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1:
[发明]
【中文】动态调整Word2Vec模型词典的方法、装置、介质及电子设备 【EN】Method, device, medium and electronic equipment for dynamically adjusting Word2Vec model dictionary
申请号:
201911106491.7
公开号:CN110852077A 主分类号:G06F40/242
申请人:
【中文】泰康保险集团股份有限公司
;
泰康资产管理有限责任公司【EN】Taikang Insurance Group Limited by Share Ltd
;
Taikang Asset Management Co., Ltd.
申请日:2019.11.13 公开日:2020.02.28
发明人:
【中文】崔勇
;
杨雪松
;
杨光【EN】Cui Yong
;
Yang Xuesong
;
Yang Guang
摘要:【中文】本发明实施例提供了一种动态调整Word2Vec模型词典的方法、装置、介质及电子设备,该方法包括:读取Word2Vec模型词典中的词汇列表、词索引和词向量矩阵;将待添加词汇添加到词汇列表中且将待添加词汇对应的词向量添加到词向量矩阵中,在词索引中添加与待添加词汇对应的索引号;将待删除词汇从词汇列表中删除且将待删除词汇对应的词向量从词向量矩阵中删除,将待删除词汇对应的索引号从词索引中删除,调整词索引使得经调整后的词索引中的索引号连续。本发明实施例的技术方案解决了目前的调整Word2Vec模型词典的过程效率低的问题,以及难以根据用户的需求针对性地在Word2Vec模型词典中增加、删除特定的词汇等问题。 【EN】The embodiment of the invention provides a method, a device, a medium and electronic equipment for dynamically adjusting a Word2Vec model dictionary, wherein the method comprises the following steps: reading a vocabulary list, a Word index and a Word vector matrix in a Word2Vec model dictionary; adding the vocabulary to be added into the vocabulary list, adding the word vector corresponding to the vocabulary to be added into the word vector matrix, and adding the index number corresponding to the vocabulary to be added into the word index; deleting the vocabulary to be deleted from the vocabulary list, deleting the word vector corresponding to the vocabulary to be deleted from the word vector matrix, deleting the index number corresponding to the vocabulary to be deleted from the word index, and adjusting the word index to ensure that the index numbers in the adjusted word index are continuous. The technical scheme of the embodiment of the invention solves the problems that the efficiency of the current process for adjusting the Word2Vec model dictionary is low, and the specific vocabulary is difficult to be added or deleted in the Word2Vec model dictionary in a targeted manner according to the requirements of users.
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2:
[发明]
【中文】数据处理方法、系统及电子设备 【EN】Data processing method and system and electronic equipment
申请号:
201911179107.6
公开号:CN111047353A 主分类号:G06Q30/02
申请人:
【中文】泰康保险集团股份有限公司
;
泰康资产管理有限责任公司【EN】TAIKANG INSURANCE GROUP Co.,Ltd.
;
TAIKANG ASSET MANAGEMENT Co.,Ltd.
申请日:2019.11.27 公开日:2020.04.21
发明人:
【中文】崔勇
;
杨光
;
杨雪松【EN】Cui Yong
;
Yang Guang
;
Yang Xuesong
摘要:【中文】本发明实施例提供了一种数据处理方法、系统、介质及电子设备,该方法包括:由计时装置确定是否到达统计时间点,在到达统计时间点时向计算装置发送到达该统计时间点的通知;由所述计算装置响应于接收到所述通知,基于该统计时间点前预定时段内的新闻文本所对应的情感倾向得分,计算该统计时间点所对应的情绪分数;由所述计算装置根据多个统计时间点所对应的情绪分数,生成情绪走势并发送给展示装置;由所述展示装置展示所生成的情绪走势。本发明实施例的技术方案提高了市场情绪走势分析的准确性,为市场投资决策提供更准确的客观判断依据。 【EN】The embodiment of the invention provides a data processing method, a system, a medium and electronic equipment, wherein the method comprises the following steps: determining, by the timing device, whether a statistical time point is reached, upon reaching the statistical time point, sending a notification to the computing device of the arrival at the statistical time point; calculating, by the computing device and in response to receiving the notification, an emotional score corresponding to the statistical time point based on the emotional tendency score corresponding to the news text in a predetermined period before the statistical time point; generating an emotion trend by the computing device according to the emotion scores corresponding to the plurality of statistical time points and sending the emotion trend to the display device; displaying, by the display device, the generated emotional tendency. The technical scheme of the embodiment of the invention improves the accuracy of market emotion trend analysis and provides more accurate objective judgment basis for market investment decision.
