当前查询到231条专利与查询词 "Pei Peng"相关,搜索用时0.2968666秒!排序方式:
发明专利:124实用新型: 100外观设计: 7
124 条,当前第 1-10 条 下一页 最后一页 返回搜索页
申请号:201811094867.2 公开号:CN110932875A 主分类号:H04L12/24
申请人:【中文】中兴通讯股份有限公司【EN】ZTE Corp. 申请日:2018.09.19 公开日:2020.03.27
摘要:【中文】本发明公开了一种大数据云计算环境下的告警装置及方法,涉及电信通讯技术领域,其装置包括:一级设备,用于发送告警同步消息和接收告警同步响应;M个二级设备,所述M个二级设备布置成相互独立的N个集合,每个集合中有P个相互独立的二级设备,并从每个集合的二级设备中选取一个作为二级操作维护管理设备;其中,所述一级设备分别与所述N个集合中的二级操作维护管理设备之间建立第一通信通道,并利用所述第一通信通道将所述告警同步消息发送给所述每个集合中的二级操作维护管理设备以及接收所述每个集合中的二级操作维护管理设备根据所述告警同步消息而返回的告警同步响应。 【EN】The invention discloses an alarm device and method under a big data cloud computing environment, relating to the technical field of telecommunication communication, wherein the device comprises: the primary equipment is used for sending alarm synchronous messages and receiving alarm synchronous responses; the M secondary devices are arranged into N sets which are independent from each other, P secondary devices which are independent from each other are arranged in each set, and one secondary device in each set is selected as a secondary operation maintenance management device; and the primary equipment establishes a first communication channel with the secondary operation maintenance management equipment in the N sets respectively, and sends the alarm synchronization message to the secondary operation maintenance management equipment in each set by using the first communication channel and receives an alarm synchronization response returned by the secondary operation maintenance management equipment in each set according to the alarm synchronization message.
详细信息 下载全文

申请号:201911128092.0 公开号:CN110865110A 主分类号:G01N27/327
申请人:【中文】中山大学【EN】SUN YAT-SEN University 申请日:2019.11.18 公开日:2020.03.06
摘要:【中文】本发明公开了共平面栅极氧化物薄膜晶体管生物传感器,包括衬底、绝缘层、源电极、漏电极、栅电极、源漏电极绝缘保护层和表面生物修饰的金属氧化物半导体有源层;所述源电极、漏电极和栅电极的材料相同,且三个电极共平面。其中加入的栅介质层为液态电解质,液态电解质覆盖半导体有源层和部分栅电极,栅电极露出液态电解质的部分供电路连接。本发明栅电极与源电极、漏电极共平面,同材料,可通过一步工艺完成源漏电极和栅电极的沉积,与半导体实现欧姆接触的同时具有工艺简单、可集成化、成本低等优势;同时液态电解质直接与半导体有源层和栅电极接触,其中液态电解质的双电层效应使得器件具有低工作电压和低功耗,有利于生物分子探测。 【EN】The invention discloses a coplanar gate oxide thin film transistor biosensor, which comprises a substrate, an insulating layer, a source electrode, a drain electrode, a gate electrode, a source drain electrode insulating protective layer and a surface biological modified metal oxide semiconductor active layer, wherein the insulating layer is arranged on the substrate; the source electrode, the drain electrode and the gate electrode are made of the same material, and the three electrodes are coplanar. The added gate dielectric layer is liquid electrolyte, the liquid electrolyte covers the semiconductor active layer and part of the gate electrode, and the part of the gate electrode exposed out of the liquid electrolyte is connected with a circuit. The gate electrode, the source electrode and the drain electrode are coplanar, the deposition of the source electrode, the drain electrode and the gate electrode can be completed through one-step process by using the same material, and the ohmic contact with a semiconductor is realized, and meanwhile, the method has the advantages of simple process, integration, low cost and the like; meanwhile, the liquid electrolyte is directly contacted with the semiconductor active layer and the gate electrode, and the double electric layer effect of the liquid electrolyte enables the device to have low working voltage and low power consumption, thereby being beneficial to biomolecule detection.
详细信息 下载全文

