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申请号:202010096144.7 公开号:CN111256643A 主分类号:G01B21/20
申请人:【中文】陕西科技大学【EN】SHAANXI UNIVERSITY OF SCIENCE & TECHNOLOGY 申请日:2020.02.17 公开日:2020.06.09
摘要:【中文】一种连杆大小头孔圆柱度及孔距综合测量仪,包括底板,底板上连接有机箱,机箱上连接有定位装夹组,机箱内连接有传动组、动力组;定位装夹组包括连接在机箱顶部的下托板,下托板上连接有直线导轨,直线导轨上部连接的直线导轨支架上方连接有气缸,气缸与上托板固连,上托板两侧安装在直线导轨内,上托板下面连接有两个上顶尖;传动组包括两个滚珠丝杠,两个丝杠螺母通过同步传动V带连接,丝杠螺母连接有测头组;动力组包括调距的马达,马达输出轴连接的小带轮和通过V带连接滚珠丝杠上的大带轮;本发明可以实现两个测头组的同步旋转和轴向进给,同时对连杆大小头孔圆柱度进行测量;可实现测头旋转速度和轴向进给速度的调整,测量精确高效。 【EN】A comprehensive measuring instrument for the cylindricity and pitch of a big head hole and a small head hole of a connecting rod comprises a bottom plate, wherein a chassis is connected to the bottom plate, a positioning clamping group is connected to the chassis, and a transmission group and a power group are connected to the chassis; the positioning clamping set comprises a lower supporting plate connected to the top of the case, a linear guide rail is connected to the lower supporting plate, an air cylinder is connected above a linear guide rail bracket connected to the upper portion of the linear guide rail, the air cylinder is fixedly connected with an upper supporting plate, two sides of the upper supporting plate are installed in the linear guide rail, and two upper finials are connected to the lower surface of the upper supporting plate; the transmission set comprises two ball screws, two screw nuts are connected through a synchronous transmission V belt, and the screw nuts are connected with a measuring head set; the power unit comprises a distance-adjusting motor, a small belt wheel connected with the output shaft of the motor and a large belt wheel connected with a ball screw through a V-shaped belt; the invention can realize the synchronous rotation and axial feeding of two measuring head groups and simultaneously measure the cylindricity of the big and small head holes of the connecting rod; the adjustment of the rotating speed and the axial feeding speed of the measuring head can be realized, and the measurement is accurate and efficient.
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申请号:201911229111.9 公开号:CN110866083A 主分类号:G06F16/29
摘要:【中文】本发明公开了一种电力标准结构化地址库的地址稽核方法,涉及电力营销系统领域。由于存量地址的规模巨大,经常是数百万乃至数千万,以及地址结构本身的复杂性,目前缺少一种对地址质量进行有效管控的高效技术支撑手段,导致对于地址期和稽核梳理工作主要以人工为主,周期过长且稽核梳理速度慢。本方法通过对十级电力标准结构化地址库建立地址稽核规则,利用地址地址稽核规则对地址进行检查、扣分,然后进行扣分统计、判断疑似错误地址并进行输出。实现了对标准结构化地址库地址质量的分析,支撑结构化地址库应用深度和广度,可有效提升地址管理人员的工作效率。 【EN】The invention discloses an address auditing method of a power standard structured address library, and relates to the field of power marketing systems. Due to the huge scale of the stock addresses, which are often millions or even tens of millions, and the complexity of the address structure, an efficient technical support means for effectively controlling the address quality is absent at present, so that the address period and the audit carding work are mainly manually performed, the period is too long, and the audit carding speed is slow. The method comprises the steps of establishing an address audit rule for a ten-level power standard structured address library, checking and deducting addresses by using the address audit rule, carrying out deduction statistics, judging suspected error addresses and outputting. The analysis of the address quality of the standard structured address library is realized, the application depth and the application range of the structured address library are supported, and the working efficiency of address management personnel can be effectively improved.
