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1:
[发明]
【中文】一种Inlay复合平板模切机 【EN】Compound dull and stereotyped cross cutting machine of Inlay
申请号:
201911391747.3
公开号:CN111015823A 主分类号:B26F1/44
申请人:
【中文】南通海元芯盛智能科技有限公司【EN】Nantong Haiyuan Xinsheng Intelligent Technology Co., Ltd.
申请日:2019.12.30 公开日:2020.04.17
发明人:
【中文】许哲【EN】
Xu Zhe
摘要:【中文】本发明涉及一种Inlay复合平板模切机,包括一对并列分布的Inlay标签复合单元、平板模切单元,在Inlay标签复合单元与平板模切单元之间还设置有一缓冲单元;所述Inlay标签复合单元包括一复合机架,在复合机架上安装有Inlay放卷组件、基材放卷组件、复合牵引组件,所述Inlay放卷组件包括Inlay放卷辊、Inlay收废辊;所述平板模切单元包括一对上下分布的刀模上板、刀模底板以及一成品收卷辊。本发明的优点在于:采用Inlay标签复合单元、平板模切单元、缓冲单元之间的配合,从而实现了对复合后的料带进行平板模切,采用这样的切断方式,无需更换不同尺寸的刀具,就能够适用于各种不同规格的Inlay复合料带的切断。 【EN】The invention relates to an Inlay composite flat die-cutting machine, which comprises a pair of Inlay label composite units and a flat die-cutting unit which are distributed in parallel, wherein a buffer unit is arranged between the Inlay label composite units and the flat die-cutting unit; the Inlay label compounding unit comprises a compounding rack, wherein an Inlay unreeling assembly, a base material unreeling assembly and a compounding traction assembly are arranged on the compounding rack, and the Inlay unreeling assembly comprises an Inlay unreeling roller and an Inlay waste collecting roller; the flat plate die cutting unit comprises a pair of upper cutting die plates, a bottom cutting die plate and a finished product winding roller which are vertically distributed. The invention has the advantages that: the cooperation between the Inlay label compound unit, the flat-plate die cutting unit and the buffer unit is adopted, so that the flat-plate die cutting of the compounded material belt is realized, and the cutting mode is adopted, so that the cutting tool is not required to be replaced with cutters of different sizes, and the cutting tool can be suitable for cutting various Inlay compound material belts of different specifications.
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2:
[发明]
【中文】一种采用生物过滤板一体化处理饲料气体的设备 【EN】Adopt biological filter integration to handle gaseous equipment of fodder
申请号:
202010077585.2
公开号:CN111228927A 主分类号:B01D46/24
申请人:
【中文】许哲【EN】
Xu Zhe
申请日:2020.01.30 公开日:2020.06.05
发明人:
【中文】许哲【EN】
Xu Zhe
摘要:【中文】本发明公开了一种采用生物过滤板一体化处理饲料气体的设备,其结构包括进料螺管、排气柱管、生物分散滤筒、镂空固架、排料管,进料螺管通过铆钉锁紧在生物分散滤筒的右侧,排气柱管垂直螺纹连接在生物分散滤筒的上方,能够通过一型分盘、二型分盘将所有的饲料隔成一部分一部分,分隔成一小部分,再通过摇摆轴不断的将水平方向上的饲料粒分散,通过甩动条的甩动作用将垂直方向上的饲料粒分散,使饲料粒不断处于活动的状态,将其中的气味不断的分散出来,经过一型分盘、二型分盘吸收过滤后在排出,使排出的气体能够不会对环境造成太大的污染。 【EN】The invention discloses a device for integrally treating feed gas by adopting a biological filter plate, which structurally comprises a feeding screw pipe, an exhaust column pipe, a biological dispersion filter cylinder, a hollow fixing frame and a discharge pipe, wherein the feeding screw pipe is locked at the right side of the biological dispersion filter cylinder through rivets, the exhaust column pipe is vertically and threadedly connected above the biological dispersion filter cylinder, all feeds can be divided into one part and one part through a first type plate and a second type plate and are divided into a small part, feed particles in the horizontal direction are continuously dispersed through a swing shaft, the feed particles in the vertical direction are dispersed through the swing action of a swing strip, so that the feed particles are continuously in a movable state, the smell in the feed particles is continuously dispersed, and the feed particles are absorbed and filtered by the first type plate and the second type plate and then discharged, so that the discharged gas can not cause too large pollution to the environment.