申请号:202010039252.0 公开号:CN110855440A 主分类号:H04L9/08
摘要:【中文】本申请提供一种高速量子密钥编码装置及编码方法,涉及量子通信技术领域,所述编码装置包括第一信号光源、第二信号光源、不等臂干涉仪、第一相位调制器、强度调制器、第四分束器;所述第一信号光源与所述不等臂干涉仪依次串联,所述第二信号光源与所述强度调制器依次串联,所述第四分束器包括两个输入端和一个输出端,所述不等臂干涉仪与所述第四分束器的一个输入端连接,所述强度调制器与所述第四分束器的另一个输入端连接;所述不等臂干涉仪包括长臂与短臂,所述第一相位调制器设置于所述长臂或短臂;所述第一信号光源、第二信号光源、第一相位调制器、强度调制器的驱动信号频率大小相同。本申请能以高精度实现超过吉赫兹的高速量子密钥编码。 【EN】The application provides a high-speed quantum key coding device and a coding method, which relate to the technical field of quantum communication, wherein the coding device comprises a first signal light source, a second signal light source, an unequal arm interferometer, a first phase modulator, an intensity modulator and a fourth beam splitter; the first signal light source is sequentially connected with the unequal arm interferometer in series, the second signal light source is sequentially connected with the intensity modulator in series, the fourth beam splitter comprises two input ends and one output end, the unequal arm interferometer is connected with one input end of the fourth beam splitter, and the intensity modulator is connected with the other input end of the fourth beam splitter; the unequal-arm interferometer comprises a long arm and a short arm, and the first phase modulator is arranged on the long arm or the short arm; the driving signal frequency of the first signal light source, the second signal light source, the first phase modulator and the intensity modulator are the same. The method and the device can realize high-speed quantum key coding exceeding gigahertz with high precision.
详细信息 下载全文

申请号:201911380467.2 公开号:CN110983276A 主分类号:C23C14/35
摘要:【中文】本发明公开一种氮化钽薄膜电阻器的制备方法及制备设备,属于电阻器制备技术领域。所述氮化钽薄膜电阻器的制备方法及制备设备包括真空室、旋转装置、抽气泵组、供气装置、磁控装置、热阻蒸发装置、AR离子清洗装置和电子束蒸发装置;所述抽气泵组保证所述真空室处于真空状态,使AR离子旋转清洗、氮化钽薄膜电阻层镀膜、钛金属镀膜、贵金属镀膜和蚀刻图形的制备工艺均在真空条件下完成,与传统自然环境下的常规制备工艺相比,生产出的氮化钽薄膜电阻器合格率更高,使用寿命更长,且生产效率也大大提高。 【EN】The invention discloses a preparation method and preparation equipment of a tantalum nitride film resistor, and belongs to the technical field of resistor preparation. The preparation method and the preparation equipment of the tantalum nitride film resistor comprise a vacuum chamber, a rotating device, a gas-pumping pump set, a gas supply device, a magnetic control device, a thermal resistance evaporation device, an AR ion cleaning device and an electron beam evaporation device; the vacuum chamber is ensured to be in a vacuum state by the air pump group, so that the preparation processes of AR ion rotary cleaning, tantalum nitride film resistor layer coating, titanium metal coating, noble metal coating and etching graph are all completed under the vacuum condition.
详细信息 下载全文

申请号:201811322364.6 公开号:CN111158894A 主分类号:G06F9/50
摘要:【中文】本申请公开了一种云分析系统中的任务监测方法,包括,为来自用户任务请求中的任务附加标签信息,该标签信息至少包括该任务的处理主体名称、以及实际耗时;记录该任务进入当前处理主体的时间戳、离开当前处理主体的时间戳;根据所述进入时间戳和离开时间戳,计算当前处理主体的实际耗时,在所述标签信息中记录当前处理主体名称、以及实际耗时;判断该任务的所有处理是否结束,如果没有,则进入下一处理主体,返回执行所述记录该任务进入当前处理主体的时间戳、离开当前处理主体的时间戳的步骤,直至该任务的所有处理结束。本申请能够找到整个系统耗时的瓶颈点,快速地发现任务处理过程中存在异常的处理主体,使得维护人员能够高效、有针对性进行云分析系统的故障排查。 【EN】The application discloses a task monitoring method in a cloud analysis system, which comprises the steps of attaching label information to a task from a user task request, wherein the label information at least comprises a processing subject name and actual time consumption of the task; recording a timestamp of the task entering the current processing main body and a timestamp of the task leaving the current processing main body; calculating the actual consumed time of the current processing main body according to the entering timestamp and the leaving timestamp, and recording the name of the current processing main body and the actual consumed time in the tag information; and judging whether all the processing of the task is finished, if not, entering the next processing main body, and returning to the step of recording the time stamp of the task entering the current processing main body and the time stamp of the task leaving the current processing main body until all the processing of the task is finished. According to the method and the system, the time-consuming bottleneck point of the whole system can be found, and the abnormal processing main body in the task processing process can be found quickly, so that maintenance personnel can efficiently and pertinently perform troubleshooting on the cloud analysis system.
详细信息 下载全文