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3:
[发明]
【中文】一种安全节能的冶炼炉炉体及采用该炉体的冶炼装置 【EN】Safe and energy-saving smelting furnace body and smelting device adopting same
申请号:
201911185544.9
公开号:CN110937906A 主分类号:C04B35/66
申请人:
【中文】郑州市振峰矿山机器有限公司【EN】Zhengzhou Zhenfeng Mining Machinery Co., Ltd
申请日:2019.11.27 公开日:2020.03.31
发明人:
【中文】崔晓天
;
崔晓敬
;
王杨【EN】Cui Xiaotian
;
Cui Xiaojing
;
Wang Yang
摘要:【中文】本发明公开了一种安全节能的冶炼炉炉体及采用该炉体的冶炼装置,属于冶炼设备技术领域。本发明的安全节能的冶炼炉炉体,包括壳体以及设置在壳体内的内衬,所述内衬包括耐火砖层,所述耐火砖层由莫来石轻质砖制成,所述莫来石轻质砖主要由如下重量份的原料制成:氧化铝骨料40‑55份,煤矸石15‑20份、粉煤灰5‑10份、碳化硅3‑8份、膨胀剂3‑8份、结合剂8‑20份、造孔剂5‑10份;所述氧化铝骨料中氧化铝含量为40‑100%;膨胀剂为红柱石、蓝晶石、硅线石中的至少一种;结合剂为黏土、羧甲基纤维素钠中的至少一种;造孔剂为石墨、聚乙烯、聚丙烯、聚苯乙烯中的至少一种。本发明的安全节能的冶炼炉炉体稳定性高,炉体不易烧透,施工成本低。 【EN】The invention discloses a safe and energy-saving smelting furnace body and a smelting device using the same, and belongs to the technical field of smelting equipment. The safe and energy-saving smelting furnace body comprises a shell and a lining arranged in the shell, wherein the lining comprises a refractory brick layer, the refractory brick layer is made of mullite light bricks, and the mullite light bricks are mainly made of the following raw materials in parts by weight: 40-55 parts of alumina aggregate, 15-20 parts of coal gangue, 5-10 parts of fly ash, 3-8 parts of silicon carbide, 3-8 parts of expanding agent, 8-20 parts of bonding agent and 5-10 parts of pore-forming agent; the content of alumina in the alumina aggregate is 40-100%; the expanding agent is at least one of andalusite, kyanite and sillimanite; the binder is at least one of clay and sodium carboxymethyl cellulose; the pore-forming agent is at least one of graphite, polyethylene, polypropylene and polystyrene. The safe and energy-saving smelting furnace has the advantages of high furnace body stability, difficult furnace body burnthrough and low construction cost.
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4:
[发明]
【中文】偏光片、LCD屏幕和OLED屏幕 【EN】Polarizer, LCD screen and OLED screen
申请号:
202010102685.6
公开号:CN111239883A 主分类号:G02B5/30
申请人:
【中文】京东方科技集团股份有限公司
;
成都京东方光电科技有限公司【EN】BOE TECHNOLOGY GROUP Co.,Ltd.
;
CHENGDU BOE OPTOELECTRONICS TECHNOLOGY Co.,Ltd.
