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1:
[发明]
【中文】一种电力系统调控云电网运行分析平台 【EN】Power system regulation and control cloud power grid operation analysis platform
申请号:
201911401268.5
公开号:CN111242801A 主分类号:G06Q50/06
申请人:
【中文】中国电力科学研究院有限公司
;
中国科学院微电子研究所【EN】CHINA ELECTRIC POWER RESEARCH INSTITUTE Co.,Ltd.
;
Institute of Microelectronics, Chinese Academy of Sciences
申请日:2019.12.31 公开日:2020.06.05
发明人:
【中文】陈振宇
;
高兴宇
;
狄方春
;
李大鹏
;
黄运豪
;
杨清波
;
刘东【EN】Chen Zhenyu
;
Gao Xingyu
;
Di Fangchun
;
Li Dapeng
;
Huang Yunhao
;
Yang Qingbo
;
Liu Dong
摘要:【中文】一种电力系统调控云电网运行分析平台,包括:软件级服务SaaS层,支撑平台服务层,基础设施级服务IaaS层,外联层,通信层,以及展示层。并提供了容器管理模块,用于基于容器的标准化应用管理构建模式和容器管理方法,有利于完善国分省调分析决策应用标准化建设、同质化管理,形成集中统一、工作协同、规范高效的“大运行”体系,实现了对电力系统调控云平台资源利用的高效性、合理性和安全性等方面更高的标准。 【EN】The utility model provides a power system regulation and control cloud electric wire netting operation analysis platform, includes: the software-level service software as a service (SaaS) layer, the support platform service layer, the infrastructure-level service IaaS layer, the external connection layer, the communication layer and the display layer. And the container management module is used for a container-based standardized application management construction mode and a container management method, is favorable for perfecting the standardized construction and the homogenization management of national provincial dispatching analysis decision application, forms a centralized unified, work-coordinated, standard and efficient large-operation system, and realizes higher standards in the aspects of high efficiency, reasonability, safety and the like of the resource utilization of the power system regulation cloud platform.
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2:
[发明]
【中文】一种用电信息采集系统模组化终端的模组管理方法 【EN】Module management method for power consumption information acquisition system modular terminal
申请号:
201911030207.2
公开号:CN110932883A 主分类号:H04L12/24
申请人:
【中文】国网江苏省电力有限公司电力科学研究院【EN】STATE GRID JIANGSU ELECTRIC POWER Research Institute
申请日:2019.10.28 公开日:2020.03.27
发明人:
【中文】崔高颖
;
范洁
;
陈霄
;
邵雪松
;
周玉
;
易永仙
;
陆婋泉
;
吴伟将【EN】Cui Gaoying
;
Fan Jie
;
Chen Xiao
;
Shao Xuesong
;
Zhou Yu
;
Yi Yongxian
;
Lu Xiaoquan
;
Wu Weijiang
摘要:【中文】一种用电信息采集系统模组化终端的模组管理方法,主要包括终端维护、模组注册流程、注销流程、模组故障恢复和隔离流程、模组资源调度,该系统引入了交互时间段和模组冻结的方法,可以让各类模组在不同的时间段工作,将系统资源的占用分摊到不同的时间段,降低了系统的资源占用;并且引入了模组优先级,在最坏的情况下优先保证优先级高的模组功能正常。 【EN】A module management method of a modular terminal of a power utilization information acquisition system mainly comprises terminal maintenance, a module registration process, a logout process, a module fault recovery and isolation process and module resource scheduling, and the system introduces a method of interaction time period and module freezing, so that various modules can work in different time periods, the occupation of system resources is shared to different time periods, and the resource occupation of the system is reduced; and the module priority is introduced, and the module with high priority is preferentially ensured to be normal in function under the worst condition.
