当前查询到18条专利与查询词 "王国【EN】Zou Jia"相关,搜索用时0.703162秒!排序方式:
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申请号:201911322467.7 公开号:CN111030900A 主分类号:H04L12/28
申请人:【中文】苏州思必驰信息科技有限公司【EN】AI SPEECH Ltd. 申请日:2019.12.20 公开日:2020.04.17
摘要:【中文】本发明公开了一种免验证登录方法、装置及电子设备。该方法的一实施例应用于智能家居控制客户端,所述方法包括:发送绑定请求,以请求智能家居设备对应的操作权限;接收智能家居设备对应的操作权限;将与操作权限对应的设备信息与智能家居控制客户端的账号建立映射关系。本发明实施例的免验证登录方法由于智能家居控制客户端和智能家居服务端采用了同一个SDK接口以进行账号授权打通,从而智能家居控制客户端根据操作权限控制与设备信息对应的智能家居设备,进而能够实现只需要登录一次就能把第三方智能家居技能添加到智能家居控制客户端;不仅避免了二次登录,而且安全快捷,提高了用户的体验性。 【EN】The invention discloses an authentication-free login method, an authentication-free login device and electronic equipment. An embodiment of the method is applied to an intelligent home control client, and the method comprises the following steps: sending a binding request to request an operation authority corresponding to the intelligent household equipment; receiving an operation authority corresponding to the intelligent home equipment; and establishing a mapping relation between the equipment information corresponding to the operation authority and an account of the intelligent home control client. According to the verification-free login method, the intelligent home control client and the intelligent home server adopt the same SDK interface to carry out account authorization and communication, so that the intelligent home control client controls the intelligent home equipment corresponding to the equipment information according to the operation authority, and the third-party intelligent home skill can be added to the intelligent home control client only by logging in once; not only secondary login is avoided, but also safety and rapidness are realized, and the user experience is improved.
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申请号:201911349405.5 公开号:CN111008062A 主分类号:G06F9/451
申请人:【中文】苏州思必驰信息科技有限公司【EN】AI SPEECH Ltd. 申请日:2019.12.24 公开日:2020.04.14
摘要:【中文】本发明公开了一种应用程序APP的界面设置方法、装置、设备及介质,该方法包括:响应于APP管理后台发送的与目标APP对应的界面再配置请求;在界面再配置请求中,提取与目标智能设备匹配的界面再配置参数;根据界面再配置参数,生成与目标智能设备匹配的界面再配置文件。本发明实施例实现了支持绑定多个智能设备的APP界面的自定义设置,避免了开发者设置APP界面时手动修改代码导致的工作量变大的问题,降低了企业针对此类APP的开发成本。 【EN】The invention discloses a method, a device, equipment and a medium for setting an interface of an application program APP, wherein the method comprises the following steps: responding to an interface reconfiguration request which is sent by an APP management background and corresponds to a target APP; extracting interface reconfiguration parameters matched with the target intelligent equipment in the interface reconfiguration request; and generating an interface reconfiguration file matched with the target intelligent equipment according to the interface reconfiguration parameters. The embodiment of the invention realizes the user-defined setting of the APP interface for binding a plurality of intelligent devices, avoids the problem of large workload caused by manually modifying codes when a developer sets the APP interface, and reduces the development cost of enterprises for the APP.
