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申请号:201911265500.7 公开号:CN111017432A 主分类号:B65F1/00
申请人:【中文】南通大学【EN】NANTONG University 申请日:2019.12.11 公开日:2020.04.17
摘要:【中文】本发明提供了一种干湿垃圾分离箱,包括:智能控制系统,与电源连接;箱体,所述箱体被三个垂直隔板分为三个区域,所述区域包括干区、湿区以及分类区,所述分类区两块隔板的相交处设有电器容纳区,所述智能控制系统容置于所述电器容纳区内;以及箱盖,包括箱盖本体以及三叶式旋转机构,所述箱盖本体内设有一卡槽,所述三叶式旋转机构卡接在所述卡槽内,所述箱盖可拆卸设置在所述箱体上。本发明提供一种干湿垃圾分离箱,通过智能控制系统与箱盖的三叶式旋转机构,对投入所述干湿垃圾分离箱的垃圾进行分类,并将垃圾按区域分离。本发明结构简单、分类效率高。 【EN】The invention provides a dry and wet garbage separating box, which comprises: the intelligent control system is connected with the power supply; the intelligent control system comprises a box body, a control system and a control system, wherein the box body is divided into three areas by three vertical partition plates, each area comprises a dry area, a wet area and a classification area, an electric appliance containing area is arranged at the intersection of the two partition plates in the classification area, and the intelligent control system is contained in the electric appliance containing area; and the box cover comprises a box cover body and a three-blade rotating mechanism, a clamping groove is formed in the box cover body, the three-blade rotating mechanism is clamped in the clamping groove, and the box cover is detachably arranged on the box body. The invention provides a dry and wet garbage separating box, which classifies garbage thrown into the dry and wet garbage separating box through an intelligent control system and a three-blade rotating mechanism of a box cover and separates the garbage according to regions. The invention has simple structure and high classification efficiency.
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申请号:202010110666.8 公开号:CN111234782A 主分类号:C09K5/06
摘要:【中文】本发明公开了一种基于Sn‑9Zn合金的储热芯的制备方法及基于Sn‑9Zn合金的储热芯,将Sn金属粉及Zn金属粉熔融,以获得金属熔液;将所述金属熔液置于耐高温模型中进行冷却,以获得基于Sn‑9Zn合金的储热芯,基于本发明提出的基于Sn‑9Zn合金的储热芯的制备方法制备出的基于Sn‑9Zn合金的储热芯可以缩短储热芯加热的预热时间及储热芯加热的热源稳定性,同时Sn‑9Zn合金密度高,热膨胀系数低,单位体积相变潜热较高,可满足加热装置小型化的要求。 【EN】The invention discloses a preparation method of a heat storage core based on Sn-9Zn alloy and the heat storage core based on Sn-9Zn alloy, wherein Sn metal powder and Zn metal powder are melted to obtain molten metal; the molten metal is placed in a high-temperature-resistant model to be cooled so as to obtain the heat storage core based on the Sn-9Zn alloy, the heat storage core based on the Sn-9Zn alloy prepared by the preparation method of the heat storage core based on the Sn-9Zn alloy provided by the invention can shorten the preheating time of the heat storage core and the heat source stability of the heat storage core, and meanwhile, the Sn-9Zn alloy has high density, low thermal expansion coefficient and high phase change latent heat of unit volume, and can meet the requirement of miniaturization of a heating device.