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3:
[发明]
【中文】服务区域划分方法、装置、服务器和可读存储介质 【EN】Service area division method, device, server and readable storage medium
申请号:
201911396529.9
公开号:CN111210134A 主分类号:G06Q10/06
申请人:
【中文】北京嘀嘀无限科技发展有限公司【EN】BEIJING DIDI INFINITY TECHNOLOGY AND DEVELOPMENT Co.,Ltd.
申请日:2019.12.30 公开日:2020.05.29
发明人:
【中文】门畅
;
徐哲【EN】Yoshida
;
Xu Zhe
摘要:【中文】本申请提供一种服务区域划分方法、装置、服务器和可读存储介质,该方法通过将待处理区域划分为多个子区域,并对各个子区域进行标记的方式,以得到多种标记组合。并根据在每种标记组合下的历史服务对应的服务信息以及预设函数,选择出目标标记组合。从而根据目标标记组合中各个子区域的标记信息,在待处理区域中划分得到服务区域。该服务区域划分方式,基于历史服务中用户的服务需求,以及划分子区域并标记的方式,基于预设函数的优化即可得到满足需求的标记组合,进而划分得到服务区域。避免了现有技术中人工划分存在的工作量大、对工作人员知识依赖性强的缺陷。 【EN】The application provides a service area dividing method, a service area dividing device, a server and a readable storage medium. And selecting a target mark combination according to the service information corresponding to the historical service under each mark combination and a preset function. Therefore, the service area is obtained by dividing the area to be processed according to the mark information of each sub-area in the target mark combination. The service area dividing mode is based on the service requirements of users in historical service and the mode of dividing sub-areas and marking, and the mark combination meeting the requirements can be obtained based on the optimization of a preset function, so that the service areas are obtained through division. The defects of large workload and strong dependence on the knowledge of workers in manual division in the prior art are overcome.
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4:
[发明]
【中文】一种基于回收装备的废旧移动终端智能识别方法 【EN】Waste mobile terminal intelligent identification method based on recovery equipment
申请号:
201911162646.9
公开号:CN110909682A 主分类号:G06K9/00
申请人:
【中文】北京工业大学【EN】Beijing University of Technology
申请日:2019.11.25 公开日:2020.03.24
发明人:
【中文】汤健
;
王子轩
;
徐喆【EN】Tang Jian
;
Wang Zixuan
;
Xu Zhe
摘要:【中文】本发明公开一种基于回收装备的废旧移动终端智能识别方法,首先,由废旧移动终端的交投用户配合进行开机状态检测,并获取开机前后废旧移动终端的正面图像或不能开机废旧移动终端的正面图像;接着,通过连接数据线进行废旧移动终端接口状态检测,并通过摄像设备获取放置于回收装备检测位置的废旧移动终端背面图像;接着,对接口正常的废旧移动终端进行权限获取和信息提取;最后,进行回收装备网络状态检测,并融合上述多源信息分别进行回收装备网络状态正常和异常模式下废旧移动终端的智能识别。 【EN】The invention discloses a waste mobile terminal intelligent identification method based on recovery equipment, which comprises the steps of firstly, carrying out startup state detection by matching of a delivery user of a waste mobile terminal, and acquiring front images of the waste mobile terminal before and after startup or the front image of the waste mobile terminal which cannot be started; then, detecting the state of the interface of the waste mobile terminal by connecting a data line, and acquiring a back image of the waste mobile terminal placed at the detection position of the recovery equipment by using camera equipment; then, performing authority acquisition and information extraction on the waste mobile terminal with a normal interface; and finally, detecting the network state of the recovery equipment, and fusing the multi-source information to respectively perform intelligent identification on the waste mobile terminal under normal and abnormal modes of the network state of the recovery equipment.