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申请号:201811209907.3 公开号:CN111062507A 主分类号:G06Q10/04
申请人:【中文】中国石油天然气股份有限公司【EN】PetroChina Co.,Ltd. 申请日:2018.10.17 公开日:2020.04.24
摘要:【中文】本发明公开了一种预测新增石油探明储量规模的方法和装置,属于油气资源勘查技术领域。本发明实施例提供的一种预测新增石油探明储量规模的方法,确定多个样本油田在Ti‑p‑Ti年度范围内的每年度的新增石油探明储量和Ti‑p‑1‑Ti年度范围内的每年度的石油控制储量,基于第二数据库和第三数据库,确定Ti‑m+1‑Ti年度范围内的累年占比系数;基于第四数据库和第一数据库,确定Ti‑p‑1‑Ti‑m年度范围内的累年升级系数;基于第五数据库、累年占比系数和累年升级系数,预测待预测油田在Ti+1‑Ti+m年度范围内的每年度的新增石油探明储量。该方法运用统计学方法,建立新增石油探明储量和石油控制储量之间的数学关系,提供了一种定量预测方法,从而可以科学地预测未来m年的新增石油探明储量的规模。 【EN】The invention discloses a method and a device for predicting the scale of newly-increased oil exploration reserves, belonging to the technical field of oil and gas resource exploration. The method for predicting the newly-increased oil exploration reserve scale provided by the embodiment of the invention determines a plurality of sample oil fields at Ti‑p‑TiNew annual petroleum exploratory reserves and Ti‑p‑1‑TiDetermining a petroleum control reserve per year over a range of years based on the second database and the third databasei‑m+1‑TiA year-to-year percentage coefficient within a year range; determining T based on the fourth database and the first databasei‑p‑1‑Ti‑mAnnual escalation seriesCounting; predicting the oil field to be predicted at T based on the fifth database, the successive year ratio coefficient and the successive year upgrading coefficienti+1‑Ti+mNewly added oil per year in the annual range ascertains reserves. The method establishes a mathematical relationship between the newly added oil exploration reserves and the oil control reserves by using a statistical method, and provides a quantitative prediction method, so that the scale of the newly added oil exploration reserves in the next m years can be scientifically predicted.
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申请号:201911218481.2 公开号:CN111079731A 主分类号:G06K9/20
摘要:【中文】本申请提供一种基于安全帽识别监控系统的配置方法、系统、设备及介质,该系统包括:数据采集模块,用于实时采集视频流;配置模块,用于截取视频流中的截图,根据缩放比例计算截图的中心点或鼠标位置点的坐标信息,利用截图的中心点或鼠标位置点的坐标信息形成任意形状的监测区域,在不同的监控区域对应设置与其匹配的安全帽颜色。通过网络后端对安防或工程建设现场等相关场景的安全帽识别监控系统实现云端配置,能够实时根据需求更改配置,无需工作人员亲自赶赴现场,大大节省了工作人员时间,同时,配置监控系统无需复杂参数设置,通过缩放监控截图简易设置监控区域,大大缩减了配置的难度与工作量,提高了安全帽识别监控系统的配置效率。 【EN】The application provides a configuration method, a system, equipment and a medium based on a safety helmet identification monitoring system, wherein the system comprises the following steps: the data acquisition module is used for acquiring a video stream in real time; the configuration module is used for intercepting the screenshot in the video stream, calculating coordinate information of a central point or a mouse position point of the screenshot according to the scaling, forming monitoring areas in any shape by using the coordinate information of the central point or the mouse position point of the screenshot, and correspondingly setting the colors of the safety helmet matched with the monitoring areas in different monitoring areas. The safety helmet identification monitoring system realizes cloud configuration through a network rear end to the safety helmet identification monitoring system in related scenes such as a security or engineering construction site, can change the configuration in real time according to requirements, does not need workers to rush to the site in person, greatly saves the time of the workers, simultaneously does not need complex parameter setting for the configuration monitoring system, simply sets a monitoring area through zooming a monitoring screenshot, greatly reduces the difficulty and the workload of the configuration, and improves the configuration efficiency of the safety helmet identification monitoring system.
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申请号:201911143676.5 公开号:CN110850454A 主分类号:G01S19/42
摘要:【中文】本发明公开一种吊车在输变电工程现场工作的监控系统及方法,包括吊车和数据处理系统;吊车包括本体,本体上设有旋转台,旋转台的顶部中心处安装有吊臂;吊臂能够伸长,并相对于旋转台旋转改变与旋转台之间的夹角,以调整顶点的高度;旋转台的顶部中心a点处安装有第一GPS接收器;旋转台的表面b点处固定有第二GPS接收器;第二GPS接收器位于吊臂的正下方;吊臂的顶点c点处安装有第三GPS接收器;吊车的驾驶室中安装数据处理系统。本发明采用GPS技术,实现吊车现场作业的动态定位,在开阔场地和输变电工程现场,通过录入特定设备的高清地图坐标,当作业位置超过合理边界时,数据处理系统自动报警提示。 【EN】The invention discloses a monitoring system and a method for the on-site work of a crane in a power transmission and transformation project, wherein the monitoring system comprises the crane and a data processing system; the crane comprises a body, wherein a rotating platform is arranged on the body, and a suspension arm is arranged at the center of the top of the rotating platform; the suspension arm can extend and rotate relative to the rotating platform to change an included angle between the suspension arm and the rotating platform so as to adjust the height of a peak; a first GPS receiver is arranged at the point a of the center of the top of the rotating platform; a second GPS receiver is fixed at a point b on the surface of the rotating platform; the second GPS receiver is positioned right below the suspension arm; a third GPS receiver is arranged at the point c of the top point of the suspension arm; the cab of the crane is provided with a data processing system. The invention adopts GPS technology to realize the dynamic positioning of the field operation of the crane, and the data processing system automatically gives an alarm and prompts when the operation position exceeds a reasonable boundary by inputting the high-definition map coordinates of specific equipment in an open field and a power transmission and transformation project field.
