WO2020155302A1 - 网荷终端参数处理方法、主站及系统 - Google Patents

网荷终端参数处理方法、主站及系统 Download PDF

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Publication number
WO2020155302A1
WO2020155302A1 PCT/CN2019/077320 CN2019077320W WO2020155302A1 WO 2020155302 A1 WO2020155302 A1 WO 2020155302A1 CN 2019077320 W CN2019077320 W CN 2019077320W WO 2020155302 A1 WO2020155302 A1 WO 2020155302A1
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WIPO (PCT)
Prior art keywords
user
parameter
parameters
parameter information
network load
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PCT/CN2019/077320
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English (en)
French (fr)
Inventor
夏勇
李瑶虹
陈振宇
翟学峰
范洁
罗凯明
王成亮
李澄
王红星
陆玉军
陈颢
曹佳佳
王宁
葛永高
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国网江苏省电力有限公司
江苏方天电力技术有限公司
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Publication of WO2020155302A1 publication Critical patent/WO2020155302A1/zh

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    • H02J13/0006
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J3/00Circuit arrangements for ac mains or ac distribution networks
    • H02J3/12Circuit arrangements for ac mains or ac distribution networks for adjusting voltage in ac networks by changing a characteristic of the network load
    • H02J3/14Circuit arrangements for ac mains or ac distribution networks for adjusting voltage in ac networks by changing a characteristic of the network load by switching loads on to, or off from, network, e.g. progressively balanced loading
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J13/00Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/06Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
    • G06Q10/063Operations research, analysis or management
    • G06Q10/0631Resource planning, allocation, distributing or scheduling for enterprises or organisations
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J3/00Circuit arrangements for ac mains or ac distribution networks
    • H02J3/001Methods to deal with contingencies, e.g. abnormalities, faults or failures
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J3/00Circuit arrangements for ac mains or ac distribution networks
    • H02J3/38Arrangements for parallely feeding a single network by two or more generators, converters or transformers
    • H02J3/46Controlling of the sharing of output between the generators, converters, or transformers
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
    • G06Q50/06Energy or water supply
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J3/00Circuit arrangements for ac mains or ac distribution networks
    • H02J3/003Load forecast, e.g. methods or systems for forecasting future load demand
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B70/00Technologies for an efficient end-user side electric power management and consumption
    • Y02B70/30Systems integrating technologies related to power network operation and communication or information technologies for improving the carbon footprint of the management of residential or tertiary loads, i.e. smart grids as climate change mitigation technology in the buildings sector, including also the last stages of power distribution and the control, monitoring or operating management systems at local level
    • Y02B70/3225Demand response systems, e.g. load shedding, peak shaving
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S20/00Management or operation of end-user stationary applications or the last stages of power distribution; Controlling, monitoring or operating thereof
    • Y04S20/20End-user application control systems
    • Y04S20/222Demand response systems, e.g. load shedding, peak shaving

Definitions

  • the present disclosure relates to the technical fields of power system stability control and load control, for example, to a method for processing network load terminal parameters, a master station, and a system.
  • Terminal load data collection introduces voltage and current from the current transformer (CT)/potential transformer (PT) secondary circuit of the subscriber line.
  • CT/PT current transformer
  • the transformation ratio parameters are generally different.
  • CT/PT The transformation ratio parameters are generally different.
  • the terminal In order to accurately calculate and monitor the primary power of a certain access line, it is necessary to set the settings of multiple configurable parameters; when calculating the total added power of the interruptible load, the line needs to be adjusted Matching selection; in order to control the trip outlets in different load shedding modes, it is also necessary to configure the outlet function control soft pressure plate, trip round selection matrix, etc.; in addition, the terminal also has some configuration parameters and basic description information such as terminal version and version generation time , Communication configuration time, etc.
  • the parameter configuration method in the related technology is manual configuration, which not only has very low work efficiency, but may also cause unavoidable errors.
  • the terminal and the main station-side debugger generally enter and file the parameters one by one, or upload the configuration file by the main station debugger to enter the parameters one by one according to the file. If the central processing unit (CPU) board fails on the field terminal, you need to re-enter the parameters after replacing the board and compare it with the master station one by one. Once the master station database is abnormal or user information is lost, you need Putting a lot of manpower into reconfiguration again is not only complicated, but also mistakes are still unavoidable.
  • CPU central processing unit
  • the present disclosure provides a network load terminal parameter processing method, a master station and a system, which realize the complete matching of the parameters of the terminal and the master station, the comparison after the parameter change, and the automatic one-key file building, so as to overcome the error caused by the manual configuration parameter , Investing in debugging manpower, low efficiency, poor parameter consistency, and unable to guarantee accurate load shedding.
  • the present disclosure provides a method for processing network load terminal parameters.
  • the method is applied to a master station, and the method includes:
  • the parameter information of the user corresponding to each network load terminal is inconsistent with the user profile parameter information of the user stored in the master station, modify all parameters according to the parameter information of the user corresponding to each network load terminal. Describe the inconsistent parameters in the user profile parameter information of the user.
  • the method further includes:
  • a user profile is established for the user corresponding to each network charge terminal.