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5:
[发明]
【中文】一种典型城市再生资源智能识别与定价方法 【EN】Typical urban renewable resource intelligent identification and pricing method
申请号:
201911169485.6
公开号:CN110910174A 主分类号:G06Q30/02
申请人:
【中文】北京工业大学【EN】Beijing University of Technology
申请日:2019.11.25 公开日:2020.03.24
发明人:
【中文】汤健
;
王子轩
;
徐喆【EN】Tang Jian
;
Wang Zixuan
;
Xu Zhe
摘要:【中文】本发明公开一种融合本地/远程机制的典型城市再生资源智能识别与定价方法,首先,回收装备对典型城市再生资源图像、条码、形状、重量多元特征信息进行提取,同时对回收终端当前网络状况进行获取;接着,融合所提取的多元特征并结合当前回收装备网络状况对典型城市再生资源进行本地/远程识别;最后,根据识别结果和网络状况进行典型城市再生资源的本地/远程定价。 【EN】The invention discloses a typical urban renewable resource intelligent identification and pricing method fusing a local/remote mechanism, which comprises the steps that firstly, a recovery device extracts typical urban renewable resource images, bar codes, shapes and weight multi-element characteristic information, and simultaneously obtains the current network condition of a recovery terminal; then, fusing the extracted multivariate features and combining the network condition of the current recovery equipment to carry out local/remote identification on the typical urban renewable resources; finally, local/remote pricing of typical urban renewable resources is performed according to the identification result and the network condition.
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6:
[发明]
【中文】一种资源关联关系发现方法、装置和电子设备 【EN】Resource association relationship discovery method and device and electronic equipment
申请号:
201811438120.4
公开号:CN111221699A 主分类号:G06F11/30
申请人:
【中文】北京神州泰岳软件股份有限公司【EN】BEIJING ULTRAPOWER SOFTWARE Co.,Ltd.
申请日:2018.11.27 公开日:2020.06.02
发明人:
【中文】吕佳源
;
许哲【EN】Lv Jiayuan
;
Xu Zhe
摘要:【中文】本发明公开了一种资源关联关系发现方法、装置和电子设备,方法包括:采集多台被管设备上所有应用进程的通信数据、应用进程的配置数据以及监听端口的数据并将采集的应用进程的通信数据、应用进程的配置数据以及监听端口的数据存储到数据库中;对所述数据库中的数据进行汇聚分析,确定应用进程间的通信关系以及应用进程,被管设备和监听端口两两之间的对应关系;根据应用进程间的通信关系以及应用进程,被管设备和监听端口两两之间的对应关系,创建并记录资源间的关联关系。具有部署简单、实时采集,节省成本,能够自动发现云平台同层以及不同层比如IaaS‑PaaS及PaaS‑PaaS之间资源关联关系的优点。 【EN】The invention discloses a method, a device and electronic equipment for discovering a resource association relationship, wherein the method comprises the following steps: collecting communication data of all application processes, configuration data of the application processes and data of monitoring ports on a plurality of managed devices, and storing the collected communication data of the application processes, the configuration data of the application processes and the data of the monitoring ports in a database; carrying out convergence analysis on the data in the database, and determining the communication relationship between the application processes and the corresponding relationship between the application processes, the managed equipment and the monitoring port; and establishing and recording an association relationship between resources according to the communication relationship between the application processes and the corresponding relationship between the managed equipment and the monitoring port of the application processes. The method has the advantages of being simple in deployment, capable of acquiring in real time, saving cost and capable of automatically discovering resource association relations between the same layer and different layers of the cloud platform, such as IaaS-PaaS and PaaS-PaaS.
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7:
[发明]
【中文】嵌入式软件调试控制方法 【EN】Embedded software debugging control method
申请号:
202010044185.1
公开号:CN111240985A 主分类号:G06F11/36
申请人:
【中文】深圳市普博科技有限公司【EN】SHENZHEN PROBE SCIENCE & TECHNOLOGY Co.,Ltd.