申请日:2020.02.19 公开日:2020.06.05
发明人:
【中文】杨阳
;
陈立强
;
崔国意【EN】Yang Yang
;
Chen Liqiang
;
Cui Guoyi
摘要:【中文】本申请公开了一种偏光片、LCD屏幕和OLED屏幕,偏光片包括透光基板,透光基板上下表面分别设有第一凹槽和第二凹槽,第一凹槽和第二凹槽相对设置,透光基板上下表面分别包括有偏光区和非偏光区,透光基板表面在偏光区的位置涂覆有二向色性物质,透光基板表面设有第一凹槽和第二凹槽的位置为非偏光区,透光基板上表面设有第一平坦层,透光基板下表面设有第二平坦层,第一平坦层和第二平坦层均覆盖偏光区和非偏光区设置。根据本申请实施例提供的技术方案,通过在透光基板上设置相对的凹槽,使得偏光片在凹槽的位置形成高透过非偏光的区域,使得偏光片的偏光区域和非偏光区域之间没有任何断差,并且非偏光区域没有裂纹,提高了偏光片的性能。 【EN】The application discloses a polaroid, LCD screen and OLED screen, the polaroid includes the printing opacity base plate, the surface is equipped with first recess and second recess respectively about the printing opacity base plate, first recess and second recess set up relatively, the surface is including polarizing area and non-polarizing area respectively about the printing opacity base plate, the position coating in the polarizing area of printing opacity base plate surface has dichroism material, the position that the printing opacity base plate surface was equipped with first recess and second recess is the non-polarizing area, the printing opacity base plate upper surface is equipped with first flat layer, the printing opacity base plate lower surface is equipped with the second flat layer, first flat layer and the setting of non-polarizing area are all covered on the flat layer of second. According to the technical scheme provided by the embodiment of the application, the opposite grooves are formed in the transparent substrate, so that the polaroid forms a high-transmission unpolarized area at the positions of the grooves, no aberration exists between the polarized area and the unpolarized area of the polaroid, no crack exists in the unpolarized area, and the performance of the polaroid is improved.
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5:
[发明]
【中文】台车式硅碳棒高温电阻炉及操作方法 【EN】Trolley type silicon carbide rod high-temperature resistance furnace and operation method
申请号:
201911073261.5
公开号:CN110849140A 主分类号:F27B9/26
申请人:
【中文】哈尔滨铭阳炉业有限公司【EN】HARBIN MINGYANG FURNACE INDUSTRY CO., LTD.
申请日:2019.11.05 公开日:2020.02.28
发明人:
【中文】崔宇
;
胡阳【EN】Cui Yu
;
Hu Yang
摘要:【中文】本发明涉及一种台车式硅碳棒高温电阻炉及操作方法,包括炉门、炉体、台车、双作用翻转密封机构,所述炉门与炉体相配合,所述炉体由内侧的低水泥耐火浇注料、耐火纤维炉衬和外侧的钢结构炉体组成,低水泥耐火浇注料位于炉体侧墙的下部、炉体后墙的下部和炉口,耐火纤维炉衬位于炉顶、炉体侧墙和炉体后墙的中上部,低水泥耐火浇注料底部具有支撑座;所述炉体内设有台车,采用硅碳棒加热,炉温均匀性好于火焰炉,提高产品热加工质量,密封压条向上翻转至水平状态,可实现台车与炉体之间的密封,向下翻转至竖直状态,可形成室式炉膛,以免造成炉膛温度快速下降,从而延缓二氧化硅皮膜氧化,延长了硅碳棒的使用寿命。 【EN】The invention relates to a trolley type silicon-carbon rod high-temperature resistance furnace and an operation method, and the furnace comprises a furnace door, a furnace body, a trolley and a double-acting turnover sealing mechanism, wherein the furnace door is matched with the furnace body; the furnace body is internally provided with the trolley, the silicon carbide rod is adopted for heating, the uniformity of the furnace temperature is better than that of a flame furnace, the hot processing quality of a product is improved, the sealing pressing strip is upwards turned to be in a horizontal state, the sealing between the trolley and the furnace body can be realized, the trolley is downwards turned to be in a vertical state, and a chamber type hearth can be formed so as to prevent the temperature of the hearth from being rapidly reduced, so that the oxidation of a silicon dioxide involucra is delayed, and the service life of the silicon carbide rod is prolonged.