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3:
[发明]
【中文】一种电缆接头局部放电检测装置 【EN】Cable joint partial discharge detection device
申请号:
201911302731.0
公开号:CN110927542A 主分类号:G01R31/12
申请人:
【中文】国网辽宁省电力有限公司电力科学研究院【EN】STATE GRID CORPORATION OF CHINA
申请日:2019.12.17 公开日:2020.03.27
发明人:
【中文】赵振威
;
鲁旭臣
;
朱义东
;
韦德福
;
李冠华
;
师政
;
黄珂
;
郑维刚
;
王雅楠
;
陈浩【EN】Zhao Zhenwei
;
Lu Xuchen
;
Zhu Yidong
;
Wei Defu
;
Li Guanhua
;
Shi Zheng
;
Huang Ke
;
Zheng Weigang
;
Wang Yanan
;
Chen Hao
摘要:【中文】本发明公开了一种电缆接头局部放电检测装置,包括:超低频电压发生单元、信号采集单元和分析控制单元。超低频电压发生单元包括电源、稳压模块、升压模块和极性转换模块,稳压模块与电源、升压模块和分析控制单元连接,升压模块与稳压模块、极性转换模块和分析控制单元连接,极性转换模块与升压模块和分析控制单元连接。本发明提供的电缆接头局部放电检测装置具有高效、质量轻、体积小和测量精准的特点。进一步地,该电缆接头局部放电检测装置利用该训练后的局部放电模型进行检测,可以使检测更加准确,能将低频检测得出的局部放电结果直接推断到工频条件下的结果。 【EN】The invention discloses a cable joint partial discharge detection device, which comprises: the system comprises an ultralow frequency voltage generating unit, a signal acquisition unit and an analysis control unit. The ultralow frequency voltage generation unit comprises a power supply, a voltage stabilizing module, a boosting module and a polarity conversion module, wherein the voltage stabilizing module is connected with the power supply, the boosting module and the analysis control unit, the boosting module is connected with the voltage stabilizing module, the polarity conversion module and the analysis control unit, and the polarity conversion module is connected with the boosting module and the analysis control unit. The cable joint partial discharge detection device provided by the invention has the characteristics of high efficiency, light weight, small volume and accurate measurement. Furthermore, the cable joint partial discharge detection device utilizes the trained partial discharge model for detection, so that the detection is more accurate, and the partial discharge result obtained by low-frequency detection can be directly inferred to the result under the power frequency condition.
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4:
[发明]
【中文】一种考虑系统恢复过程中机组状态的负荷恢复优化方法 【EN】Load recovery optimization method considering unit state in system recovery process
申请号:
201911131101.1
公开号:CN111030084A 主分类号:H02J3/00
申请人:
【中文】国网江苏省电力有限公司电力科学研究院【EN】STATE GRID JIANGSU ELECTRIC POWER Research Institute
申请日:2019.11.19 公开日:2020.04.17
发明人:
【中文】周前
;
程亮
;
朱寰
;
汪成根
;
崔红芬
;
吴盛军
;
杨波
;
陈哲
;
张宁宇
;
李虹仪
;
谢云云【EN】Zhou Qian
;
Cheng Liang
;
Zhu Huan
;
Wang Chenggen
;
Cui Hongfen
;
Wu Shengjun
;
Yang Bo
;
Chen Zhe
;
Zhang Ningyu
;
Li Hongyi
;
Xie Yunyun
摘要:【中文】本发明公开了一种考虑系统恢复过程中机组状态的负荷恢复优化方法,利用逻辑偏好描述语言来建立考虑机组状态的负荷优选,建立负荷恢复的非线性模型,采用人工蜂群算法求解模型,获得考虑机组状态的负荷恢复线路和时间。该方法包括:1、构建考虑系统恢复过程中机组状态的负荷优选分级知识库;2、建立考虑系统恢复过程中机组状态的负荷优化偏好策略集;3、建立考虑系统恢复过程中机组状态的负荷恢复优化模型;4、采用人工蜂群算法对负荷恢复优化模型进行求解,得到考虑系统恢复过程中机组状态的负荷的恢复线路和时间。该方法能够对系统恢复过程中的负荷恢复进行优化,确保重要负荷能够快速恢复,并提供合理的负荷恢复方案。 【EN】The invention discloses a load recovery optimization method considering a unit state in a system recovery process, which utilizes a logic preference description language to establish load optimization considering the unit state, establish a nonlinear model for load recovery, and adopt an artificial bee colony algorithm to solve the model to obtain a load recovery line and time considering the unit state. The method comprises the following steps: 1. constructing a load optimization hierarchical knowledge base considering the unit state in the system recovery process; 2. establishing a load optimization preference strategy set considering the state of a unit in the system recovery process; 3. establishing a load recovery optimization model considering the state of the unit in the system recovery process; 4. and solving the load recovery optimization model by adopting an artificial bee colony algorithm to obtain a recovery line and time of the load considering the unit state in the system recovery process. The method can optimize the load recovery in the system recovery process, ensure the quick recovery of important loads and provide a reasonable load recovery scheme.