  • creating a user profile for the user corresponding to each network charge terminal includes:
  • alarm information and difference prompt information are issued to update the user profile of the user based on the manual triggering of the profile instruction.
  • the method further includes: downloading user profile parameter information of the user corresponding to each network load terminal to each network load terminal.
  • the automatic comparison parameter module is configured to compare the parameter information of the user corresponding to each network load terminal with the user profile parameter information of the user stored in the automatic file creation parameter module; in each network load When the parameter information of the user corresponding to the terminal is inconsistent with the user profile parameter information of the user stored in the automatic profile parameter module, the user of the user is modified according to the parameter information of the user corresponding to each network load terminal Inconsistent parameters in the file parameter information.
  • the automatic profile creation parameter module is configured to create a user profile for the user corresponding to each network charge terminal according to the parameter information of the user corresponding to each network charge terminal.
  • the master station further includes: an automatic parameter download module;
  • the automatic parameter download module is configured to download the user profile parameter information of the user corresponding to each network load terminal to each network load terminal.
  • the present disclosure also provides a network load terminal parameter processing system, including: any one of the above-mentioned master stations and at least one network load terminal.
  • each network load terminal includes: a parameter upload module and a parameter download update module;
  • the parameter upload module is configured to upload parameter information of the user corresponding to each network load terminal to the master station, where the parameter information includes at least one of user line parameters, control parameters, user configuration parameters, collection parameters, and description parameters;
  • the parameter download and update module is configured to download the user profile parameter information of the user corresponding to each network load terminal stored in the master station, so as to realize the change of the parameters of each network load terminal.
  • the network load terminal parameter processing method provided in this embodiment realizes the transmission of all configurable parameters and description information of the network load terminal through the parameter transmission communication protocol between the main station and the network load terminal, so that the main station can view the information of all network load terminals.
  • Current parameters to achieve the comparison between the network load terminal and the master station parameters, to overcome the errors caused by manual configuration parameters, a lot of commissioning manpower, low work efficiency, poor parameter consistency, and inability to ensure accurate load shedding.
  • the actual problems in construction, transformation, system upgrade, operation and maintenance provide guarantee for the source network load master station system to accurately collect network load terminal data, for the source network load master station system to make correct control strategies, and to safely and stably control user load lines.
  • FIG. 1 is a flowchart of a method for processing network load terminal parameters according to an embodiment
  • Fig. 3 is a schematic diagram of a network load terminal parameter processing system provided by an embodiment.
  • Fig. 1 is a flowchart of a method for processing network load terminal parameters according to an embodiment. Referring to Figure 1, the method is applied to the master station, and the method includes the following steps.
  • the user line parameters include: line name, secondary voltage rating, secondary current rating, PT transformation ratio, CT transformation ratio, wiring mode, power meter method, Multiple related parameters such as bus group and power direction.
  • the subscriber line parameters include: the line name or site number that the subscriber indicates to access, the setting to calculate the rated and transformation ratio of the secondary power and the primary power, the primary wiring method, the metering method for calculating the power, and the line location. The name and number of the busbar group and the direction of calculating the power, the line parameters can ensure the accurate expression of the line power, which is convenient for the master station to automatically build files and collect primary and secondary active power and reactive power.
  • the control parameters include: total plus group power selection matrix, control outlet soft pressure plate and trip round selection matrix.
  • the control parameters determine the interruptible load collected and calculated by the master station.
  • the control parameters are the main parameters for performing user load control.
  • the control parameters are obtained
  • the parameter configuration can accurately grasp the user lines that can be cut in multiple load control modes such as millisecond load shedding, second load shedding, minute load shedding, on-site closed-loop power control, electricity bill power control, and the current switchable power.
  • User configuration parameters include: user name, user number, voltage level, power consumption capacity, user address, contract status, network load terminal asset number, network Internet Protocol (IP)/Mask/Gateway As well as network load terminal time and other parameters related to field equipment, the current basic information of each user can be clearly grasped by obtaining user configuration parameters.
  • Acquisition parameters refer to the coefficients of the communication telemetry data channel, including the uploaded bus voltage, line current, line active, line reactive, power factor, frequency and total group power and other parameters. Accurate data acquisition can be achieved by obtaining the acquisition parameter coefficients , Realize the complete consistency between the network load terminal data collection and the master station data collection, and the collection defects of the network load terminal can be accurately monitored remotely at the master station.
  • the description parameters include: terminal program version, version check code, version time and communication point table configuration time and other inherent information. Through the above information, it can be found whether the network load terminal version is updated and the point table configuration is the latest.
  • the network load terminal collects the parameter information of the corresponding user and uploads it to the master station.
  • the parameter information may include at least one of the user line parameters, control parameters, user configuration parameters, collection parameters, and description parameters corresponding to the network load terminal.
  • the master station receives each Parameter information uploaded by the network load terminal. The steps of the method realize the call-test of multiple parameters such as subscriber line parameters, control parameters, user parameters, etc.
  • the parameters after the call-test can accurately display the information and status of the current network load terminal, and grasp the user name and user number of a user in time , Voltage level, power consumption, contract status, terminal asset number, obtain the version, check code and generation time of the network load terminal, and the configuration of the communication point table, and find the data point table configuration error caused by the inconsistency of the version in time. It provides a convenient means to find the collection defects of the master station.