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6:
[发明]
【中文】基于数字计算芯片实现的正弦函数计算方法和装置 【EN】Sine function calculation method and device based on digital calculation chip
申请号:
201910959505.3
公开号:CN110865791A 主分类号:G06F7/548
申请人:
【中文】北京临峰科技有限责任公司【EN】Beijing Linfeng Technology Co., Ltd
申请日:2019.10.10 公开日:2020.03.06
发明人:
【中文】杨晓锋
;
崔延光【EN】Yang Xiaofeng
;
Cui Yang
uang
摘要:【中文】本发明实施例公开了一种基于数字计算芯片实现的正弦函数计算方法和装置,其中,所述方法包括:首先在1/4正弦函数的横坐标[0,π/2]取值范围内选取插值点,根据所述插值点以及预先获得的精度信息,确定多项式系数;基于所述多项式系数构建的五阶多项式,并利用该五阶多项式逼近正弦函数,获得所述正弦函数的定义域取值范围在[0,π/2]的函数值;进一步根据所述正弦函数的对称性,获得所述正弦函数在所述定义域取值范围内的函数值。采用本发明所述的基于数字计算芯片实现的正弦函数计算方法,能够将基于五阶多项式的迭代结果转化为对应待求相位的正弦函数值,从而提高在数字计算芯片中正弦函数的计算速度和精度。 【EN】The embodiment of the invention discloses a sine function calculation method and a device based on a digital calculation chip, wherein the method comprises the following steps: firstly, selecting an interpolation point in the value range of the abscissa [0, pi/2 ] of the 1/4 sine function, and determining a polynomial coefficient according to the interpolation point and precision information obtained in advance; a fifth-order polynomial constructed based on the polynomial coefficient is utilized to approximate a sine function, and a function value of which the value range of a definition domain of the sine function is [0, pi/2 ] is obtained; and further obtaining a function value of the sine function in the value range of the definition domain according to the symmetry of the sine function. The sine function calculation method based on the digital calculation chip can convert the iteration result based on the fifth-order polynomial into the sine function value corresponding to the phase to be solved, thereby improving the calculation speed and the calculation precision of the sine function in the digital calculation chip.
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7:
[发明]
【中文】一种钢铁企业温室气体排放监测系统及方法 【EN】System and method for monitoring greenhouse gas emission of iron and steel enterprise
申请号:
201911346737.8
公开号:CN110866856A 主分类号:G06Q50/26
申请人:
【中文】赫普能源环境科技有限公司【EN】Hep Energy and Environment Technology Co.,Ltd.
申请日:2019.12.24 公开日:2020.03.06
发明人:
【中文】崔华
;
杨豫森
;
陈辉【EN】Cui Hua
;
Yang Yusen
;
Chen Hui
摘要:【中文】本发明公开了一种钢铁企业温室气体排放监测系统及方法,系统包括CO
2
及其他温室气体实时在线监测模块、生产过程及固碳产品碳排放量监测模块、能耗换算CO
2
排放量计算模块、综合CO
2
排放量监测平台,综合CO
2
排放量监测平台接收所述CO
2
实时在线监测模块、其他温室气体监测模块和能耗换算CO
2
排放量计算模块传输的数据并据此计算出钢铁企业实时综合CO
2
排放量。利用本发明可以为钢铁行业等高耗能企业的碳排放量监控和未来碳排放权交易打下基础,也为未来国内环保部门监测钢铁企业的碳排放量提供监测手段。 【EN】The invention discloses a system and a method for monitoring greenhouse gas emission of iron and steel enterprises, wherein the system comprises CO
2
Other greenhouse gases real-time on-line monitoring module, production process and carbon fixing product carbon emission monitoring module and energy consumption conversion CO
2
Emission calculation module and comprehensive CO
2
Emission monitoring platform, integrated CO
2
The emission monitoring platform receives the CO
2
Real-time on-line monitoring module, other greenhouse gas monitoring modules and energy consumption conversion CO
2
The data transmitted by the emission calculation module and the real-time comprehensive CO of the iron and steel enterprise are calculated according to the data
2
And (4) discharging the amount. The invention can lay a foundation for monitoring the carbon emission of high energy-consuming enterprises in the iron and steel industry and the like and trading the carbon emission right in the future, and provides a monitoring means for monitoring the carbon emission of the iron and steel enterprises by domestic environmental protection departments in the future.