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申请号:201910402884.6 公开号:CN110929974A 主分类号:G06Q10/06
摘要:【中文】本发明公开了基于大数据模型的电力创新人才能力评估方法,涉及能力评估领域。目前,浙江电网正在快速开展着创新型人才队伍的建设工作,目前人才的评估主观性强,不能全面了解员工的特点,不利于人才队伍的选拔和培养工作。本发明包括步骤1)数据采集;2)数据处理;3)构建模型;4)模型结果输出。本技术方案基于浙江电网创新基地员工的基础数据信息、能力评测数据、考核评测数据等数据信息,借助大数据技术和算法模型构建的人才工作能力评估分析方法,深入全面地对员工不同维度的工作能力进行评估分析,有效帮助管理部门决策者科学全面地了解员工队伍的能力情况,根据员工能力评估,开展精准的创新型人才队伍的选拔、培养工作。 【EN】The invention discloses a power innovation talent capability assessment method based on a big data model, and relates to the field of capability assessment. At present, the Zhejiang power grid is developing the construction work of innovative talent teams quickly, the evaluation subjectivity of talents is strong at present, the characteristics of employees cannot be known comprehensively, and the selection and cultivation work of talent teams is not facilitated. The method comprises the steps of 1) data acquisition; 2) processing data; 3) constructing a model; 4) and outputting a model result. According to the technical scheme, based on basic data information, capability evaluation data, assessment evaluation data and other data information of employees in a Zhejiang power grid innovation base, the talent working capability evaluation and analysis method constructed by a big data technology and an algorithm model is used for deeply and comprehensively evaluating and analyzing the working capabilities of the employees in different dimensions, so that decision makers of management departments are effectively helped to scientifically and comprehensively know the capability conditions of staff teams, and accurate selection and culture work of innovative talent teams is carried out according to the staff capability evaluation.
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申请号:201911228976.3 公开号:CN110969358A 主分类号:G06Q10/06
摘要:【中文】本发明公开了一种电力电子渠道运营的风险控制方法,涉及电力运营风控管理领域。在渠道运营领域,传统的风控管理技术方案风控管理手段较少,只能在运营活动过程中进行监控,缺乏行之有效的风控管理措施,遇到恶意薅羊毛等情况,只能采取活动下架等方式处理。本发明通过风控名单管理,风险拦截机制、风险监测机制和制风险预警机制实现对运营活动的事中监控、实时预警,保障活动的顺畅、安全开展,在运营后期对风险信息进行系统全面的分析,形成风险报告,对风控名单及风控策略进行迭代优化,持续改进风控措施,提升风控管理水平,从而从源头控制资金安全,保障运营资金安全和系统稳定,降低了恶意薅羊毛等用户风险行为。 【EN】The invention discloses a risk control method for power electronic channel operation, and relates to the field of power operation wind control management. In the field of channel operation, the traditional wind control management technical scheme has fewer wind control management means, can only monitor in the operation activity process, lacks effective wind control management measures, and can only adopt the mode of activity off-shelf and the like to process when the conditions of malicious wool and the like occur. According to the method, the in-service monitoring and real-time early warning of the operation activities are realized through the wind control list management, the risk interception mechanism, the risk monitoring mechanism and the risk control early warning mechanism, the smooth and safe development of the activities are guaranteed, the risk information is comprehensively analyzed systematically in the later operation stage to form a risk report, the wind control list and the wind control strategy are optimized in an iteration mode, the wind control measures are continuously improved, the wind control management level is improved, the fund safety is controlled from the source, the operation fund safety and the system stability are guaranteed, and the user risk behaviors such as malicious wool are reduced.
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申请号:201911228969.3 公开号:CN111177772A 主分类号:G06F21/62
摘要:【中文】本发明公开了一种用于电力系统掌上电力业务的数据保全方法,涉及数据保全方法领域。当前电力系统的电子数据仅存储在内部服务器,数据没有第三方国家公证机关固化,出现纠纷时难以自证数据真实性,不具有法律效力,自己合法的经济利益难以得到法律保护。本方法首先在客户端进行身份确认;身份确认后,将客户端采集的数据分成结构化数据和非结构化数据并进行加密处理;加密处理的数据存储到数据保全中心;数据保全中心与公证处对接将数据传输至公证处;公证处与法院对接将公证处数据传输法院。本方法对电力业扩业务流程中产生的各节点进行实时固化,并存储在具有数据保全能力的数据保全中心,为后期发生法律纠纷时提供强力的证据链条。 【EN】The invention discloses a data preservation method for palm power business of a power system, and relates to the field of data preservation methods. The electronic data of the current power system is only stored in an internal server, the data is not solidified by a third-party national notarization organ, the authenticity of the data is difficult to self-prove when disputes occur, the legal effectiveness is not available, and the legal economic benefits are difficult to obtain legal protection. Firstly, identity confirmation is carried out on a client; after the identity is confirmed, dividing data collected by the client into structured data and unstructured data and carrying out encryption processing; storing the encrypted data to a data security center; the data security center is in butt joint with the notarization department and transmits data to the notarization department; the notarization department is in butt joint with the court to transmit data of the notarization department to the court. The method is used for solidifying all nodes generated in the electric power business expansion business process in real time, storing the nodes in a data security center with data security capability, and providing a strong evidence chain for legal disputes in the later period.