申请日:2020.01.15 公开日:2020.06.05
发明人:
【中文】邹庭
;
徐喆
;
尹崇源【EN】Zou Ting
;
Xu Zhe
;
Yin Chongyuan
摘要:【中文】本发明公开了一种嵌入式软件调试控制方法,包括以下步骤:步骤S10,将嵌入式软件在进行调试过程中所出现的观察对象进行定义,定义为整型、浮点、事件和文本类信息;步骤S20,在终端对嵌入式软件进行调试时,获取观察对象在预设时间段内所出现的次数;步骤S30,在与终端相连接的显示屏上根据观察对象在预设时间段内所出现的次数进行图像输出。本发明,对需要观察的内容进行可视化呈现,快速定位查找发现影响软件性能和软件缺陷的地方。 【EN】The invention discloses an embedded software debugging control method, which comprises the following steps: step S10, defining the observation object appearing in the debugging process of the embedded software as integer, floating point, event and text information; step S20, when the terminal debugs the embedded software, the times of the observation object appearing in the preset time period are obtained; and step S30, outputting images according to the times of the observed object appearing in the preset time period on a display screen connected with the terminal. The invention can visually present the content to be observed, and quickly locate and find the places influencing the software performance and the software defects.
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8:
[发明]
【中文】一种停车场轨道式移动充电设备 【EN】Parking area rail mounted removes battery charging outfit
申请号:
202010133471.5
公开号:CN111267652A 主分类号:B60L53/30
申请人:
【中文】许哲【EN】
Xu Zhe
申请日:2020.02.28 公开日:2020.06.12
发明人:
【中文】许哲
;
张超
;
张世锋【EN】
Xu Zhe
;
Zhang Chao
;
Zhang Shifeng
摘要:【中文】本发明所述的停车场轨道式移动充电设备,包括中央控制系统、充电轨道设备和移动充电装置,所述充电轨道设备包括用于存储移动充电装置的库房轨道和用于传输移动装置的传输轨道以及用于检测移动充电装置位置位置传感器,所述移动充电装置包括壳体、设于壳体内的充电桩本体和设于壳体上与所述电轨道设备配合的用于驱动移动充电装置运动的驱动装置以及用于与中央控制系统通信的微控单元,所述充电桩本体电连接有充电枪,所述传输轨道与库房轨道连接且铺设到每个停车位处,所述中央控制系统包括用于管理移动充电装置的投送控制系统和停车管理系统。本发明能够自动投送移动充电装到指定车位,其布置灵活且可实施性极强、经济效益好。 【EN】The track type mobile charging equipment for the parking lot comprises a central control system, charging track equipment and a mobile charging device, wherein the charging track equipment comprises a storehouse track for storing the mobile charging device, a transmission track for transmitting the mobile device and a position sensor for detecting the position of the mobile charging device, the mobile charging device comprises a shell, a charging pile body arranged in the shell, a driving device which is arranged on the shell and matched with the electric track equipment and used for driving the mobile charging device to move and a micro-control unit used for communicating with the central control system, the charging pile body is electrically connected with a charging gun, the transmission track is connected with the storehouse track and is paved at each parking space, and the central control system comprises a delivery control system and a parking management system which are used for managing the mobile charging device. The invention can automatically deliver the mobile charging device to the designated parking space, and has flexible arrangement, strong practicability and good economic benefit.