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8:
[发明]
【中文】一种水泥厂温室气体排放监测系统及方法 【EN】Cement plant greenhouse gas emission monitoring system and method
申请号:
201911346738.2
公开号:CN110866857A 主分类号:G06Q50/26
申请人:
【中文】赫普能源环境科技有限公司【EN】Hep Energy and Environment Technology Co.,Ltd.
申请日:2019.12.24 公开日:2020.03.06
发明人:
【中文】崔华
;
杨豫森
;
陈辉【EN】Cui Hua
;
Yang Yusen
;
Chen Hui
摘要:【中文】本发明公开了一种水泥厂温室气体排放监测系统及方法,系统包括CO
2
实时在线监测模块用于实时监测水泥厂内烟囱排放烟气中的CO
2
浓度并据此换算得到CO
2
实时排放量,然后传输至综合CO
2
排放量监测平台;其他温室气体监测模块用于实时监测水泥厂内烟囱排放烟气中除CO
2
以外的其他温室气体浓度并传输至综合CO
2
排放量监测平台;能耗换算CO
2
排放量计算模块用于根据水泥厂净购入使用的电力和热力所对应的能耗计算出CO
2
排放量;综合CO
2
排放量监测平台用于接收所述CO
2
实时在线监测模块、其他温室气体监测模块和能耗换算CO
2
排放量计算模块传输的数据并据此计算出水泥厂实时综合CO
2
排放量。 【EN】The invention discloses a system and a method for monitoring greenhouse gas emission of a cement plant, wherein the system comprises CO
2
The real-time online monitoring module is used for monitoring CO in flue gas discharged by a chimney in a cement plant in real time
2
The concentration is converted to obtain CO
2
Real-time emission, then transferred to integrated CO
2
A discharge amount monitoring platform; other greenhouse gas monitoring modules are used for monitoring CO removal in flue gas discharged from chimney in cement plant in real time
2
Other greenhouse gas concentrations than CO and delivery to the integrated CO
2
A discharge amount monitoring platform; energy consumption conversion of CO
2
The emission calculation module is used for calculating CO according to the energy consumption corresponding to the electric power and the heat power which are used for net purchase of the cement plant
2
Discharge capacity; integrated CO
2
The emission monitoring platform is used for receiving the CO
2
Real-time on-line monitoring module, other greenhouse gas monitoring modules and energy consumption conversion CO
2
The data transmitted by the emission calculation module is calculated according to the data and the real-time comprehensive CO of the cement plant is calculated
2
And (4) discharging the amount.
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9:
[发明]
【中文】一种增大自旋轨道耦合的方法和晶体管 【EN】Method for increasing spin-orbit coupling and transistor
申请号:
202010050900.2
公开号:CN110875182A 主分类号:H01L21/335
申请人:
【中文】中科芯电半导体科技(北京)有限公司【EN】Zhongke Core Semiconductor Technology (Beijing) Co., Ltd.
