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1:
[发明]
【中文】一种电池峰值功率的估计方法及装置 【EN】Method and device for estimating peak power of battery
申请号:
201811018095.4
公开号:CN110927592A 主分类号:G01R31/385
申请人:
【中文】华为技术有限公司【EN】HUAWEI TECHNOLOGIES Co.,Ltd.
申请日:2018.08.31 公开日:2020.03.27
发明人:
【中文】蔡伟
;
杨瑞
;
秦学
;
熊瑞【EN】Cai Wei
;
Yang Rui
;
Qin Xue
;
Xiong Rui
摘要:【中文】本申请公开了一种电池峰值功率的估计方法及装置,用于避免峰值电流估计过大,产生电池过温现象,提高了电池的安全性能。本申请方法包括:获取待测电池的当前时刻的电压、当前时刻的电流、当前时刻的荷电状态和当前时刻的温度;根据电池工作温度约束条件和当前时刻的温度确定第一持续峰值电流;根据端电压约束条件和当前时刻的电压确定待第二持续峰值电流;根据电池荷电状态约束条件和当前时刻的荷电状态确定第三持续峰值电流;根据第一持续峰值电流、第二持续峰值电流和第三持续峰值电流确定最小持续峰值电流;根据最小持续峰值电流确定峰值电压;根据最小持续峰值电流和峰值电压确定待测电池的峰值功率。 【EN】The application discloses a method and a device for estimating peak power of a battery, which are used for avoiding the phenomenon of battery over-temperature caused by overlarge peak current estimation and improving the safety performance of the battery. The method comprises the following steps: acquiring the voltage of a battery to be tested at the current moment, the current of the battery to be tested at the current moment, the state of charge of the battery to be tested at the current moment and the temperature of the battery to be tested at the current moment; determining a first continuous peak current according to the constraint condition of the working temperature of the battery and the temperature at the current moment; determining a current to be subjected to a second continuous peak value according to the terminal voltage constraint condition and the voltage at the current moment; determining a third continuous peak current according to the constraint condition of the state of charge of the battery and the state of charge at the current moment; determining a minimum sustained peak current from the first sustained peak current, the second sustained peak current, and the third sustained peak current; determining a peak voltage from the minimum sustained peak current; and determining the peak power of the battery to be tested according to the minimum continuous peak current and the peak voltage.
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2:
[发明]
【中文】确定等效电池模型的参数值的方法、装置及存储介质 【EN】Method, device and storage medium for determining parameter values of equivalent battery model
申请号:
201810967749.1
公开号:CN110895311A 主分类号:G01R31/382
申请人:
【中文】华为技术有限公司【EN】HUAWEI TECHNOLOGIES Co.,Ltd.
申请日:2018.08.23 公开日:2020.03.20
发明人:
【中文】蔡伟
;
杨瑞
;
秦学
;
熊瑞【EN】Cai Wei
;
Yang Rui
;
Qin Xue
;
Xiong Rui
摘要:【中文】本申请公开了一种确定等效电池模型的参数值的方法及装置,属于电池技术领域。本申请可以根据利用遗传算法确定的非线性参数总群和整个电池响应过程中各个时刻的数据来确定每组实验参数值对应的等效电池模型的非线性参数的参数值和线性参数的参数值。也即,本申请不需要通过划分电池的响应过程来获取相应过程内的数据来确定等效电池模型的参数值,避免了相关技术中由于无法准确划分响应过程而导致的确定的模型参数不准确,提高了确定的等效电池模型的参数值的准确性。 【EN】The application discloses a method and a device for determining parameter values of an equivalent battery model, and belongs to the technical field of batteries. The method and the device can determine the parameter values of the nonlinear parameters and the parameter values of the linear parameters of the equivalent battery model corresponding to each group of experimental parameter values according to the nonlinear parameter total group determined by using the genetic algorithm and data at each moment in the whole battery response process. That is, the parameter values of the equivalent battery model are determined without acquiring data in the corresponding process by dividing the response process of the battery, so that the inaccuracy of the determined model parameters caused by the incapability of accurately dividing the response process in the related art is avoided, and the accuracy of the determined parameter values of the equivalent battery model is improved.