  • the error notification may include information prompts such as parameter failure to call and XX parameter error, that is, a certain parameter error.
  • the user profile parameter information includes at least one of user profile line parameters, user profile control parameters, user profile user configuration parameters, user profile collection parameters, and user profile description parameters.
  • the acquired user profile line parameters of the user corresponding to the network bearer terminal are compared with the user profile line parameters corresponding to the user stored in the master station.
  • the parameters obtained from the network charge terminal Information corresponding to the inconsistent parameters in the parameter information of the modified user profile.
  • line parameter setting errors, control parameter inconsistencies, user parameter changes and other parameter configuration problems can be found.
  • the inconsistency of control parameters directly affects user load control and is related to the safety of the source network load system Major problems, therefore, the solution provided in this embodiment has important practical significance.
  • the failure of the master station to update in time may cause statistics and analysis , Operation and maintenance errors.
  • the configuration can be found in time. Error, to achieve timely consistency between the terminal and the master station configuration, and solve the problem that the master station cannot view the terminal parameters and the master station file parameter verification is cumbersome.
  • the method for processing network load terminal parameters includes receiving parameter information of the user corresponding to each network load terminal uploaded by each of the at least one network load terminal, where the parameter information includes line parameters, control At least one of parameters, user configuration parameters, collection parameters, and description parameters; comparing the parameter information of the user corresponding to each network load terminal with the user profile parameter information of the user stored in the master station; When the parameter information of the user corresponding to each network charge terminal is inconsistent with the user profile parameter information of the user stored in the master station, modify the user profile of the user according to the parameter information of the user corresponding to each network charge terminal Inconsistent parameters in the parameter information.
  • the transmission of all configurable parameters and description information of the network load terminal is realized, so that the master station can view the current parameters of all the network load terminals, and realize the parameter exchange between the network load terminal and the master station.
  • Comparing overcome the problems caused by manual configuration parameters, large investment in debugging manpower, low work efficiency, poor parameter consistency, and inability to guarantee accurate load shedding, and solve practical problems in source network load construction, transformation, system upgrade, operation and maintenance , Provide guarantee for the source network load master station system to accurately collect network load terminal data, for the source network load master station system to make correct control strategies, and to safely and stably control user load lines.
  • the method for processing network load terminal parameters further includes: establishing a user profile for the user corresponding to each network load terminal according to the parameter information of the user corresponding to each network load terminal.
  • the establishment of a user profile for the user corresponding to each network charge terminal may include the following two scenarios:
  • Scenario 2 When the user profile of the user is stored in the master station, an alarm message and a difference prompt message are issued to update the user profile of the user based on a manually triggered profile instruction.
  • the user profile of the user is not stored in the master station.
  • a new user profile is created for the user based on the user's parameter information.
  • the master station may Achieve file creation for one household within one minute, which greatly improves the efficiency of file creation and maintenance at the master station. If the user file of the user is stored in the master station, for example, for a user with existing files, when the master station is selected for automatic file creation operation, an alarm message and a difference prompt message will be issued, that is, an alarm prompt and a difference prompt message will be given.
  • the method further includes: downloading the user profile parameter information of the user corresponding to each network charge terminal to each network charge terminal.
  • the automatic call-to-test parameter module 21 is configured to receive parameter information of the user corresponding to each network load terminal uploaded by each of the at least one network load terminal, where the parameter information includes user line parameters, control parameters, and user parameters. At least one of configuration parameters, acquisition parameters, and description parameters.
  • the automatic comparison parameter module 22 is configured to compare the parameter information of the user corresponding to each network load terminal with the user profile parameter information of the user stored in the automatic profile parameter module; in each network When the parameter information of the user corresponding to the network load terminal is inconsistent with the user profile parameter information of the user stored in the automatic file creation parameter module, the user’s parameter information is modified according to the parameter information of the user corresponding to each network load terminal. Inconsistent parameters in the user profile parameter information.
  • the automatic profile creation parameter module 23 is configured to create a user profile for the user corresponding to each network charge terminal according to the parameter information of the user corresponding to each network charge terminal.
  • the automatic file creation parameter module 23 is configured to create a new user file for the user based on the user's parameter information when the user file of the user is not stored in the automatic file creation parameter module; And when the user file of the user is stored in the automatic file creation parameter module, alarm information and difference prompt information are issued to update the user file of the user based on the manual trigger file creation instruction.
  • the master station 2 further includes an automatic parameter download module 24, which is configured to download the user profile parameter information of the user corresponding to each network load terminal to each network load terminal.
  • the master station 2 further includes an automatic parameter upload protocol module 25, an automatic parameter upload protocol module 25, configured to analyze the parameter information uploaded by each network load terminal to obtain at least one type of parameter information data uploaded by communication, And verify the data uploaded by each network load terminal, and give an error reminder if the network load terminal data verification fails.
  • FIG. 3 is a schematic diagram of a network load terminal parameter processing system provided in an embodiment.
  • the system 100 includes: any one of the main stations 2 in the above-mentioned embodiments, and at least one network load terminal 3.
  • each network load terminal 3 includes a parameter uploading module 31 and a parameter downloading and updating module 32.