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申请号:201811250778.2 公开号:CN111104045A 主分类号:G06F3/06
摘要:【中文】本发明实施例提供了一种存储控制方法、装置、设备和计算机存储介质,所述方法包括:在存储设备的存储区域中,确定出采用SLC模式的SLC区域和采用XLC模式的XLC区域;当所述SLC区域发生垃圾回收或SLC区域资源不足时,需要根据数据在SLC中存在的年龄、回收次数等属性联合判断,选择SLC区域中合理的物理块进行数据迁出,同时选择SLC或XLC区域相应条件的物理块作为数据迁移目标物理块,将SLC区域有效数据迁移至目标物理块中;所述SLC区域的任意一个物理块被擦除时,将被擦除的物理块采用的模式配置为XLC模式,将所述XLC区域中擦除次数最小的空物理块采用的模式配置为SLC模式。 【EN】The embodiment of the invention provides a storage control method, a device, equipment and a computer storage medium, wherein the method comprises the following steps: determining an SLC area adopting an SLC mode and an XLC area adopting an XLC mode in a storage area of the storage device; when garbage collection occurs in the SLC region or the SLC region is insufficient in resources, joint judgment needs to be carried out according to attributes such as age, collection times and the like of data in the SLC region, reasonable physical blocks in the SLC region are selected for data migration, meanwhile, physical blocks of corresponding conditions of the SLC region or the XLC region are selected as target physical blocks of data migration, and valid data of the SLC region are migrated to the target physical blocks; when any physical block in the SLC area is erased, configuring a mode adopted by the erased physical block as an XLC mode, and configuring a mode adopted by an empty physical block with the minimum erasing frequency in the XLC area as an SLC mode.
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申请号:201911140913.2 公开号:CN110844390A 主分类号:B65F1/00
申请人:【中文】南通大学【EN】NANTONG University 申请日:2019.11.20 公开日:2020.02.28
摘要:【中文】本发明具体涉及一种家居式瓶类垃圾智能分类箱,属于智能分类垃圾箱技术领域。包括箱本体及设置在箱本体两侧的把手、设置在箱本体一侧上部的投入口、设置在箱本体底部的四个万向轮、设置在箱本体内部且空间依次从上至下的智能识别机构、第一开关闭合机构、机械压缩机构、第二开关闭合机构、收纳排水机构。本发明的技术方案减少环卫工人进行垃圾分类的工作时间,提高了分类效率,有利于环境可持续发展,采用可分离式的结构设计,简单地应用分隔板的运动设计,分离相应的层,方便清洗,占地体积较小,可加设结构单一的干、湿垃圾的收集区,适用于居家需要进行垃圾分类的用户群。 【EN】The invention particularly relates to a household type intelligent bottle garbage classification box, and belongs to the technical field of intelligent classification garbage boxes. Including case body and set up the handle in case body both sides, set up at case body one side upper portion's input mouth, set up four universal wheels in case body bottom, set up inside the case body and the space in proper order from last intelligent recognition mechanism, first switch closing mechanism, mechanical compression mechanism, second switch closing mechanism, accomodate drainage mechanism extremely down. The technical scheme of the invention reduces the working time of sanitation workers for garbage classification, improves the classification efficiency, is beneficial to sustainable development of the environment, adopts a separable structural design, simply applies the motion design of the partition plate, separates corresponding layers, is convenient to clean, occupies a small area, can be additionally provided with a dry and wet garbage collection area with a single structure, and is suitable for a user group needing garbage classification at home.
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申请号:201911018201.3 公开号:CN110891050A 主分类号:H04L29/06
摘要:【中文】本发明公开了一种全链条的原子级主动安全路由方法,将区块链技术与动态路由算法相结合,并在区块链中添加智能合约审计机制,从而设计了一个计算机网络的全链条的原子级主动安全路由机制。该路由机制将端节点安全转变为全链条安全,使得计算机网络能够主动侦测节点是否受到攻击,将被动安全转变为主动安全从而及时有效地抵御各种形式网络攻击。 【EN】The invention discloses a full-chain atomic-level active security routing method, which combines a block chain technology with a dynamic routing algorithm and adds an intelligent contract auditing mechanism in a block chain, thereby designing a full-chain atomic-level active security routing mechanism of a computer network. The routing mechanism changes the end node security into full chain security, so that a computer network can actively detect whether the node is attacked or not, and changes passive security into active security, thereby timely and effectively resisting various forms of network attacks.