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3:
[发明]
【中文】一种结合交易与共识的智能服务交易区块链信誉管理方法和系统 【EN】Intelligent service transaction block chain credit management method and system combining transaction and consensus
申请号:
202010014343.9
公开号:CN111241114A 主分类号:G06F16/23
申请人:
【中文】中国科学院信息工程研究所【EN】Institute Of Information Engineering Chinese Academy of Sciences
申请日:2020.01.07 公开日:2020.06.05
发明人:
【中文】孙优
;
章睿
;
薛锐
;
苏倩倩【EN】Sun You
;
Zhang Rui
;
Xue Rui
;
Su Qianqian
摘要:【中文】本发明公开了一种结合交易与共识的智能服务交易区块链信誉管理方法和系统。该方法包括:生成本轮智能服务交易区块链系统的共识小组中的成员;生成本轮的领导者候选人;各领导者候选人将本轮的全部交易打包到区块中并将其和凭证一起发送给共识小组;共识小组成员运行基于信誉的共识机制后将区块发布到区块链上;领导者将本轮的信誉变化更新到信誉区块中并发布。本发明使用可验证随机函数生成领导者从而避免算力浪费,选择信誉较高的部分节点实施共识机制来减少系统负载和网络流量;信誉评分影响共识中投票节点的权重,也使信誉值较高的节点更有可能通过加权采样算法获得奖励,使用信誉链存储和更新节点的信誉,无需受信任的第三方来管理信誉。 【EN】The invention discloses a credit management method and a credit management system for an intelligent service transaction block chain combining transaction and consensus. The method comprises the following steps: generating members in a consensus group of the intelligent service transaction block chain system in the current round; generating leader candidates for the current round; each leader candidate packs all the trades of the round into a block and sends the block and the block together with the certificate to a consensus group; after a consensus group member runs a credit-based consensus mechanism, a block is issued to a block chain; and the leader updates the credit change of the current round into the credit block and issues the credit change. The method uses the verifiable random function to generate the leader so as to avoid the waste of computing power, and selects part of nodes with higher credit to implement a consensus mechanism to reduce the system load and the network flow; the credit score influences the weight of the voting nodes in the consensus, the nodes with higher credit values are more likely to obtain rewards through a weighted sampling algorithm, the credit of the nodes is stored and updated by using the credit chain, and a trusted third party is not needed to manage the credit.
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4:
[发明]
【中文】一种平流煅烧石灰的套筒竖窑 【EN】Sleeve shaft kiln for horizontal flow lime calcination
申请号:
202010209457.9
公开号:CN111217542A 主分类号:C04B2/12
申请人:
【中文】南京威普粉体工程有限公司【EN】NANJING WAPE POWDER ENGINEERING Co.,Ltd.
申请日:2020.03.23 公开日:2020.06.02
发明人:
【中文】薛彬
;
薛丹
;
刘永贵
;
徐锐
;
薛冬【EN】Xue Bin
;
Xue Dan
;
Liu Yonggui
;
Xu Rui
;
Xue Dong
摘要:【中文】本发明公开了一种平流煅烧石灰的套筒竖窑,从上至下依次包括上部加料布料段、中部石灰石煅烧段和下部烧成石灰冷却储存段,石灰石在窑顶按其块度大小进行有序布料,细小块度的石灰石在环形区里圈,粗大块料石灰石在环形区外圈,燃烧单元在竖窑煅烧段外筒沿周边和外筒上下布置网格状布置,燃烧的高温气体在环形区由外圈向里圈近似水平穿透,粗大块料石灰石受热温度高,分解速度快,细小块料石灰石受热温度相对较低,分解速度慢,大小块料石灰石在基本相同时间被烧成石灰,石灰石被全部烧透,又不被过烧,能够烧出多孔隙结构、高活性、烧成度均匀的优质石灰。 【EN】The invention discloses a sleeve shaft kiln for horizontal flow lime calcination, which sequentially comprises an upper feeding and distributing section, a middle limestone calcining section and a lower calcined lime cooling and storing section from top to bottom, limestone is orderly distributed on the top of the kiln according to the size of the lump, fine lump limestone is arranged in an annular area, coarse lump limestone is arranged on the outer ring of the annular area, a combustion unit is arranged on the outer cylinder of the calcining section of the shaft kiln along the periphery and the outer cylinder in a grid shape, the combusted high-temperature gas approximately horizontally penetrates from the outer ring to the inner ring in the annular area, the coarse lump limestone is high in heating temperature and high in decomposition speed, the fine lump limestone is low in heating temperature and low in decomposition speed, the large lump limestone and the small lump are calcined into lime at basically the same time, the limestone is completely calcined and is not overburned, and a porous structure can be burnt out, high activity and uniform sintering degree.