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5:
[发明]
【中文】一种储能系统与已恢复机组联合运行的负荷恢复优化方法 【EN】Load recovery optimization method for combined operation of energy storage system and recovered unit
申请号:
201911131175.5
公开号:CN111092455A 主分类号:H02J3/46
申请人:
【中文】国网江苏省电力有限公司电力科学研究院【EN】STATE GRID JIANGSU ELECTRIC POWER Research Institute
申请日:2019.11.19 公开日:2020.05.01
发明人:
【中文】汪成根
;
程亮
;
朱寰
;
周前
;
崔红芬
;
吴盛军
;
杨波
;
赵静波
;
朱鑫要
;
李虹仪
;
谢云云【EN】Wang Chenggen
;
Cheng Liang
;
Zhu Huan
;
Zhou Qian
;
Cui Hongfen
;
Wu Shengjun
;
Yang Bo
;
Zhao Jingbo
;
Zhu Xinyao
;
Li Hongyi
;
Xie Yunyun
摘要:【中文】本发明公开了一种储能系统与已恢复机组联合运行的负荷恢复优化方法,将确定性负荷恢复优化模型转变为模糊机会约束优化模型,采用人工蜂群算法求解,获得计及负荷不确定性的负荷恢复方案。该方法包括:1、建立储能系统与已恢复机组联合运行的确定性负荷恢复优化模型;2、运用可信性理论,建立考虑负荷不确定性的模糊机会约束模型;3、运用清晰等价类,将模糊机会约束模型转化为易于求解的0‑1规划模型;4、采用人工蜂群算法求解0‑1规划模型,得到考虑负荷不确定性的储能系统与已恢复机组联合运行的负荷恢复优化结果。该方法得到的电网恢复方案充分考虑储能的调控优势和功率支撑作用,承受负荷不确定区间内的所有波动,可以保证电网恢复过程的安全性。 【EN】The invention discloses a load recovery optimization method for combined operation of an energy storage system and a recovered unit. The method comprises the following steps: 1. establishing a deterministic load recovery optimization model for the combined operation of the energy storage system and the recovered unit; 2. establishing a fuzzy chance constraint model considering load uncertainty by applying a credibility theory; 3. converting the fuzzy opportunity constraint model into a 0-1 planning model which is easy to solve by using clear equivalence classes; 4. and solving the 0-1 planning model by adopting an artificial bee colony algorithm to obtain a load recovery optimization result of the combined operation of the energy storage system considering the load uncertainty and the recovered unit. The power grid recovery scheme obtained by the method fully considers the regulation and control advantages and the power support effect of the stored energy, bears all fluctuation in the load uncertain interval, and can ensure the safety of the power grid recovery process.
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6:
[发明]
一种三元交互动作检测方法、系统、设备及介质
申请号:
202410354226.5
公开号:CN117953590A 主分类号:G06V40/20
申请人:
武汉工程大学
;
湖北文理学院
;
中国电力科学研究院有限公司
申请日:2024.03.27 公开日:2024.04.30
发明人:
高芳裙
;
张彦铎
;
吴云韬
;
卢涛
;
唐盼
;
王砾伟
;
李圳
摘要:本发明涉及一种三元交互动作检测方法、系统、设备及介质,方法包括:获取待测三元关系交互动作图像;确定待测三元关系交互动作图像的降维特征图;为降维特征图上每个预设区域添加位置信息,确定全局信息图;利用预设的多头注意力机制,将全局信息图和预设的查询规则进行融合,确定预测交互动作信息;将预测交互动作信息转换为三元检测框信息和交互动作类别。解决了现有技术无法对三元交互动作信息进行完整的描述,不仅降低了预测出的该交互动作信息的区域范围的准确性,还降低了该交互动作信息对应的交互动作类别的准确性的问题。
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7:
[发明]
【中文】基于神经网络的智能电能表运行状态判别方法及系统 【EN】Intelligent electric energy meter running state distinguishing method and system based on neural network
申请号:
201811022281.5
公开号:CN110874685A 主分类号:G06Q10/06
申请人:
【中文】中国计量科学研究院
;
中国电力科学研究院有限公司
;
国网福建省电力有限公司电力科学研究院【EN】NATIONAL INSTITUTE OF METROLOGY
;
China Electric Power Research Institute Co., Ltd.
;
Electric Power Research Institute, State Grid Fujian Electric Power Co., Ltd.
