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申请号:201911084911.6 公开号:CN110852604A 主分类号:G06Q10/06
申请人:【中文】湖南商学院【EN】Hunan University of Commerce 申请日:2019.11.08 公开日:2020.02.28
摘要:【中文】本发明公开了一种基于移动Agent的动态信任计算方法,用于动态地计算用户与商家之间的信任度。所述动态信任计算方法包括以下步骤:获取用户与选定商家的初始信任度;构建移动商务交易动态信任计算模型,以时间敏感函数为依据,通过所述移动商务交易动态信任计算模型计算该用户的当前信任度;通过预先设定的信任惩罚规则对当前信任度进行校正;以校正后的信任度更新该用户与选定商家的信任关系并保存。相较于现有技术,本发明提供的基于移动Agent的动态信任计算方法具有显著的优势,几乎接近无非诚实情形的理论最佳值。 【EN】The invention discloses a dynamic trust calculation method based on a mobile Agent, which is used for dynamically calculating the trust between a user and a merchant. The dynamic trust calculation method comprises the following steps: acquiring initial trust of a user and a selected merchant; constructing a mobile commerce transaction dynamic trust calculation model, and calculating the current trust degree of the user through the mobile commerce transaction dynamic trust calculation model by taking a time sensitive function as a basis; correcting the current trust degree through a preset trust punishment rule; and updating and storing the trust relationship between the user and the selected merchant according to the corrected trust degree. Compared with the prior art, the dynamic trust calculation method based on the mobile Agent has remarkable advantages and is almost close to the theoretical optimal value of the non-honest situation.
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申请号:201911044071.0 公开号:CN110843868A 主分类号:B61L27/00
摘要:【中文】本申请公开了一种车辆控制方法、装置、计算机设备及存储介质,涉及轨道交通技术领域,该车辆控制方法用于车队的控制车辆中,车队包括至少一个被控车辆和至少两个控制车辆,包括:接收每个被控车辆发送的运行信息,运行信息包括车辆的速度、加速度和位置;对于车队中包括的每个被控车辆,将被控车辆的前一车辆的运行信息发送给被控车辆,以供被控车辆根据前一车辆的运行信息对速度和加速度进行调整。由此可知,本申请实施例中,每个控制车辆都可以实现对车队中的每个被控车辆的控制。相比于现有技术,当其中一个控制车辆发生故障时,另外的控制车辆可以独立完成对车队的控制,因此可以解决现有技术中存在的单点失效的问题。 【EN】The application discloses a vehicle control method, a device, computer equipment and a storage medium, which relate to the technical field of rail transit, wherein the vehicle control method is used for controlling vehicles of a fleet, the fleet comprises at least one controlled vehicle and at least two control vehicles, and the method comprises the following steps: receiving operation information sent by each controlled vehicle, wherein the operation information comprises the speed, the acceleration and the position of the vehicle; and for each controlled vehicle included in the fleet, transmitting the operation information of the vehicle before the controlled vehicle to the controlled vehicle, so that the controlled vehicle adjusts the speed and the acceleration according to the operation information of the vehicle before. Therefore, in the embodiment of the application, each control vehicle can realize the control of each controlled vehicle in the fleet. Compared with the prior art, when one control vehicle breaks down, the other control vehicles can independently complete the control of the fleet, so that the problem of single-point failure in the prior art can be solved.
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申请号:201911132448.8 公开号:CN110854247A 主分类号:H01L33/06
摘要:【中文】本发明公开了一种基于MEMS扫描微镜的发射方向可控的蓝光微LED器件及其制造方法,实现载体为蓝宝石衬底氮化物晶片和绝缘体上硅(SOI)晶片,蓝宝石衬底氮化物晶片包括顶层氮化物和位于顶层氮化物下部的蓝宝石衬底层,蓝宝石衬底层通过激光剥离技术将其剥离,顶层氮化物和镍/金电极构成阵列式微LED器件,SOI晶圆片顶层设置有MEMS扫描微镜,并通过阳极键合技术将扫描微镜与微LED集成,本发明在MEMS微镜上集成了阵列式微LED,可以做可见光通信或显示用的光源,也可以在可见光通信里作为光电接收模块。 【EN】The invention discloses a blue light micro LED device with controllable emission direction based on an MEMS scanning micro mirror and a manufacturing method thereof, wherein a carrier is a sapphire substrate nitride wafer and a silicon-on-insulator (SOI) wafer, the sapphire substrate nitride wafer comprises a top layer nitride and a sapphire substrate layer positioned at the lower part of the top layer nitride, the sapphire substrate layer is stripped by a laser stripping technology, the top layer nitride and a nickel/gold electrode form an array type micro LED device, the top layer of the SOI wafer is provided with the MEMS scanning micro mirror, and the scanning micro mirror and the micro LED are integrated by an anode bonding technology.