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申请号:201911177990.5 公开号:CN111126776A 主分类号:G06Q10/06
摘要:【中文】本发明公开了一种基于逻辑回归算法的电费风险防控模型构建方法,属于电力运营技术领域。现有技术不能够对优劣客户进行科学客观的评价方法,进而无法对客户行为提出有效的鼓励或惩罚举措,无法针对性的实行“一户一策”,不利于供电企业权益的维护。本发明提供一种基于客户用电直接行为与关联行为等数据,采用数据挖掘算法,计算输出事实风险客户与潜在风险客户,并分别给予风险评估,进而便于供电企业主动应对电费回收风险,确保电费回收风险可控、能控、在控,保障电费管理规范高效,便于实行“一户一策”,利于供电企业权益的维护,方案切实可行,便于编程实现。 【EN】The invention discloses a method for constructing an electric charge risk prevention and control model based on a logistic regression algorithm, and belongs to the technical field of electric power operation. The prior art cannot carry out a scientific and objective evaluation method on good and bad customers, further cannot provide effective encouragement or punishment measures for customer behaviors, cannot carry out 'one family one strategy' in a targeted manner, and is not beneficial to the maintenance of power supply enterprise rights and interests. The invention provides a method for managing and outputting actual risk customers and potential risk customers based on data such as direct power consumption behaviors and associated behaviors of customers, which is characterized in that a data mining algorithm is adopted to calculate and output actual risk customers and potential risk customers and respectively give risk assessment, so that power supply enterprises can actively deal with power charge recovery risks, the power charge recovery risks are guaranteed to be controllable, controllable and controllable, and in-control, the power charge management is guaranteed to be standard and efficient, one user is facilitated, the method is beneficial to maintaining rights and interests of the power supply enterprises, the scheme is feasible, and programming implementation is facilitated.
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申请号:201911178179.9 公开号:CN111126778A 主分类号:G06Q10/06
摘要:【中文】本发明公开了一种基于层次分析法的酒店能耗评价模型构建方法,属于电力技术领域。现有的方案,评估分级方案不够科学、合理,无法准确评价酒店能耗,进而无法对能耗高的酒店,提出有效的节能方案。本发明利用Pearson相关系数确定酒店能耗的影响因子,充分考虑影响酒店能耗的各种影响因子;然后利用层次分析法建立酒店能耗评价指标模型,对酒店能耗进行定性与定量相结合、多目标、层次化的分析。本发明能够对酒店能耗进行准确评价,评价方案科学、合理,进而能够对能耗高的酒店,提出有效的节能方案。 【EN】The invention discloses a hotel energy consumption evaluation model construction method based on an analytic hierarchy process, and belongs to the technical field of electric power. The existing scheme is not scientific and reasonable in evaluation grading scheme, and cannot accurately evaluate the energy consumption of a hotel, so that an effective energy-saving scheme cannot be provided for the hotel with high energy consumption. According to the method, the influence factors of the hotel energy consumption are determined by utilizing the Pearson correlation coefficient, and various influence factors influencing the hotel energy consumption are fully considered; and then establishing a hotel energy consumption evaluation index model by using an analytic hierarchy process, and performing qualitative and quantitative combined, multi-target and hierarchical analysis on the hotel energy consumption. The invention can accurately evaluate the energy consumption of the hotel, and the evaluation scheme is scientific and reasonable, so that an effective energy-saving scheme can be provided for the hotel with high energy consumption.
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申请号:201910930514.X 公开号:CN110879175A 主分类号:G01N3/08
申请人:【中文】浙江工业大学【EN】ZHEJIANG UNIVERSITY OF TECHNOLOGY 申请日:2019.09.29 公开日:2020.03.13
摘要:【中文】本发明公开了一种钙质砂的可更换加载头式荷载测试仪,所述的支撑机构包括下平台,上平台以及左竖梁和右竖梁和后竖梁,所述的左竖梁、右竖梁和后竖梁的一端分别与所述的上平台固定连接,所述的左竖梁、右竖梁和后竖梁的另一端分别与所述的下平台固定连接;所述的加载机构包括千斤顶、下加载头和上加载头,所述的下加载头可拆卸式固定安装在所述的千斤顶顶盘上,所述的上加载头可拆卸式固定安装在所述的上平台上;所述的检测机构包括压力传感器、CT扫描仪一、CT扫描仪二、CT扫描仪三和控制台,所述的控制台通过外接电源分别与所述的液晶显示器、压力传感器及CT扫描仪一、CT扫描仪二、CT扫描仪三构成闭合电路。 【EN】The invention discloses a replaceable loading head type load tester of calcareous sand, wherein a supporting mechanism comprises a lower platform, an upper platform, a left vertical beam, a right vertical beam and a rear vertical beam, wherein one end of the left vertical beam, one end of the right vertical beam and one end of the rear vertical beam are respectively and fixedly connected with the upper platform, and the other end of the left vertical beam, the other end of the right vertical beam and the other end of the rear vertical beam are respectively and fixedly connected with the lower platform; the loading mechanism comprises a jack, a lower loading head and an upper loading head, the lower loading head is detachably and fixedly arranged on the jack disc, and the upper loading head is detachably and fixedly arranged on the upper platform; the detection mechanism comprises a pressure sensor, a first CT scanner, a second CT scanner, a third CT scanner and a console, wherein the console forms a closed circuit with the liquid crystal display, the pressure sensor, the first CT scanner, the second CT scanner and the third CT scanner through an external power supply.