申请号:201811291475.5 公开号:CN111113582A 主分类号:B27D1/00
摘要:【中文】本发明提供了拼装板双面覆膜机,机箱的上部侧壁上设置有进料支撑架,所述进料支撑架之间安装有进料输送带;所述机箱的顶部,并位于在进料输送带末端设置有用于覆膜的覆膜滚筒组;所述覆膜滚筒组的主轴上安装有用于驱动各自滚筒转动的传动齿轮组件;所述传动齿轮组件通过链传动机构与电机相连;在机箱的出料端顶部侧壁上固定有支撑板,所述支撑板上支撑有用于放置顶层表面覆膜的顶部覆膜支撑杆,在机箱的出料端底部设置有用于放置底层表面覆膜的底层覆膜支撑装置。此双面覆膜机能够用于拼装板材的双面覆膜作业,只需要将板材通过覆膜机,就可以同时完成板材的双面覆膜。 【EN】The invention provides a two-sided laminating machine for assembled plates, wherein feeding support frames are arranged on the side wall of the upper part of a case, and feeding conveyor belts are arranged between the feeding support frames; a film coating roller group for coating films is arranged at the top of the case and positioned at the tail end of the feeding conveyer belt; a transmission gear assembly for driving each roller to rotate is mounted on a main shaft of the film-coating roller group; the transmission gear assembly is connected with the motor through a chain transmission mechanism; the supporting plate is fixed on the side wall of the top of the discharging end of the case, the supporting plate is provided with a top film covering supporting rod for placing a top layer surface film, and the bottom of the discharging end of the case is provided with a bottom film covering supporting device for placing a bottom layer surface film. The double-sided laminating machine can be used for assembling double-sided laminating operation of plates, and double-sided laminating of the plates can be completed simultaneously only by passing the plates through the laminating machine.
详细信息 下载全文

申请号:201911276956.3 公开号:CN111132248A 主分类号:H04W36/00
摘要:【中文】本发明提供了一种数据传输方法和装置,涉及通信技术领域,解决了VR设备在切换边缘计算节点时,无法保证云VR业务的数据时效性问题。该方法包括,核心网设备获取终端的驻留小区和运动轨迹;核心网设备根据驻留小区和运动轨迹,确定终端待切换的目标小区;核心网设备确定第一边缘计算节点和第二边缘计算节点;当第一边缘计算节点与第二边缘计算节点不同时,核心网设备向第二边缘计算节点发送第一信息;核心网设备确定终端由驻留小区切换至目标小区时,向终端发送第二信息。 【EN】The invention provides a data transmission method and device, relates to the technical field of communication, and solves the problem that data timeliness of cloud VR services cannot be guaranteed when VR equipment switches edge computing nodes. The method comprises the steps that core network equipment acquires a resident cell and a motion trail of a terminal; the core network equipment determines a target cell to be switched by the terminal according to the resident cell and the motion track; the core network equipment determines a first edge computing node and a second edge computing node; when the first edge computing node is different from the second edge computing node, the core network equipment sends first information to the second edge computing node; and when the core network equipment determines that the terminal is switched from the resident cell to the target cell, the core network equipment sends second information to the terminal.
详细信息 下载全文