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申请号:202010157061.4 公开号:CN111229470A 主分类号:B03D1/01
摘要:【中文】本发明公开了一种锂云母浮选过程的选矿活化剂,涉及防火涂料技术领域,具体为一种锂云母浮选过程的选矿活化剂,包括以下原料及其重量份数:选矿活化剂60%、捕收剂30%和起泡剂10%。该锂云母浮选过程的选矿活化剂,在加热的反应釜中,首先加入十二胺或椰油胺,待十二胺或椰油胺加热溶解后,加入酒精搅拌均匀,再加入盐酸进行反应,待反应完成后,最后加入热水稀释备用,制成捕收剂,制备选矿活化剂所用材料占比较少,能够有效的减少成本的损耗,以及能够有效的提高选矿活化剂制备所占用的时间,从而能够有效的提高制备选矿活化剂的高效性,以及浮选效率高,对矿泥的适应性好,泡沫易碎不发黏,药剂制备简单、成本较低。 【EN】The invention discloses a beneficiation activator for a lepidolite flotation process, relates to the technical field of fireproof coatings, and particularly relates to the beneficiation activator for the lepidolite flotation process, which comprises the following raw materials in parts by weight: 60% of beneficiation activating agent, 30% of collecting agent and 10% of foaming agent. This lepidolite flotation process's ore dressing activator, in the reation kettle of heating, at first add dodecylamine or coconut oil amine, treat dodecylamine or coconut oil amine heating and dissolve the back, add alcohol stirring, add hydrochloric acid and react again, treat the reaction completion back, it is reserve to add hot water dilution at last, make the collector, the used material of preparation ore dressing activator accounts for than less, can effectual reduction cost's loss, and can the shared time of effectual improvement ore dressing activator preparation, thereby can the effectual high efficiency of improvement preparation ore dressing activator, and flotation efficiency is high, adaptability to the slime is good, the foam is breakable not sticky, the medicament preparation is simple, the cost is lower.
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申请号:202510527733.9 公开号:CN120048099A 主分类号:G08C17/02
申请人:深圳华声医疗技术股份有限公司 申请日:2025.04.25 公开日:2025.05.27
摘要:本发明适用于医疗机器人技术领域,提供了一种医疗机器人操作控制方法及系统,方法包括利用配置在医疗机器人上的至少一个超声探头,实时采集目标区域的超声数据;利用配置在医疗机器人上的毫米波通信模块,将采集的超声数据通过预设的无线通信协议发送至远程处理系统;利用毫米波通信模块,接收由远程处理系统对超声数据进行处理后生成的控制指令;利用配置在医疗机器人上的控制器,根据控制指令中的运动参数驱动医疗机器人的运动执行机构调整当前姿态或空间位置、以及根据控制指令中的操作参数驱动安装在医疗机器人上的指定操作设备执行预定的诊断辅助或治疗干预操作。本发明解决了现有医疗机器人的操作控制灵活性不足的问题。
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申请号:202510560880.6 公开号:CN120078449A 主分类号:A61B8/08
申请人:深圳华声医疗技术股份有限公司 申请日:2025.04.30 公开日:2025.06.03
摘要:本发明适用于超声诊断技术领域,提供了一种超声辅助诊断方法及系统,方法包括:利用超声探头采集超声数据;通过有线链路将超声数据从超声探头传输至与超声探头物理上分离的毫米波通信模块;由毫米波通信模块采用毫米波无线通信技术,将超声数据发送至部署于操作环境内的多个毫米波接入点中的一个;将毫米波接入点接收到的超声数据通过配置为支持确定性网络功能的有线承载网络传输至远程计算平台;在远程计算平台内接收经过确定性网络功能传输的超声数据,并根据预设的处理策略对接收到的超声数据执行超声数据处理,生成用于超声辅助诊断的诊断辅助数据,并提供给显示设备进行显示。本发明解决了现有超声诊断灵活性不足的问题。
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申请号:201910932729.5 公开号:CN110746037A 主分类号:C02F9/14
申请人:广西皖维生物质科技有限公司;安徽皖维高新材料股份有限公司 申请日:2019.09.29 公开日:2020.02.04
摘要:本发明公开了一种高浓度有机废水的预处理方法,是将待处理废水的pH调节至6~9后抽入调节池,并在调节池内引入二沉池的剩余污泥;在调节池内,通过曝气、搅拌,废水中的物质被污泥降解或吸附,废水与污泥均质均量混合;调节池出水再依次经混凝反应池、初沉池进行混凝、沉淀;初沉池所产生的沉淀排入储泥池,初沉池的出水进入后续生化池、二沉池。本发明通过“生化+物化”组合的预处理路线,不仅降低了污泥量、减少了混凝剂投药量,而且提高了预处理工序的COD、氨氮的去除效率。
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申请号:202211422357.X 公开号:CN115924958A 主分类号:C01G9/08
申请人:华北水利水电大学;河南智联新材料研究院有限公司 申请日:2022.11.15 公开日:2023.04.07
摘要:本发明公开了一种润滑油脂用可分散氧化锌或硫化锌纳米微粒的制备方法,其以硬脂酸锌为前驱体,在惰性气体保护和搅拌条件下,与有机溶剂和表面修饰剂于140-340℃反应30-60min,经冷却、离心,即得可分散氧化锌纳米微粒;在此基础上,加入原料硫粉,参照可分散氧化锌纳米微粒的制备过程,制备获得可分散硫化锌纳米微粒。本发明方法在整个反应过程中都不需要引入任何必须被去除掉的离子,反应过程中产生副产物也仅是少量二氧化碳和水蒸气,无任何有毒的废弃物产出。本发明方法具有设备要求低、操作简便、生产成本低、生产过程周期短等诸多优点,将其作为添加剂分散在润滑油中,具有良好的摩擦学性能,在润滑油纳米添加剂等领域具有比较好的应用前景。
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申请号:202010164602.6 公开号:CN111203946A 主分类号:B27D1/10