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申请号:201911365996.5 公开号:CN111211935A 主分类号:H04L12/26
摘要:【中文】本发明公开了一种高效应用级并发探测实现方法,网络处理器收到保活请求的定时消息;读取将要向哪个服务器发送保活请求包;查找保活表,键值为保活路径标识;若服务器群被单业务引用时,保活路径标识由服务器群中的服务器和引用业务唯一决定;若服务器群被多业务引用时,保活路径标识仅由服务器决定;若未成功匹配保活表,丢弃消息;若成功匹配保活表,更新该保活路径的状态;构建对应服务器的保活包,并填入保活路径标识,若服务器群被多业务引用时,则在构建的保活包后增加一个位图,用位图标识出所有引用的业务;将上一步骤构建完毕的保活包发送到后端服务器。本发明引入位图标定服务器和业务引用关系,减少探测报文的发送量,提高探测效率。 【EN】The invention discloses a high-efficiency application level concurrent detection implementation method.A network processor receives a timing message of a keep-alive request; reading a keep-alive request packet to which server is to be sent; looking up a keep-alive table, wherein a key value is a keep-alive path identifier; if the server group is referred by the single service, the keep-alive path identification is uniquely determined by the server in the server group and the reference service; if the server group is invoked by multiple services, the keep-alive path identifier is only determined by the server; if the keep-alive table is not successfully matched, discarding the message; if the keep-alive table is successfully matched, updating the state of the keep-alive path; constructing a keep-alive packet corresponding to the server, filling a keep-alive path identifier, if the server group is referred by multiple services, adding a bitmap after the constructed keep-alive packet, and identifying all referred services by using the bitmap; and sending the keep-alive packet constructed in the previous step to a back-end server. The invention introduces the relation between the bitmap calibration server and the service reference, reduces the sending quantity of the detection message and improves the detection efficiency.
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申请号:201911408290.2 公开号:CN111211939A 主分类号:H04L12/26
摘要:【中文】本发明公开了一种基于网络处理器实现流表高效计数的装置和方法,流管理流量进入数据采集设备后,网络处理器进行流表学习,在计数器中写入流表学习时间戳,网络处理器通过计算时间差的方式对流表进行老化,从而提高流表的老化刷新精度和流表采集性能。 【EN】The invention discloses a device and a method for realizing efficient counting of a flow table based on a network processor.
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申请号:201811277218.6 公开号:CN111114851A 主分类号:B64G4/00
申请人:【中文】哈尔滨工业大学【EN】HARBIN INSTITUTE OF TECHNOLOGY 申请日:2018.10.30 公开日:2020.05.08
摘要:【中文】本发明提出一种基于回转电机与冲击式超声波钻同轴的行星表面锚固装置,该锚固装置的三个支撑腿间隔120°均匀设置,支撑足垫设置于支撑腿底部,钻进锚固机构安装于支撑腿内部且一端从支撑足垫穿出;锚固钻进机构的齿条沿支撑腿方向固定连接于支撑腿内部,驱动电机驱动齿轮在齿条上移动带动冲击式超声波钻钻进单元完成钻进与锚固动作。解决了现有技术的小行星探测器着陆后无法快速固定在小行星表面的问题,为了使小行星探测器在小行星表面着陆并与小行星表面建立稳定联接进行取样,本发明提出一种基于回转电机与冲击式超声波钻同轴的行星表面锚固装置,具有自排屑功能,提高了钻进效率,使小行星探测器快速固定在小行星表面。 【EN】The invention provides a planetary surface anchoring device based on a rotary motor and coaxial impact type ultrasonic drill, wherein three supporting legs of the anchoring device are uniformly arranged at intervals of 120 degrees, supporting foot pads are arranged at the bottoms of the supporting legs, a drilling anchoring mechanism is arranged in the supporting legs, and one end of the drilling anchoring mechanism penetrates out of the supporting foot pads; a rack of the anchoring drilling mechanism is fixedly connected inside the supporting leg along the direction of the supporting leg, and a driving motor drives a gear to move on the rack to drive the impact type ultrasonic drilling unit to complete drilling and anchoring actions. The invention provides a planetary surface anchoring device based on a rotary motor and an impact type ultrasonic drill, which solves the problem that a minor planet detector in the prior art cannot be quickly fixed on the surface of a minor planet after being landed, and aims to enable the minor planet detector to land on the surface of the minor planet and to be stably connected with the surface of the minor planet for sampling.