  • the parameter uploading module 31 is configured to upload the parameter information of the user corresponding to each network load terminal 3 to the master station 2, where the parameter information includes user line parameters, control parameters, user configuration parameters, collection parameters, and description parameters. at least one.
  • the network load terminal parameter processing system provided by this embodiment includes any one of the main stations 2 in the above embodiments and at least one network load terminal 3, which solves the data collection defects of the main station and the error of the main station control setting caused by configuration errors
  • the problem that caused the user's switch to trip by mistake has improved the security and reliability of the source network load system.
  • this embodiment also provides a computer-readable storage medium with a computer program stored on the computer-readable storage medium.
  • the instructions in the storage medium are executed by a processor of a network load terminal parameter processing system
  • a method for processing network load terminal parameters in any of the foregoing embodiments is implemented, and the method includes: receiving each network load terminal in at least one network load terminal uploading the parameter information of the user corresponding to each network load terminal, wherein, the parameter information includes at least one of subscriber line parameters, control parameters, user configuration parameters, collection parameters, and description parameters; the parameter information of the user corresponding to each network load terminal is compared with the user’s user stored in the master station.
  • the file parameter information is compared; in the case that the parameter information of the user corresponding to each network load terminal is inconsistent with the user file parameter information of the user stored in the master station, according to the user corresponding to each network load terminal Modify the inconsistent parameters in the user profile parameter information of the user.
  • This embodiment provides a computer-readable storage medium containing executable instructions.
  • the executable instructions are not limited to the operation of the network load terminal parameter processing method described above, and can also execute the network load terminal parameters provided in any of the above embodiments. Related operations in the processing method, and have corresponding functions and beneficial effects.