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申请号:201911177989.2 公开号:CN111126775A 主分类号:G06Q10/06
摘要:【中文】本发明公开了一种基于层次分析法的居民客户价值分级模型构建方法,属于电力技术领域。现有的评估方案直接套用公式进行信用评估计算,无法根据实际情况进行更深层次的影响因素识别与评估,评估分级方案不够科学、合理。本发明采用AHP层次分析法计算客户综合评级得分,对客户价值进行定性与定量相结合、多目标、层次化的分析;能够对客户价值特征进行充分挖掘,评估分级方案更加科学、合理。本发明结合现阶段客户营销服务导向,基于信息情况、交费情况、用电情况、交互情况、成长情况等客户用电历史数据,通过业务调研、专家访谈、挖掘建模等研究方法,从客户信息情况、交费情况、用电情况、交互情况、成长情况等五个维度,来综合评定客户模型得分。 【EN】The invention discloses a method for constructing a resident customer value grading model based on an analytic hierarchy process, and belongs to the technical field of electric power. The existing evaluation scheme directly applies a formula for credit evaluation calculation, so that deeper influence factor identification and evaluation can not be carried out according to actual conditions, and the evaluation grading scheme is not scientific and reasonable. The invention adopts an AHP analytic hierarchy process to calculate the comprehensive rating score of the customer, and carries out qualitative and quantitative combined, multi-target and hierarchical analysis on the value of the customer; the method can fully mine the value characteristics of the customers, and the evaluation grading scheme is more scientific and reasonable. The method combines the marketing service guide of the client at the present stage, and comprehensively evaluates the score of the client model from five dimensions of the client information condition, the payment condition, the electricity consumption condition, the interaction condition, the growth condition and the like through research methods such as business investigation, expert interview, mining modeling and the like based on the client electricity consumption historical data such as the information condition, the payment condition, the electricity consumption condition, the interaction condition, the growth condition and the like.
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申请号:201911177439.0 公开号:CN111062581A 主分类号:G06Q10/06
摘要:【中文】本发明公开了一种基于AHP层次的企业客户高压增值服务体系构建方法,属于电力技术领域。现有方案无法根据实际情况进行更深层次的影响因素识别与评估,评估分级方案不够科学、合理,不能对客户进行精准区分,进而无法满足不同群体的客户需求,无法实现供电服务精益化转变。本发明采用AHP层次分析法对客户用电数据的多维度综合评价;对客户价值进行定性与定量相结合、多目标、层次化的分析;能够对客户价值特征进行充分挖掘,评估分级方案更加科学、合理。进而对客户进行评价分级后,得到客户星级结果,能够有效识别市场价值密度、确定营销策略、调配服务资源。 【EN】The invention discloses an AHP (advanced high-performance packet protocol) level-based enterprise client high-voltage value-added service system construction method, and belongs to the technical field of electric power. The existing scheme cannot carry out deeper influence factor identification and evaluation according to actual conditions, the evaluation grading scheme is not scientific and reasonable enough, and cannot accurately distinguish clients, so that the requirements of clients of different groups cannot be met, and lean transition of power supply service cannot be realized. The invention adopts AHP analytic hierarchy process to carry out multidimensional comprehensive evaluation on the electricity consumption data of the client; carrying out qualitative and quantitative combined, multi-target and hierarchical analysis on the customer value; the method can fully mine the value characteristics of the customers, and the evaluation grading scheme is more scientific and reasonable. And then after evaluating and grading the customers, obtaining a customer star-level result, effectively identifying market value density, determining a marketing strategy and allocating service resources.
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