申请日:2020.01.17 公开日:2020.03.10
发明人:
【中文】张杨
;
崔利杰【EN】Zhang Yang
;
Cui Lijie
摘要:【中文】本发明公开了一种增大自旋轨道耦合的方法和晶体管,该方法是采用分子束外延或金属有机物化学气相沉积的方式,在晶体管In
x
Ga
1‑x
As量子阱沟道层中使In组分的含量线性渐变增加,相应的,Ga组分的含量线性渐变减少。所述晶体管包括InP衬底,以及自InP衬底上依次外延生长的InAlAs缓冲层、In
x
Ga
1‑x
As量子阱沟道层、InAlAs空间隔离层、Si delta掺杂层、InAlAs势垒层和InGaAs帽层,其中,所述In
x
Ga
1‑x
As量子阱沟道层中In组分线性渐变增加。通过使用沟道线性In组分渐变来增大半导体材料(晶体管)中的自旋轨道耦合,能更好地调控自旋这个参量,为未来具有自旋轨道耦合的半导体材料能够投入到实际应用做好铺垫。 【EN】The invention discloses a method for increasing spin orbit coupling and a transistor, wherein the method adopts a mode of molecular beam epitaxy or metal organic chemical vapor deposition to carry out In on the transistor
x
Ga
1‑x
The content of the In component In the As quantum well channel layer is increased In a linear gradient mode, and correspondingly, the content of the Ga component is decreased In a linear gradient mode. The transistor comprises an InP substrate, and an InAlAs buffer layer and In which are epitaxially grown In sequence from the InP substrate
x
Ga
1‑x
The InAs quantum well comprises an As quantum well channel layer, an InAlAs space isolation layer, a Si delta doped layer, an InAlAs barrier layer and an InGaAs cap layer, wherein In
x
Ga
1‑x
The In composition In the As quantum well channel layer is increased In a linear gradient manner. By increasing spin-orbit coupling In semiconductor materials (transistors) using channel linear In composition grading, better regulation can be achievedThe parameter of spin lays a foundation for the future practical application of semiconductor materials with spin-orbit coupling.
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10:
[发明]
【中文】全频段太赫兹四倍频模块 【EN】Full-band terahertz quadrupler module
申请号:
201911125718.2
公开号:CN110932672A 主分类号:H03B19/14
申请人:
【中文】东南大学【EN】SOUTHEAST University
申请日:2019.11.18 公开日:2020.03.27
发明人:
【中文】杨非
;
崔铁军【EN】Yang Fei
;
Cui Tiejun
摘要:【中文】本发明公开了一种全频段太赫兹四倍频模块,包括金属上基座(1)、金属下基座(2)、第一匹配波导(3)、芯片通道(4)、第二匹配波导(5)和太赫兹全频段倍频芯片(7);金属上基座(1)和金属下基座(2)形成腔体,第一匹配波导(3)设置在腔体内的输入端,第二匹配波导(5)设置在腔体内的输出端;芯片通道(4)设置在腔体的输入端和输出端之间,芯片通道(4)内设置太赫兹全频段倍频芯片(7);太赫兹全频段倍频芯(7)安装在金属上基座(1)上,太赫兹全频段倍频芯片(7)分别与第一匹配波导(3)和第二匹配波导(5)连接。其可以降低太赫兹波信号发生设备的复杂性,提高相应设备的集成度。 【EN】The invention discloses a full-band terahertz frequency quadrupler module which comprises a metal upper base (1), a metal lower base (2), a first matching waveguide (3), a chip channel (4), a second matching waveguide (5) and a terahertz full-band frequency doubling chip (7); the metal upper base (1) and the metal lower base (2) form a cavity, the first matching waveguide (3) is arranged at the input end in the cavity, and the second matching waveguide (5) is arranged at the output end in the cavity; the chip channel (4) is arranged between the input end and the output end of the cavity, and the terahertz full-band frequency doubling chip (7) is arranged in the chip channel (4); the terahertz full-band frequency doubling chip (7) is installed on the metal upper base (1), and the terahertz full-band frequency doubling chip (7) is connected with the first matching waveguide (3) and the second matching waveguide (5) respectively. The terahertz wave signal generating device can reduce the complexity of terahertz wave signal generating equipment and improve the integration level of corresponding equipment.
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