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申请号:201911334106.4 公开号:CN110951644A 主分类号:C12N1/20
摘要:【中文】本发明公开了一种含有多种微生物的大蒜复合菌剂及其制备方法,每1000g大蒜复合菌剂包括枯草芽孢杆菌200~500g、地衣芽孢杆菌200~400g、巨大芽孢杆菌50~200g、侧孢芽孢杆菌20~100g、胶冻芽孢杆菌5~30g。其制备方法包括以下步骤:S1、制备枯草芽孢杆菌粉末;S2、制备地衣芽孢杆菌粉末;S3、制备巨大芽孢杆菌粉末;S4、制备侧孢芽孢杆菌粉末;S5、制备胶冻芽孢杆菌粉末;S6、将上述粉末按比例混合均匀即得大蒜复合菌剂。本发明通过多种微生物之间的相互影响协同作用,增强了大蒜对肥料的吸收利用,减少了无机肥料的使用量,提高了大蒜的种植产量,有效降低了降低大蒜的种植成本,从而提高大蒜种植行业的经济效益。 【EN】The invention discloses a garlic composite microbial agent containing multiple microorganisms and a preparation method thereof, wherein every 1000g of the garlic composite microbial agent comprises 200-500 g of bacillus subtilis, 200-400 g of bacillus licheniformis, 50-200 g of bacillus megaterium, 20-100 g of bacillus laterosporus and 5-30 g of bacillus mucilaginosus. The preparation method comprises the following steps: s1, preparing bacillus subtilis powder; s2, preparing bacillus licheniformis powder; s3, preparing bacillus megaterium powder; s4, preparing bacillus laterosporus powder; s5, preparing bacillus mucilaginosus powder; s6, mixing the above powders uniformly according to a certain proportion to obtain the garlic composite bacterial agent. According to the invention, through the synergistic effect of the interaction among various microorganisms, the absorption and utilization of garlic on the fertilizer are enhanced, the use amount of inorganic fertilizer is reduced, the planting yield of garlic is improved, and the planting cost of garlic is effectively reduced, so that the economic benefit of the garlic planting industry is improved.
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申请号:201911187450.5 公开号:CN110910306A 主分类号:G06T3/00
摘要:【中文】本发明为一种将全景地图中球面坐标转换为直线段的方法,利用其方法使得加密后的点位在视觉上位于直线上。其核心内容是三次坐标变换,第一次是将两点在全景图中的球面坐标转换为空间直角坐标系中的坐标,并在直角坐标系中对线段进行插值加密;第二次是将插值后的坐标转换为球面坐标,第三次是将第二次变换后的坐标系转换到全景地图的球面坐标系中,使得最终结果集在全景图中展现为在同一条直线上的效果。 【EN】The invention relates to a method for converting spherical coordinates in a panoramic map into straight line segments, which is used for enabling encrypted point positions to be visually located on the straight lines. The core content of the method is cubic coordinate transformation, wherein the first time is to convert spherical coordinates of two points in a panoramic image into coordinates in a space rectangular coordinate system and perform interpolation encryption on line segments in the rectangular coordinate system; the second time is to convert the interpolated coordinates into spherical coordinates, and the third time is to convert the coordinate system after the second time of transformation into the spherical coordinate system of the panoramic map, so that the final result set is shown as the effect on the same straight line in the panoramic map.
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