  • the present disclosure can be implemented by software and general-purpose hardware, and can also be implemented by hardware.
  • the technical solution of the present disclosure can be embodied in the form of a software product, which can be stored in a readable storage medium, such as a read-only memory (ROM) of a network load terminal parameter processing system , Random Access Memory (RAM), flash memory (FLASH), etc., including multiple instructions to enable a network load terminal parameter processing system device to execute a network load terminal parameter processing described in any of the above embodiments method.
  • ROM read-only memory
  • RAM Random Access Memory
  • FLASH flash memory

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Abstract

本文公开了一种网荷终端参数处理方法、主站及系统,该方法包括:接收至少一个网荷终端中每个网荷终端上传的所述每个网荷终端对应的用户的参数信息,参数信息包括用户线路参数、控制参数、用户配置参数、采集参数、描述参数中的至少一个;将所述每个网荷终端对应的用户的参数信息与主站中存储的所述用户的用户档案参数信息进行比对;在所述每个网荷终端对应的用户的参数信息与主站中存储的所述用户的用户档案参数信息不一致的情况下,根据所述每个网荷终端对应的用户的参数信息,修改所述用户的用户档案参数信息中不一致的参数。

Description

网荷终端参数处理方法、主站及系统
本公开要求在2019年02月01日提交中国专利局、申请号为201910105386.5的中国专利申请的优先权,该申请的全部内容通过引用结合在本公开中。
技术领域
本公开涉及电力系统稳定控制、负荷控制技术领域,例如涉及一种网荷终端参数处理方法、主站及系统。
背景技术
终端负荷数据采集从用户线路的电流互感器(Current Transformer,CT)/电压互感器(Potential Transformer,PT)二次回路引入电压电流,对不同线路电压等级、不同一次额定电流的线路,CT/PT变比参数一般也不相同,为了实现对某个接入线路的一次功率准确计算和监视,需要设定多个可配置参数的整定;在计算可中断负荷的总加功率时,需对线路进行匹配选择;为控制不同切负荷模式下的跳闸出口,也需对出口功能控制软压板、跳闸轮次选择矩阵等进行配置;另终端还有一些配置参数以及基本描述信息如终端版本,版本生成时间、通讯配置时间等。相关技术中的参数配置方法为人工配置,不仅工作效率非常低下,还可能造成无法避免的错误发生。
用户侧终端在建设实施时,一般通过终端与主站侧调试人员一对一进行参数录入建档,或通过上传配置文件由主站调试人员根据文件进行一一录入参数建档。若现场终端发生中央处理器(Central Processing Unit,CPU)板件故障,更换板件后需要重新输入参数,并与主站进行一一比对,一旦主站数据库发生异常或用户信息丢失,则需要再次投入大量人力进行重新配置,不仅工作繁杂,错误仍无法避免。
现场实施中存在的参数一致性差、主站数据采集易出错、缺陷处理过程繁琐、需要投入大量的人力的问题亟待解决。
发明内容
本公开提供一种网荷终端参数处理方法、主站及系统,实现终端和主站的 参数完全的匹配、参数更改后的比对和自动化的一键建档,以克服人工配置参数产生的错误、投入调试人力多、工作低效率、参数一致性差、无法保障准确切负荷的问题。
本公开提供了一种网荷终端参数处理方法,该方法应用于主站,该方法包括:
接收至少一个网荷终端中每个网荷终端上传的所述每个网荷终端对应的用户的参数信息,其中,参数信息包括用户线路参数、控制参数、用户配置参数、采集参数以及描述参数中的至少一个;
将所述每个网荷终端对应的用户的参数信息与主站中存储的所述用户的用户档案参数信息进行比对;
在所述每个网荷终端对应的用户的参数信息与主站中存储的所述用户的用户档案参数信息不一致的情况下,根据所述每个网荷终端对应的用户的参数信息,修改所述用户的用户档案参数信息中不一致的参数。
在一实施例中,该方法,还包括:
根据所述每个网荷终端对应的用户的参数信息,为所述每个网荷终端对应的用户建立用户档案。
在一实施例中,为所述每个网荷终端对应的用户建立用户档案,包括:
在主站中未存储有所述用户的用户档案的情况下,根据所述用户的参数信息,为所述用户新建用户档案;
在主站中存储有所述用户的用户档案的情况下,发出告警信息和差异提示信息,以基于人工触发的建档指令更新所述用户的用户档案。
在一实施例中,该方法,还包括:将每个网荷终端对应的用户的用户档案参数信息下载到所述每个网荷终端。
本公开还提供了一种主站,包括:自动召测参数模块、自动比对参数模块和自动建档参数模块;
自动召测参数模块,设置为接收至少一个网荷终端中每个网荷终端上传的所述每个网荷终端对应的用户的参数信息,其中,参数信息包括用户线路参数、 控制参数、用户配置参数、采集参数以及描述参数中的至少一个;