申请日:2018.09.04 公开日:2020.03.10
发明人:
【中文】刘方兴
;
王磊
;
贾正森
;
黄洪涛
;
于海波
;
李贺龙
;
其他发明人请求不公开姓名【EN】Liu Fangxing
;
Wang Lei
;
Jia Zhengsen
;
Huang Hongtao
;
Yu Haibo
;
Li Helong
;
Other inventors ask not to disclose names
摘要:【中文】本发明提供了一种基于神经网络的智能电能表运行状态判别方法及系统,属于领域。该方法包括:步骤1:确定智能电能表运行时的特征信息;步骤2:确定智能电能表的运行状态;步骤3:利用已知特征信息、已知运行状态的样本对神经网络进行训练,得到训练好的神经网络;利用训练好的神经网络对待测智能电能表进行判断,获得待测智能电能表的运行状态。本发明采用神经网络对智能电能表的运行状态的特征信息数据进行融合,模型简洁、评判准确性高,同时具有很大灵活性,方便智能电能表的其他特征信息的数据接入模型,进行更为精确的判断。 【EN】The invention provides an intelligent electric energy meter running state distinguishing method and system based on a neural network, and belongs to the field. The method comprises the following steps: step 1: determining characteristic information of the intelligent electric energy meter during operation; step 2: determining the running state of the intelligent electric energy meter; and step 3: training the neural network by using samples with known characteristic information and known running states to obtain a trained neural network; and judging the intelligent electric energy meter to be tested by using the trained neural network to obtain the running state of the intelligent electric energy meter to be tested. The invention adopts the neural network to fuse the characteristic information data of the running state of the intelligent electric energy meter, has concise model, high judgment accuracy and great flexibility, and is convenient for the data of other characteristic information of the intelligent electric energy meter to be accessed into the model for more accurate judgment.
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8:
[发明]
【中文】基于多源数据融合的智能电能表运行状态评价方法及系统 【EN】Intelligent electric energy meter running state evaluation method and system based on multi-source data fusion
申请号:
201811024319.2
公开号:CN110873857A 主分类号:G01R35/04
申请人:
【中文】中国计量科学研究院
;
中国电力科学研究院有限公司
;
国网福建省电力有限公司电力科学研究院【EN】NATIONAL INSTITUTE OF METROLOGY
;
China Electric Power Research Institute Co., Ltd.
;
Electric Power Research Institute, State Grid Fujian Electric Power Co., Ltd.
申请日:2018.09.04 公开日:2020.03.10
发明人:
【中文】贺青
;
刘方兴
;
王磊
;
贾正森
;
黄洪涛
;
于海波
;
李贺龙【EN】He Qing
;
Liu Fangxing
;
Wang Lei
;
Jia Zhengsen
;
Huang Hongtao
;
Yu Haibo
;
Li Helong
摘要:【中文】本发明提供了一种基于多源数据融合的智能电能表运行状态评价方法及系统,属于智能装置检测领域。该方法包括:步骤1,采集智能电能表的多源数据,分别对多源数据进行数据化得到各个评价指标的数值;步骤2,根据步骤1得到的评价指标的数值计算二级指标的数值;步骤3,根据步骤2得到的二级指标的数值计算一级指标的数值;步骤4,根据步骤3得到的一级指标的数值计算智能电能表的数值,并根据智能电能表的数值确定该智能电能表的运行状态。本发明的方法和系统利用电网中的智能电能表的多源数据实现了对智能电能表的运行状态的评价,完善了现有评价系统,提高了评价结果的准确性。 【EN】The invention provides an intelligent electric energy meter running state evaluation method and system based on multi-source data fusion, and belongs to the field of intelligent device detection. The method comprises the following steps: step 1, collecting multi-source data of the intelligent electric energy meter, and respectively carrying out data processing on the multi-source data to obtain numerical values of each evaluation index; step 2, calculating the numerical value of the secondary index according to the numerical value of the evaluation index obtained in the step 1; step 3, calculating the numerical value of the primary index according to the numerical value of the secondary index obtained in the step 2; and 4, calculating the numerical value of the intelligent electric energy meter according to the numerical value of the primary index obtained in the step 3, and determining the running state of the intelligent electric energy meter according to the numerical value of the intelligent electric energy meter. The method and the system realize the evaluation of the running state of the intelligent electric energy meter by using the multi-source data of the intelligent electric energy meter in the power grid, improve the existing evaluation system and improve the accuracy of the evaluation result.
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9:
[发明]
【中文】一种用于远程校准电子式互感器报文离散度的方法及系统 【EN】Method and system for remotely calibrating message dispersion of electronic transformer
申请号:
201910963387.3
公开号:CN110850351A 主分类号:G01R35/02
申请人:
【中文】中国电力科学研究院有限公司
【EN】China Electric Power Research Institute Co., Ltd.