申请人:【中文】浙江省林业科学研究院【EN】Zhejiang Academy of Forestry 申请日:2020.03.11 公开日:2020.05.29
摘要:【中文】本发明公开了一种防腐重组竹材料的制备方法,包括以下步骤:(1)取毛竹洗净后切断,除去竹青和竹黄后进行剖分,得到竹束;(2)将竹束送入水中水煮,再以高压蒸汽加热得到预处理竹束;(3)将预处理竹束通过热风风干,浸入酚醛树脂胶中,顺纹方向铺装组坯;(4)将竹束组坯好以后送入模具中加压加热进行热固化成型即得。本发明制备方法各步骤参数控制科学精准,其中水煮和高压蒸汽加热的过程可以将毛竹内部对细菌繁殖有益的营养成分流失和热解,断绝了腐败细菌的能源供给,达到了防腐效果,同时后续热固化过程能加大重组竹的密度,令腐败细菌难以从径向渗入,再次加强了重组竹材料的防腐性能,由此得到的产品具有优异的防腐性。 【EN】The invention discloses a preparation method of an anticorrosive recombined bamboo material, which comprises the following steps: (1) cleaning moso bamboo, cutting, removing bamboo green and bamboo yellow, and splitting to obtain bamboo bundles; (2) feeding the bamboo bundles into water for boiling, and heating by high-pressure steam to obtain pretreated bamboo bundles; (3) air-drying the pretreated bamboo bundles by hot air, immersing the bamboo bundles into phenolic resin glue, and paving and assembling along the grain direction; (4) and (3) after the bamboo bundle assembly is finished, conveying the bamboo bundle assembly into a mould, pressurizing and heating the bamboo bundle assembly, and performing thermosetting molding to obtain the bamboo bundle. The preparation method has scientific and accurate parameter control of each step, wherein nutrient components in the moso bamboos which are beneficial to bacterial reproduction can be lost and pyrolyzed in the processes of water boiling and high-pressure steam heating, the energy supply of putrefying bacteria is cut off, the anticorrosion effect is achieved, meanwhile, the density of the recombined bamboos can be increased in the subsequent heat curing process, the putrefying bacteria are difficult to permeate in the radial direction, the anticorrosion performance of the recombined bamboo material is enhanced again, and the obtained product has excellent anticorrosion performance.
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申请号:202010132189.5 公开号:CN111185977A 主分类号:B27K3/12
申请人:【中文】浙江省林业科学研究院【EN】Zhejiang Academy of Forestry 申请日:2020.02.29 公开日:2020.05.22
摘要:【中文】本发明公开了一种超疏水木材的生产方法,包括以下步骤:(1)将木材干燥后按所需规格切割成板材;(2)取聚二甲基硅氧烷和硅橡胶混合得到木材表面浸涂液;(3)取不同粒径的单分散纳米二氧化硅微球,分别分散于乙醇中,制得不同混合液,将混合液和木材表面浸涂液依次均匀涂覆在木材表面,得到超疏水表面;(4)将木材进行热压处理,真空干燥即可。本发明方法工艺简单,对设备要求低,易操作,工艺流程短,节约能源,可以实现木材大面积超疏水表面的制备,适合工业化生产,能有效延长木材的使用寿命,缓解木材供需矛盾,具有广阔的应用前景。 【EN】The invention discloses a production method of super-hydrophobic wood, which comprises the following steps: (1) drying the wood and cutting the dried wood into plates according to the required specification; (2) mixing polydimethylsiloxane and silicon rubber to obtain wood surface dip-coating liquid; (3) taking monodisperse nano-silica microspheres with different particle sizes, respectively dispersing in ethanol to prepare different mixed solutions, and sequentially and uniformly coating the mixed solutions and the wood surface dip-coating solution on the surface of the wood to obtain a super-hydrophobic surface; (4) carrying out hot pressing treatment on the wood, and drying in vacuum. The method has the advantages of simple process, low requirement on equipment, easy operation, short process flow, energy conservation, realization of the preparation of the large-area super-hydrophobic surface of the wood, suitability for industrial production, effective prolongation of the service life of the wood, alleviation of the contradiction between supply and demand of the wood and wide application prospect.
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