自动比对参数模块,设置为将所述每个网荷终端对应的用户的参数信息与自动建档参数模块中存储的所述用户的用户档案参数信息进行比对;在所述每个网荷终端对应的用户的参数信息与自动建档参数模块中存储的所述用户的用户档案参数信息不一致的情况下,根据所述每个网荷终端对应的用户的参数信息,修改所述用户的用户档案参数信息中不一致的参数。
在一实施例中,自动建档参数模块,设置为根据所述每个网荷终端对应的用户的参数信息,为所述每个网荷终端对应的用户建立用户档案。
在一实施例中,自动建档参数模块,是设置为在自动建档参数模块中未存储有该用户的用户档案的情况下,根据所述用户的参数信息,为该用户新建用户档案;以及在自动建档参数模块中存储有该用户的用户档案的情况下,发出告警信息和差异提示信息,以基于人工触发的建档指令更新该用户的用户档案。
在一实施例中,该主站还包括:自动参数下载模块;
自动参数下载模块,设置为将每个网荷终端对应的用户的用户档案参数信息下载到所述每个网荷终端。
本公开还提供了一种网荷终端参数处理系统,包括:具有如上所述的任一种主站,以及至少一个网荷终端。
在一实施例中,每个网荷终端包括:参数上传模块和参数下载更新模块;
参数上传模块,设置为上传所述每个网荷终端对应的用户的参数信息至主站,其中,参数信息包括用户线路参数、控制参数、用户配置参数、采集参数、描述参数中的至少一个;
参数下载更新模块,设置为下载主站存储的所述每个网荷终端对应的用户的用户档案参数信息,以实现所述每个网荷终端参数的变更。
本实施例提供的网荷终端参数处理方法,通过主站与网荷终端间的参数传输通讯协议,实现网荷终端所有可配置参数和描述信息的传输,使得主站可以查看所有网荷终端的当前参数,实现网荷终端与主站参数的比对,克服了人工配置参数产生的错误、投入调试人力多、工作低效率、参数一致性差、无法保障准确切负荷等问题,解决在源网荷建设、改造、系统升级、运行维护中的实 际问题,为源网荷主站系统准确采集网荷终端数据、为源网荷主站系统做出正确控制策略、安全稳定控制用户负荷线路提供保障。
附图说明
图1是一实施例提供的一种网荷终端参数处理方法的流程图;
图2是一实施例提供的一种主站的示意图;
图3是一实施例提供的一种网荷终端参数处理系统的示意图。
具体实施方式
下面结合附图和实施例对本公开进行说明。此处所描述的具体实施例仅仅用于解释本公开,而非对本公开的限定。另外,为了便于描述,附图中仅示出了与本公开相关的部分而非全部结构。
本公开提供一种网荷终端参数处理方法。图1是一实施例提供的一种网荷终端参数处理方法的流程图。参见图1,该方法应用于主站,该方法包括如下步骤。
S1010、接收至少一个网荷终端中每个网荷终端上传的所述每个网荷终端对应的用户的参数信息,其中,参数信息包括用户线路参数、控制参数、用户配置参数、采集参数、描述参数中的至少一个。
在一实施例中,网荷终端对应的用户的参数信息中,用户线路参数包括:线路名称、电压二次额定、电流二次额定、PT变比、CT变比、接线方式、功率表法、母线组别和功率方向等多个相关参数。在一实施例中,用户线路参数包括:用户标明接入的线路名称或现场编号、设定计算二次功率和一次功率的额定和变比,一次接线方式,计算功率的表计方法,线路所在的母线组名称编号和计算功率的方向,线路参数能确保准确表达线路的功率,便于主站自动建档和采集一二次有功功率、无功功率。控制参数包括:总加组功率选择矩阵、控制出口软压板以及跳闸轮次选择矩阵,控制参数决定了主站采集和计算可中断负荷,控制参数是执行用户负荷控制的主要参数,通过获得控制参数的参数配置可以准确掌握毫秒级切负荷、秒级切负荷、分钟级切负荷、就地闭环功率控制、电费功率控制等多种负荷控制模式可切除的用户线路及当前可切功率。 用户配置参数包括:用户名称、用户号、电压等级、用电容量、用户地址、签约状态、网荷终端资产号、网络互联网协议(Internet Protocol,IP)/掩码(Mask)/网关(Gateway)以及网荷终端时间等与现场设备相关的参数,通过获得用户配置参数可以清晰掌握每个用户的当前基本信息。采集参数是指通讯遥测数据通道的系数,包括上传的母线电压、线路电流、线路有功、线路无功、功率因数、频率以及总加组功率等参数,通过获得采集参数系数可以实现数据的准确采集,实现网荷终端数据采集和主站采集数据的完全一致,网荷终端的采集缺陷可以在主站远程准确监视。描述参数包括:终端程序版本、版本校验码、版本时间以及通讯点表配置时间等固有信息,通过上述信息可以发现网荷终端的版本是否更新一致、点表配置是否是最新。
网荷终端采集对应用户的参数信息并上传给主站,参数信息可以包括网荷终端对应的用户线路参数、控制参数、用户配置参数、采集参数、描述参数中的至少一个,主站接收每个网荷终端上传的参数信息。该方法步骤实现用户线路参数、控制参数、用户参数等多个参数的召测,召测后的参数可以准确显示出当前网荷终端的信息和状态,及时掌握某个用户的用户名称、用户号、电压等级、用电容量、签约状态、终端资产号,获取关于网荷终端的版本、校验码及生成时间、通讯点表配置情况,及时发现因版本不一致导致的数据点表配置错误,为查找主站的采集缺陷提供了便利的手段。
通过解析网荷终端上传的参数信息,获得通讯上传的至少一类参数信息数据,并校验网荷终端上传的数据,当网荷终端数据校验不通过时,进行报错提醒。在一实施例中,报出错误提醒可以包括参数无法召测及XX参数错误即某某参数错误等信息提示。
S1020、将所述每个网荷终端对应的用户的参数信息与主站中存储的所述用户的用户档案参数信息进行比对。
在一实施例中,用户档案参数信息包括用户档案线路参数、用户档案控制参数、用户档案用户配置参数、用户档案采集参数、用户档案描述参数中的至少一个。
将参数信息中的网荷终端对应的用户线路参数、控制参数、用户配置参数、采集参数、描述参数的至少一个,与主站中存储的用户对应的用户档案参数信 息进行比对。在一实施例中,将获取的网荷终端对应的用户的用户档案线路参数与主站中存储的该用户对应的用户档案线路参数进行比对。
S1030、在所述每个网荷终端对应的用户的参数信息与主站中存储的所述所述用户的用户档案参数信息不一致的情况下,根据所述每个网荷终端对应的用户的参数信息,修改所述用户的用户档案参数信息中不一致的参数。