申请日:2019.10.11 公开日:2020.02.28
发明人:
【中文】毛善友
;
熊前柱
;
胡浩亮
;
黄俊昌
;
万鹏
;
聂琪
;
李小飞
;
曾非同
;
潘瑞
;
徐子立
;
杨春燕
;
雷民
;
周峰【EN】Mao Shanyou
;
Xiong Qianzhu
;
Hu Haoliang
;
Huang Junchang
;
Wan Peng
;
Nie Qi
;
Li Xiaofei
;
Zeng Feitong
;
Pan Rui
;
Xu Zili
;
Yang Chunyan
;
Lei Min
;
Zhou Feng
摘要:【中文】本发明公开了一种用于远程校准电子式互感器报文离散度的方法及系统,属于电子式互感器检测校准技术领域。本发明方法,包括:根据校准参数及同步脉冲信号对数据报文进行初步筛选,获取电子式互感器报文,对电子式互感器报文进行存储;对所述初步筛选后的电子式互感器报文,进行链路加密,生成加密数据报文并存储于云服务器;获取云服务器存储的加密数据报文,并按照预设格式进行解密处理获取电子式互感器报文;读取电子式互感器报文,根据标准秒脉冲信号对电子式互感器报文离散度进行检测,获取校准参数,对电子式互感器报文进行校准。本发明对电子式互感器校验仪检测校准方法进行了改进,优化了检测校准业务流程,缩短的检测周期,节省人力资源。 【EN】The invention discloses a method and a system for remotely calibrating message dispersion of an electronic transformer, and belongs to the technical field of detection and calibration of electronic transformers. The method comprises the following steps: preliminarily screening the data messages according to the calibration parameters and the synchronous pulse signals, acquiring messages of the electronic transformer, and storing the messages of the electronic transformer; performing link encryption on the preliminarily screened electronic transformer messages to generate encrypted data messages and storing the encrypted data messages in a cloud server; acquiring an encrypted data message stored by a cloud server, and carrying out decryption processing according to a preset format to acquire an electronic transformer message; and reading the message of the electronic transformer, detecting the dispersion of the message of the electronic transformer according to the standard pulse per second signal, acquiring a calibration parameter, and calibrating the message of the electronic transformer. The method for detecting and calibrating the electronic transformer calibrator is improved, the detection and calibration service process is optimized, the detection period is shortened, and the human resources are saved.
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10:
[发明]
【中文】一种视频监控系统接口检测系统 【EN】Video monitoring system interface detection system
申请号:
201911021342.0
公开号:CN110855977A 主分类号:H04N17/00
申请人:
【中文】中国电力科学研究院有限公司
【EN】China Electric Power Research Institute Co., Ltd.
申请日:2019.10.24 公开日:2020.02.28
发明人:
【中文】李亚蕾
;
李劲松
;
刘筱萍
;
王化鹏
;
李文琢
;
张金虎
;
姜佳宁
;
刘洋
;
沈艳
;
张炜
;
李昂
;
张海燕
;
纪欣【EN】Li Yalei
;
Li Jinsong
;
Liu Xiaoping
;
Wang Huapeng
;
Li Wenzhuo
;
Zhang Jinhu
;
Jiang Jianing
;
Liu Yang
;
Shen Yan
;
Zhang Wei
;
Li Ang
;
Zhang Haiyan
;
Ji Xin
摘要:【中文】本发明涉及一种视频监控系统接口检测系统,包括接口测试仪,所述接口测试仪与待测视频监控系统进行通信;所述接口测试仪与待测视频监控系统连接;所述接口测试仪根据预设的标准通信协议和接口流程向所述待测视频监控系统发送标准接口报文;所述接口测试仪接收并记录所述待测视频监控系统反馈的响应报文,并将响应报文与预设的符合标准的通信协议的报文模板进行对比分析,以获取检测结论。本发明能够实现测试流程标准化、测试结果自动解析和自动记录,减少人工因素干扰,排除测试随机性,提高测试效率和测试的可靠性,实现测试可重复性,保证测试工作的可追溯性,保障检测结果的可靠性和一致性。 【EN】The invention relates to a video monitoring system interface detection system, which comprises an interface tester, a video monitoring system interface tester and a video monitoring system interface tester, wherein the interface tester is communicated with the video monitoring system to be tested; the interface tester is connected with the video monitoring system to be tested; the interface tester sends a standard interface message to the video monitoring system to be tested according to a preset standard communication protocol and an interface flow; and the interface tester receives and records the response message fed back by the video monitoring system to be tested, and compares and analyzes the response message and a preset message template conforming to a standard communication protocol to obtain a detection conclusion. The invention can realize the standardization of the test flow, the automatic analysis and the automatic recording of the test result, reduce the interference of artificial factors, eliminate the test randomness, improve the test efficiency and the test reliability, realize the test repeatability, ensure the traceability of the test work and ensure the reliability and the consistency of the test result.
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