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申请号:201911179449.8 公开号:CN110880099A 主分类号:G06Q10/10
摘要:【中文】本发明涉及一种基于工作流引擎的任务事件处理方法、装置、计算机设备和存储介质,该方法包括:获取待处理的当前任务事件,确定当前任务事件的当前任务处理类型;确定与当前任务处理类型对应的处理类模块;处理类模块预设于工作流引擎中;根据处理类模块预先设定的输入参数类型,确定当前任务事件的第一任务参数;第一任务参数的参数类型对应于输入参数类型;将第一任务参数发送至处理类模块,以使处理类模块根据第一任务参数对当前任务事件进行处理,得到任务处理结果;任务处理结果的参数类型对应于处理类模块预先设定的输出参数类型;获取处理类模块得到的任务处理结果。采用本方法能够提高工作流引擎对任务事件处理的灵活性。 【EN】The invention relates to a method, a device, computer equipment and a storage medium for processing task events based on a workflow engine, wherein the method comprises the following steps: acquiring a current task event to be processed, and determining the current task processing type of the current task event; determining a processing type module corresponding to the current task processing type; the processing module is preset in the workflow engine; determining a first task parameter of a current task event according to an input parameter type preset by a processing class module; the parameter type of the first task parameter corresponds to an input parameter type; sending the first task parameter to a processing module so that the processing module processes the current task event according to the first task parameter to obtain a task processing result; the parameter type of the task processing result corresponds to the preset output parameter type of the processing module; and acquiring a task processing result obtained by the processing module. By adopting the method, the flexibility of the workflow engine for processing the task event can be improved.
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申请号:201911143476.X 公开号:CN111024153A 主分类号:G01D21/02
摘要:【中文】本发明公开了一种基于物联网的湖泊水质在线监测装置,包括用于检测湖泊内部水质的感应监测模块、用于采集信息并进行处理的信号处理发射模块和与信号处理发射模块连接的远程监测中心,所述感应监测模块包括水质传感器、流速传感器、压力传感器和水温传感器,所述感应监测模块上固定连接有连接板,此基于物联网的湖泊水质在线监测装置,通过在感应监测模块外侧设有的连接板,且连接板外侧设有的防护装置,从而起到对湖泊中的感应监测模块进行有效的防护的作用,防止湖泊中的水流以及动物的冲击造成感应监测模块的损坏,进一步的提高湖泊水质监测效率,且防护壳可以进行自清洁,从而进一步的提高感应监测模块的监测效率。 【EN】The invention discloses an Internet of things-based lake water quality online monitoring device, which comprises an induction monitoring module for detecting the water quality in a lake, a signal processing and transmitting module for acquiring and processing information and a remote monitoring center connected with the signal processing and transmitting module, wherein the induction monitoring module comprises a water quality sensor, a flow velocity sensor, a pressure sensor and a water temperature sensor, a connecting plate is fixedly connected onto the induction monitoring module, the Internet of things-based lake water quality online monitoring device has the advantages that the connecting plate is arranged on the outer side of the induction monitoring module, and a protection device is arranged on the outer side of the connecting plate, so that the induction monitoring module in the lake is effectively protected, the damage of the induction monitoring module caused by the impact of water flow and animals in the lake is prevented, the lake water quality monitoring efficiency is further improved, and the protection shell can be self-cleaned, therefore, the monitoring efficiency of the induction monitoring module is further improved.
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申请号:201911126911.8 公开号:CN111105335A 主分类号:G06T1/00
摘要:【中文】本申请涉及一种图像隐私隐藏方法、装置、计算机设备和存储介质。方法包括:获取二值载体图像及其局部区域像素点;局部区域像素点包括边界像素点和中间像素点;确定二值载体图像的边界像素点的失真分数,并根据二值载体图像的局部区域像素点的像素值,确定二值载体图像的中间像素点的失真分数;失真分数用于度量翻转像素点所引起的图像失真大小;根据二值载体图像中各个像素点的失真分数、二值载体图像及隐私信息,确定STC编码器的输入,以触发STC编码器进行编码;根据STC编码器的编码结果,生成隐藏有隐私信息的二值载密图像。采用本方法得到的载密图像对抗检测的能力更强,安全性更高,可用于隐私信息的安全传输。 【EN】The application relates to an image privacy hiding method and device, computer equipment and a storage medium. The method comprises the following steps: acquiring a binary carrier image and local area pixel points thereof; the local area pixel points comprise boundary pixel points and middle pixel points; determining distortion scores of boundary pixel points of the binary carrier image, and determining distortion scores of middle pixel points of the binary carrier image according to pixel values of pixel points in a local area of the binary carrier image; the distortion fraction is used for measuring the image distortion caused by turning over the pixel points; determining the input of an STC encoder according to the distortion fraction of each pixel point in the binary carrier image, the binary carrier image and the privacy information so as to trigger the STC encoder to encode; and generating a binary secret-carrying image with hidden privacy information according to the encoding result of the STC encoder. The secret-carrying image obtained by the method has stronger anti-detection capability and higher safety, and can be used for the safe transmission of private information.