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9:
[发明]
【中文】电子控制液压式制动助力系统 【EN】Electronic control hydraulic brake power assisting system
申请号:
202010018236.3
公开号:CN111016865A 主分类号:B60T13/14
申请人:
【中文】重庆理工大学【EN】Chongqing University of Technology
申请日:2020.01.08 公开日:2020.04.17
发明人:
【中文】徐哲
;
袁春
;
宾洋【EN】
Xu Zhe
;
Yuan Chun
;
Bin Yang
摘要:【中文】本发明公开了一种电子控制液压式制动助力系统,包括制动助力液压系统和制动助力液压缸体,制动助力液压缸体内腔中设置有第一活塞和第二活塞,制动助力液压缸体内腔中且位于第一活塞与制动助力液压缸体的缸顶之间固定有助力腔隔板以形成有助力腔,第一活塞固定有助力腔推杆穿过助力腔隔板,助力腔推杆端部凹设有主推杆滑孔,制动助力液压缸体的缸顶插入有主推杆且与主推杆滑孔滑动配合,主推杆滑孔内设有位移传感器能够检测主推杆与助力腔推杆的相对位移,制动助力液压系统能够根据位移信号控制助力腔内油液压力,进而实现对第一活塞和第二活塞的控制。本发明结构简单,通过控制助力腔内油液压力实现对活塞的控制,使其方便可靠。 【EN】The invention discloses an electronic control hydraulic brake power-assisted system which comprises a brake power-assisted hydraulic system and a brake power-assisted hydraulic cylinder body, wherein a first piston and a second piston are arranged in an inner cavity of the brake power-assisted hydraulic cylinder body, a power-assisted cavity partition plate is fixed in the inner cavity of the brake power-assisted hydraulic cylinder body and positioned between the first piston and a cylinder top of the brake power-assisted hydraulic cylinder body to form a power-assisted cavity, a power-assisted cavity push rod is fixed on the first piston to penetrate through the power-assisted cavity partition plate, a main push rod slide hole is concavely arranged at the end part of the power-assisted cavity push rod, a main push rod is inserted into the cylinder top of the brake power-assisted hydraulic cylinder body and is in sliding fit with the main push rod slide hole, a displacement sensor is arranged in the main push rod slide hole and can detect the relative displacement of the main push rod and the power-assisted cavity push rod, and the. The invention has simple structure, realizes the control of the piston by controlling the oil pressure in the power-assisted cavity, and is convenient and reliable.
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10:
[发明]
【中文】基于养老机器人的室内场景实时重建跟踪服务方法 【EN】Indoor scene real-time reconstruction tracking service method based on endowment robot
申请号:
201911050511.3
公开号:CN110853135A 主分类号:G06T17/00
申请人:
【中文】天津大学【EN】Tianjin University
申请日:2019.10.31 公开日:2020.02.28
发明人:
【中文】孟昭鹏
;
梁哲
;
徐超
;
胡静【EN】Meng Zhaopeng
;
Liang Zhe
;
Xu Chao
;
Hu Jing
摘要:【中文】本发明公开了一种基于养老机器人的室内场景实时重建跟踪服务方法:手持设备的用户信息导入,去噪滤波,进行初步分析处理;通过无线传输模块将数据传输到数据交互模块中的数据存储区;图像采集模块利用Kinect V2对室内图像采集,包括采集深度信息和颜色信息;重建作业,得到多帧的深度信息,去噪处理;坐标轴变换,获得点云信息;计算刚体变换矩阵,采用ICP算法;图像帧之间重复区域融合,提取关键点云信息,颜色信息加入;规划深度相机运动轨迹;对点云信息进行三角网格化,生成三维模型;放入数据交互模块的信息存储区;确定当前用户,利用Kinect V2跟踪服务,监听用户发出的指令,从而完成相应的服务功能。 【EN】The invention discloses an indoor scene real-time reconstruction tracking service method based on an elderly people robot, which comprises the following steps: importing user information of the handheld device, denoising and filtering, and performing primary analysis processing; transmitting the data to a data storage area in the data interaction module through the wireless transmission module; the image acquisition module acquires an indoor image by using Kinect V2, wherein the acquisition depth information and the color information are included; reconstructing operation to obtain multi-frame depth information, and denoising; coordinate axis transformation is carried out to obtain point cloud information; calculating a rigid body transformation matrix by adopting an ICP (inductively coupled plasma) algorithm; fusing repeated areas among image frames, extracting key point cloud information and adding color information; planning a motion track of the depth camera; carrying out triangular meshing on the point cloud information to generate a three-dimensional model; putting the data into an information storage area of a data interaction module; and determining the current user, tracking the service by using the Kinect V2, and monitoring an instruction sent by the user so as to complete the corresponding service function.
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