    • G01R31/08H02H3/30H02H7/26H02H1/00
    • G01R31/08H02H1/0061H02H3/305H02H7/263
    • A current differential protection system for a multi-terminal power line includes a current sensor for sensing a current at a local terminal, a controller for time synchronizing the local terminal and remote terminals, and a fault detection module to detect a fault in the multi-terminal power line if a differential current exceeds a threshold value. The controller includes a time measurement exchange module for exchanging time stamp data with remote terminals, an upper range clock for exchanging time stamp data with remote terminals and a lower range clock for indexing the current at the local terminal. A first time period of the upper range clock is N times a second time period of the lower range clock where N is a number of multi-terminals. The controller includes a clock offset calculation module for determining an average time offset based on time stamp data from remote terminals and the local terminal.
    • 一种用于多终端电力线路的电流差动保护系统,包括用于感测本地终端电流的电流传感器,用于使本地终端和远端终端同步的控制器,以及用于检测多终端电力线路故障的故障检测模块, 如果差分电流超过阈值,则终端电力线。 控制器包括用于与远程终端交换时间戳数据的时间测量交换模块,用于与远程终端交换时间戳数据的较高范围时钟和用于对本地终端的电流进行索引的较低范围时钟。 上限范围时钟的第一时间段是下限时钟的第二时间段的N倍,其中N是多个终端的数量。 控制器包括时钟偏移计算模块,用于基于来自远程终端和本地终端的时间戳数据来确定平均时间偏移。
    • 4. 发明申请
    • SYSTEMS AND METHODS FOR SWING ANGLE ESTIMATION IN AN ELECTRICAL POWER SYSTEM
    • 用于在电力系统中摆动角度估计的系统和方法
    • US20150051850A1
    • 2015-02-19
    • US13968684
    • 2013-08-16
    • General Electric Company
    • Yan PanWilliam James Premerlani
    • G01R31/34G01R19/25
    • G01R31/343G01R19/2513H02H3/382H02J3/24
    • In accordance with one embodiment, a method for detection of power swing for at least a first range of swing angles between an internal voltage (ES) of a source-end generator and an internal voltage (ER) of a receiving-end generator is provided. The method includes obtaining a voltage magnitude (VS) of the source-end generator, and a current magnitude (IS) of the source-end generator. The method further includes estimating a total reactance (X) between the source-end generator and the receiving-end generator, and estimating a first swing angle (θ) between the ES and the ER as a function of the obtained VS, the obtained IS and the estimated X. The method further includes detecting a power swing condition based on the estimated θ.
    • 根据一个实施例,提供一种用于在源端发生器的内部电压(ES)和接收端发生器的内部电压(ER)之间的至少第一旋转角度范围内检测功率摆动的方法, 。 该方法包括获得源端发生器的电压幅度(VS)和源端发生器的电流幅度(IS)。 该方法还包括估计源端发生器和接收端发生器之间的总电抗(X),并且估计ES和ER之间的第一摆角(& t)作为获得的VS的函数,所获得的 IS和估计的X.该方法还包括基于估计的功率来检测功率摆动条件。
    • 8. 发明申请
    • HYBRID DIRECT-CURRENT CIRCUIT BREAKER
    • 混合直流电路断路器
    • US20160105018A1
    • 2016-04-14
    • US14510575
    • 2014-10-09
    • General Electric Company
    • Ruxi WangWilliam James PremerlaniAntonio CaiafaYan Pan
    • H02H9/02
    • H03K17/92H01H9/541H01H9/542H01H2009/543
    • A circuit breaking system includes a first branch including at least one solid-state snubber; a second branch coupled in parallel to the first branch and including a superconductor and a cryogenic contactor coupled in series; and a controller operatively coupled to the at least one solid-state snubber and the cryogenic contactor and programmed to, when a fault occurs in the load circuit, activate the at least one solid-state snubber for migrating flow of the electrical current from the second branch to the first branch, and, when the fault is cleared in the load circuit, activate the cryogenic contactor for migrating the flow of the electrical current from the first branch to the second branch.
    • 断路系统包括包括至少一个固态缓冲器的第一分支; 第二分支并联耦合到第一分支并且包括串联耦合的超导体和低温接触器; 以及控制器,其可操作地耦合到所述至少一个固态缓冲器和所述低温接触器,并且被编程为当所述负载电路中发生故障时,激活所述至少一个固态缓冲器,用于使所述电流从所述第二 分支到第一分支,并且当故障在负载电路中被清除时,激活用于将电流从第一分支移动到第二分支的低温接触器。
    • 9. 发明申请
    • METHOD AND SYSTEM FOR GENERATING ELECTRIC LOAD MODELS
    • 用于生成电力负荷模型的方法和系统
    • US20150356213A1
    • 2015-12-10
    • US14297748
    • 2014-06-06
    • General Electric Company
    • Yan PanSumit BoseWei Ren
    • G06F17/50G06F17/18
    • G06F17/5036G01D4/002G06F2217/78G06Q10/04G06Q50/06Y02B90/241Y02B90/248Y04S20/32Y04S20/38Y04S20/52
    • A method for generating electric load models that includes receiving a plurality of measurements representative of input provided by a power source to electric loads is provided. The method includes generating a plurality of combination of model loads and assigning a contribution factor to each model load in each combination. The method further includes computing a match index for each combination for each measurement. The match index is computed by comparing a predicted output of each combination with an actual output generated by the electric loads for each input represented by each measurement. Furthermore, the method includes computing a first likelihood index for each combination based on the match index for each combination for the plurality of measurements. The method also includes computing a second likelihood index for each contribution factor in each combination based on the match index for each combination.
    • 提供了一种用于产生电负载模型的方法,其包括将代表由电源提供的输入的多个测量值代表电力负载。 该方法包括产生模型负载的多个组合并且在每个组合中为每个模型负载分配贡献因子。 该方法还包括为每个测量计算每个组合的匹配指数。 通过将每个组合的预测输出与由每个测量表示的每个输入的电负载产生的实际输出进行比较来计算匹配指数。 此外,该方法包括基于针对多个测量的每个组合的匹配索引来计算每个组合的第一似然度指数。 该方法还包括基于每个组合的匹配指数来计算每个组合中每个贡献因子的第二似然度指数。