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申请号:201911103902.7 公开号:CN110987062A 主分类号:G01D21/02
摘要:【中文】本发明公开了一种基于数据融合的智能计量箱预警方法及系统,包括:根据获取的每种信息源的状态数据确定每种信息源对应的预警程度值,并根据预警程度值确定每种信息源对应的当前状态;利用历史数据确定每个信息源在不同预警等级下的条件概率,并作为模型参数,以确定贝叶斯网络模型;根据已确定的贝叶斯网络模型和每种信息源对应的当前状态确定最终的预警等级。本发明充分利用了有限的传感器资源,使多个传感器尽可能互相协作,同时检测多个目标和扫描整个空间,并采用信息融合手段,根据不同状态感知来源和不同时间点的信息确定计量箱的预警等级,克服了单个传感器的不确定性和局限性,提高了整个传感器系统的有效性能,保障了智能计量箱的安全。 【EN】The invention discloses an intelligent metering box early warning method and system based on data fusion, which comprises the following steps: determining an early warning degree value corresponding to each information source according to the acquired state data of each information source, and determining a current state corresponding to each information source according to the early warning degree value; determining the conditional probability of each information source under different early warning levels by using historical data, and determining a Bayesian network model by using the conditional probability as a model parameter; and determining the final early warning level according to the determined Bayesian network model and the current state corresponding to each information source. The invention fully utilizes limited sensor resources, enables a plurality of sensors to cooperate with each other as much as possible, simultaneously detects a plurality of targets and scans the whole space, adopts an information fusion means, determines the early warning level of the metering box according to information of different state sensing sources and different time points, overcomes the uncertainty and the limitation of a single sensor, improves the effective performance of the whole sensor system, and ensures the safety of the intelligent metering box.
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申请号:201911116926.6 公开号:CN110984917A 主分类号:E21B43/00
摘要:【中文】本发明公开了一种用于低渗储层的增产控水防砂完井方法,包括以下步骤:选择待开发低渗油田;建立施工井,钻出井下流动主井眼;对主井眼下入套管,并在井壁与套管环空用水泥进行固井;采用多分支钻井技术形成多个分支井眼;在主井眼储层段设置带有流入控制装置的防砂筛管;充填具有低密度、胶结、疏水功能的陶粒;本发明能够增大低渗储层泄油面积,提供渗流和导流优势流道,其中带有流入控制装置的防砂筛管,具备防砂和控水功能,且能增大低渗层生产压差,提高低渗储层动用程度,所以本发明的适用于海上低渗储层的增产控水防砂完井方法,可实现低渗储层的高效、经济开发。 【EN】The invention discloses a production-increasing, water-controlling and sand-preventing well completion method for a hypotonic reservoir, which comprises the following steps: selecting a low-permeability oil field to be developed; establishing a construction well, and drilling a main underground flowing well hole; setting a casing into the main borehole, and cementing the borehole wall and the casing annulus by using cement; forming a plurality of branch boreholes by using a multi-branch drilling technology; arranging a sand control screen pipe with an inflow control device in the reservoir section of the main well; filling ceramsite with low density, cementation and hydrophobic functions; the method can increase the oil drainage area of the low-permeability reservoir, provide a seepage and flow guide advantageous flow passage, and the sand control screen pipe with the inflow control device has the functions of sand control and water control, can increase the production pressure difference of the low-permeability reservoir and improve the utilization degree of the low-permeability reservoir, so that the method for increasing the yield and controlling the water of the low-permeability reservoir on the sea can realize the efficient and economic development of the low-permeability reservoir.
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