在一实施例中,若每个网荷终端对应的用户的参数信息与主站中存储的该用户的用户档案参数信息经过对应比对后两者信息不一致,则根据从网荷终端获取的参数信息,对应修改用户档案参数信息中不一致的参数。通过比对可以发现线路参数设置的错误、控制参数的不一致、用户参数的变更等参数配置上的问题,尤其可以发现针对控制参数不一致直接影响到用户负荷控制,关系到源网荷系统运行安全等重大问题,因此,本实施例提供的方案具有重要的现实意义。而用户参数信息中的用户名称、户号、电压等级、用电容量等可能因用户停产销户、增容改造、厂区迁移发生变化的参数信息,例如主站不及时更新将可能引起统计、分析、运维的错误。通过部分参数、或全部参数的比对,并则根据参数信息,及时修改用户档案参数信息中不一致的参数,能为用户档案管理、系统运维、数据分析提供支持,同时能及时发现配置上的错误,实现终端与主站配置的及时保持一致,解决了终端参数主站无法查看,主站建档参数校验繁琐的问题。
本实施例提供的网荷终端参数处理方法,包括接收至少一个网荷终端中每个网荷终端上传的所述每个网荷终端对应的用户的参数信息,其中,参数信息包括线路参数、控制参数、用户配置参数、采集参数、描述参数中的至少一个;将所述每个网荷终端对应的用户的参数信息与主站中存储的该用户的用户档案参数信息进行比对;在所述每个网荷终端对应的用户的参数信息与主站中存储的该用户的用户档案参数信息不一致的情况下,根据所述每个网荷终端对应的用户的参数信息,修改该用户的用户档案参数信息中不一致的参数。通过主站与网荷终端间的参数传输通讯协议,实现网荷终端所有可配置参数和描述信息的传输,使得主站可以查看所有网荷终端的当前参数,实现网荷终端与主站参数的比对,克服人工配置参数产生的错误、投入调试人力多、工作低效率、参数一致性差、无法保障准确切负荷等问题,解决在源网荷建设、改造、系统升级、运行维护中的实际问题,为源网荷主站系统准确采集网荷终端数据、为源 网荷主站系统做出正确控制策略、安全稳定控制用户负荷线路提供保障。
在一实施例中,网荷终端参数处理方法还包括:根据所述每个网荷终端对应的用户的参数信息,为所述每个网荷终端对应的用户建立用户档案。
在一实施例中,快速准确地为网荷终端对应的用户建立用户档案、自动完成用户配置,实现用户数据的准确采集,为网荷终端对应的用户建立用户档案可以包括单户建档、多户建档、或批量选择建档。
在一实施例中,为所述每个网荷终端对应的用户建立用户档案可以包括如下两种场景:
场景一、在主站中未存储有该用户的用户档案的情况下,则根据该用户的参数信息,为该用户新建用户档案。
场景二、在主站中存储有该用户的用户档案的情况下,发出告警信息和差异提示信息,以基于人工触发的建档指令更新该用户的用户档案。
在一实施例中,在主站中未存储有该用户的用户档案,例如对于正在进行现场调试的用户,则根据该用户的参数信息,为该用户新建用户档案,示例性地,主站可以实现在一分钟内完成一户建档,大大提高了主站建档维护的效率。若主站中存储有该用户的用户档案,例如对于已有档案的存量用户,当选择主站自动建档操作时,则发出告警信息和差异提示信息,即给出告警提示、差异提示信息,指出终端与主站档案之间的差异,运维人员通过人工确认后选择是否建档,增加了人机操作的友好互动功能。本实施例的技术方案实现了自动一键建档,解决了在网荷终端安装及调试时传递核对参数的麻烦,确保了主站与网荷终端参数的同步,解决了网荷终端参数与主站档案不一致的问题。
在一实施例中,该方法还包括:将每个网荷终端对应的用户的用户档案参数信息下载到所述每个网荷终端。
在一实施例中,将主站的档案参数下载到用户侧,对于终端CPU板件发生故障、板件损坏等异常情况时,将用户档案参数信息下载到网荷终端实现了远程备份参数信息的下载,减少了现场参数丢失需重新找回的麻烦,远程下载还解决了主站与终端参数不一致的问题,对于迁移用户、重建用户等都具有实用意义。通过将自动下载的参数信息进行封装,通讯发送给网荷终端,并根据网 荷终端回复的报文确认网荷终端是否下载成功,解决了运行维护中的网荷终端参数丢失,网荷终端参数设置困难的问题,实现了网荷终端参数的自动同步。
本实施例提供一种主站,图2是一实施例提供的一种主站的示意图。参见图2,该主站2包括:自动召测参数模块21、自动比对参数模块22和自动建档参数模块23;
自动召测参数模块21,设置为接收至少一个网荷终端中每个网荷终端上传的所述每个网荷终端对应的用户的参数信息,其中,参数信息包括用户线路参数、控制参数、用户配置参数、采集参数、描述参数中的至少一个。
自动比对参数模块22,设置为将所述每个网荷终端对应的用户的参数信息与自动建档参数模块中存储的所述用户的用户档案参数信息进行比对;在所述每个网荷终端对应的用户的参数信息与自动建档参数模块中存储的所述用户的用户档案参数信息不一致的情况下,根据所述每个网荷终端对应的用户的参数信息,修改所述用户的用户档案参数信息中不一致的参数。
在一实施例中,所述用户档案参数信息包括用户档案线路参数、用户档案控制参数、用户档案用户配置参数、用户档案采集参数、用户档案描述参数中的至少一个。
在一实施例中,自动建档参数模块23,设置为根据所述每个网荷终端对应的用户的参数信息,为所述每个网荷终端对应的用户建立用户档案。
在一实施例中,自动建档参数模块23,是设置为在自动建档参数模块中未存储有该用户的用户档案的情况下,则根据该用户的参数信息,为该用户新建用户档案;以及在自动建档参数模块中存储有该用户的用户档案的情况下,发出告警信息和差异提示信息,以基于人工触发的建档指令更新该用户的用户档案。
在一实施例中,该主站2还包括自动参数下载模块24,自动参数下载模块24设置为将每个网荷终端对应的用户的用户档案参数信息下载到所述每个网荷终端。
在一实施例中,该主站2还包括自动参数上传协议模块25,自动参数上传 协议模块25,设置为解析每个网荷终端上传的参数信息,获得通讯上传的至少一类参数信息数据,并校验每个网荷终端上传的数据,在网荷终端数据校验不通过的情况下,进行报错提醒。