申请号:201911121342.8 公开号:CN111061591A 主分类号:G06F11/10
摘要:【中文】基于存储器完整性检查控制器实现数据完整性检查的系统和方法,包括:步骤M1:主存储器数据的完整性检查以页为单位,页大小固定为预设值;步骤M2:每个存储器页都有一个属性,整个存储器的页属性存储在存储器中;步骤M3:根据页属性生成相应的校验码,存储在存储器的页属性校验码区域;步骤M4:数据载入存储器时生成的校验码存储在存储器中的校验码存储区域;步骤M5:根据存储器数据的地址获取存储器页属性,重新生成校验码,并与缓存在存储器校验码区域中相应页的校验码比较,执行存储器数据完整性检查。本发明通过专用硬件逻辑实现存储器数据完整性的检查,几乎不增加中央处理器的负载。 【EN】A system and method for implementing data integrity checking based on a memory integrity check controller, comprising: step M1: the integrity check of the main memory data takes a page as a unit, and the page size is fixed to a preset value; step M2: each memory page has an attribute, and the page attribute of the whole memory is stored in the memory; step M3: generating a corresponding check code according to the page attribute, and storing the check code in a page attribute check code area of the memory; step M4: a check code storage area for storing the check code generated when the data is loaded into the memory; step M5: and acquiring the memory page attribute according to the address of the memory data, regenerating the check code, comparing the check code with the check code cached in the corresponding page in the memory check code area, and executing the memory data integrity check. The invention realizes the check of the data integrity of the memory through the special hardware logic, and hardly increases the load of the central processing unit.
详细信息 下载全文

申请号:201911303879.6 公开号:CN110987547A 主分类号:G01N1/26
摘要:【中文】本发明公开了一种烟道脱硝出口的烟气监测系统,包括取样探杆、与取样探杆的出口连通的测量室,测量室内配置有气体分析仪,取样探杆上设有若干取样孔,单个烟道内设置多根相互平行的取样探杆,各取样探杆上同一位置的取样孔处于烟道的同一截面上,实现多点混合式取样,如此保证了从烟道内抽取烟气的均匀性,且从各取样孔进入取样探杆的烟气在流向测量室的过程中及流入测量室后能够不断混合,使之变得更加均匀,从而有效提高了测量结果的准确性,此发明用于烟气监测技术领域。 【EN】The invention discloses a flue gas monitoring system of a flue denitration outlet, which comprises a sampling probe rod and a measuring chamber communicated with the outlet of the sampling probe rod, wherein a gas analyzer is arranged in the measuring chamber, a plurality of sampling holes are formed in the sampling probe rod, a plurality of sampling probe rods which are parallel to each other are arranged in a single flue, and the sampling holes at the same position on each sampling probe rod are positioned on the same cross section of the flue, so that multi-point mixed sampling is realized, the uniformity of flue gas extracted from the flue is ensured, and the flue gas entering the sampling probe rod from each sampling hole can be continuously mixed in the process of flowing to the measuring chamber and after flowing into the measuring chamber, so that the flue gas is more uniform, and the accuracy of a measuring result is effectively improved.
详细信息 下载全文

申请号:201911309133.6 公开号:CN111037242A 主分类号:B23P15/02
摘要:【中文】本发明公开了一种三元叶轮的精加工方法,包括:根据三元叶轮的尺寸要求,将坯料进行外廓加工成带有整体三元叶轮外廓的叶轮毛坯;对叶轮毛坯上的叶片依次进行粗加工和精加工,完成在叶轮毛坯上的叶片加工;将叶轮毛坯卡装在加工专用工装上,使叶轮毛坯的轴盘背侧靠近专用工装的加工开口处;对装卡在加工专用工装上的叶轮毛坯的轴盘背依次进行粗加工和精加工,完成在三元叶轮的加工。本发明解决了对三元叶轮整体加工的难题,填补了国内对三元叶轮加工的空白。 【EN】The invention discloses a finish machining method of a ternary impeller, which comprises the following steps: processing the blank into an impeller blank with the overall ternary impeller profile according to the dimensional requirement of the ternary impeller; the method comprises the following steps of (1) sequentially carrying out rough machining and finish machining on blades on an impeller blank to finish the machining of the blades on the impeller blank; clamping the impeller blank on a special machining tool to enable the back side of a shaft disc of the impeller blank to be close to a machining opening of the special tool; and (4) carrying out rough machining and finish machining on the shaft disc back of the impeller blank clamped on the special machining tool in sequence to finish machining on the ternary impeller. The invention solves the problem of integral processing of the ternary impeller and fills the gap of processing the ternary impeller in China.
详细信息 下载全文

124 条,当前第 1-10 条 下一页 最后一页 返回搜索页