本实施例提供一种网荷终端参数处理系统,图3是一实施例提供的一种网荷终端参数处理系统的示意图。参见图3,该系统100包括:上述实施例中的任一种主站2,以及至少一个网荷终端3。
在一实施例中,每个网荷终端3包括参数上传模块31和参数下载更新模块32。
参数上传模块31,设置为上传所述每个网荷终端3对应的用户的参数信息至主站2,其中,参数信息包括用户线路参数、控制参数、用户配置参数、采集参数、描述参数中的至少一个。
参数下载更新模块32,设置为下载主站存储的所述每个网荷终端3对应的用户的用户档案参数信息,以实现所述每个网荷终端参数的变更。
本实施例提供的网荷终端参数处理系统,包括上述实施例中任一种主站2,以及至少一个网荷终端3,解决了因配置错误导致的主站数据采集缺陷、主站控制设置错误引起用户开关误跳的问题,提升了源网荷系统的安全性、可靠性。
在上述实施例的基础上,本实施例还提供一种计算机可读存储介质,计算机可读存储介质上存储有计算机程序,当存储介质中的指令由一种网荷终端参数处理系统的处理器执行时,实现上述任意实施例中的一种网荷终端参数处理方法,该方法包括:接收至少一个网荷终端中每个网荷终端上传所述每个网荷终端对应的用户的参数信息,其中,参数信息包括用户线路参数、控制参数、用户配置参数、采集参数、描述参数中的至少一个;将所述每个网荷终端对应的用户的参数信息与主站中存储的该用户的用户档案参数信息进行比对;在所述每个网荷终端对应的用户的参数信息与主站中存储的该用户的用户档案参数信息不一致的情况下,根据所述每个网荷终端对应的用户的参数信息,修改该用户的用户档案参数信息中不一致的参数。
本实施例所提供的一种包含可执行指令的计算机可读存储介质,可执行指令不限于如上所述的网荷终端参数处理方法操作,还可以执行上述任意实施例所提供的网荷终端参数处理方法中的相关操作,且具备相应的功能和有益效果。
通过以上关于实施方式的描述,所属领域的技术人员可以清楚地了解到,本公开可借助软件及通用硬件来实现,也可以通过硬件实现。基于这样的理解,本公开的技术方案可以以软件产品的形式体现出来,该软件产品可以存储在可读存储介质中,如网荷终端参数处理系统的只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、闪存(FLASH)等,包括多个指令用以使得一台网荷终端参数处理系统设备执行上述任意实施例所述的一种网荷终端参数处理方法。

Claims (10)

  1. 一种网荷终端参数处理方法,应用于主站,包括:
    接收至少一个网荷终端中每个网荷终端上传的所述每个网荷终端对应的用户的参数信息,其中,所述参数信息包括用户线路参数、控制参数、用户配置参数、采集参数以及描述参数中的至少一个;
    将所述每个网荷终端对应的用户的参数信息与所述主站中存储的所述用户的用户档案参数信息进行比对;
    在所述每个网荷终端对应的用户的参数信息与所述主站中存储的所述用户的用户档案参数信息不一致的情况下,根据所述每个网荷终端对应的用户的参数信息,修改所述用户的用户档案参数信息中不一致的参数。
  2. 根据权利要求1所述的方法,还包括:
    根据所述每个网荷终端对应的用户的参数信息,为所述每个网荷终端对应的用户建立用户档案。
  3. 根据权利要求2所述的方法,其中,所述为所述每个网荷终端对应的用户建立用户档案,包括:
    在所述主站中未存储有所述用户的用户档案的情况下,根据所述用户的参数信息,为所述用户新建用户档案;
    在所述主站中存储有所述用户的用户档案的情况下,发出告警信息和差异提示信息,以基于人工触发的建档指令更新所述用户的用户档案。
  4. 根据权利要求1、2或3所述的方法,还包括:
    将每个网荷终端对应的用户的用户档案参数信息下载到所述每个网荷终端。
  5. 一种主站,包括:自动召测参数模块、自动比对参数模块和自动建档参数模块;
    所述自动召测参数模块,设置为接收至少一个网荷终端中每个网荷终端上传的所述每个网荷终端对应的用户的参数信息,其中,所述参数信息包括用户线路参数、控制参数、用户配置参数、采集参数以及描述参数中的至少一个;
    所述自动比对参数模块,设置为将所述每个网荷终端对应的用户的参数信 息与所述自动建档参数模块中存储的所述用户的用户档案参数信息进行比对;在所述每个网荷终端对应的用户的参数信息与所述自动建档参数模块中存储的所述用户的用户档案参数信息不一致的情况下,根据所述每个网荷终端对应的用户的参数信息,修改所述用户的用户档案参数信息中不一致的参数。
  6. 根据权利要求5所述的主站,其中,
    所述自动建档参数模块,设置为根据所述每个网荷终端对应的用户的参数信息,为所述每个网荷终端对应的用户建立用户档案。
  7. 根据权利要求6所述的主站,其中,
    所述自动建档参数模块,是设置为在所述自动建档参数模块中未存储有所述用户的用户档案的情况下,根据所述用户的参数信息,为所述用户新建用户档案;以及在所述自动建档参数模块中存储有所述用户的用户档案的情况下,发出告警信息和差异提示信息,以基于人工触发的建档指令更新所述用户的用户档案。
  8. 根据权利要求5、6或7所述的主站,还包括:自动参数下载模块;
    所述自动参数下载模块,设置为将每个网荷终端对应的用户的用户档案参数信息下载到所述每个网荷终端。
  9. 一种网荷终端参数处理系统,包括:具有如权利要求5-8中任一所述的主站,以及至少一个网荷终端。
  10. 根据权利要求9所述的系统,其中,每个网荷终端包括:参数上传模块和参数下载更新模块;
    所述参数上传模块,设置为上传所述每个网荷终端对应的用户的参数信息至所述主站,其中,所述参数信息包括用户线路参数、控制参数、用户配置参数、采集参数、描述参数中的至少一个;
    所述参数下载更新模块,设置为下载所述主站存储的所述每个网荷终端对应的用户的用户档案参数信息,以实现所述每个网荷终端参数的变更。
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