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5:
[发明]
【中文】一种触摸检测方法、装置及无线耳机和存储介质 【EN】Touch detection method and device, wireless earphone and storage medium
申请号:
201911379350.2
公开号:CN111190509A 主分类号:G06F3/044
申请人:
【中文】歌尔股份有限公司【EN】GOERTEK Inc.
申请日:2019.12.27 公开日:2020.05.22
发明人:
【中文】杨瑞
;
董雪【EN】Yang Rui
;
Dong Xue
摘要:【中文】本申请公开了一种触摸检测方法、装置及一种无线耳机和计算机可读存储介质,该方法包括:对触摸板中的每个触摸区域进行电容检测,以便确定每个所述触摸区域的触摸状态;其中,所述触摸板包括至少两个延伸方向的多个触摸区域,每个所述延伸方向上至少包括两个所述触摸区域;基于所有所述触摸区域的触摸状态确定滑动方向,并根据所述滑动方向执行对应的操作。本申请提供的触摸检测方法,对触摸板中的每个触摸区域进行电容检测,以获取每个触摸区域的触摸状态,基于各触摸区域的触摸状态在预设时间窗口内的变化可以确定滑动方向。由此可见,本申请提供的触摸检测方法,在不改变硬件尺寸的前提下可以定义多种滑动动作,进而通过无线耳机实现多种操作。 【EN】The application discloses a touch detection method, a device, a wireless earphone and a computer readable storage medium, wherein the method comprises the following steps: performing capacitance detection on each touch area in the touch plate so as to determine the touch state of each touch area; the touch pad comprises a plurality of touch areas with at least two extending directions, and each extending direction at least comprises two touch areas; and determining a sliding direction based on the touch states of all the touch areas, and executing corresponding operation according to the sliding direction. According to the touch detection method, capacitance detection is carried out on each touch area in the touch pad so as to obtain the touch state of each touch area, and the sliding direction can be determined based on the change of the touch state of each touch area in a preset time window. Therefore, the touch detection method provided by the application can define various sliding actions on the premise of not changing the size of hardware, and further realize various operations through the wireless earphone.
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6:
[发明]
【中文】一种全张量磁梯度数据补偿优化方法及系统 【EN】Full-tensor magnetic gradient data compensation optimization method and system
申请号:
201911293829.4
公开号:CN111079285A 主分类号:G06F30/20
申请人:
【中文】山东大学【EN】SHANDONG University
申请日:2019.12.16 公开日:2020.04.28
发明人:
【中文】丁然
;
薛瑞
;
田招招【EN】Ding Ran
;
Xue Rui
;
Tian Zhaozhao
摘要:【中文】本公开提供了一种全张量磁梯度数据补偿优化方法及系统,针对全张量磁梯度数据的各磁梯度分量,采用多种工况下的不同实验数据,引入松弛系数与决策变量,建立模型的约束条件;根据数学优化模型和环境磁场的无源性、无旋性的基本特征,建立补偿优化模型的目标函数,结合约束条件从而建立基本补偿优化模型;根据空载数据求解补偿优化模型参数,根据补偿模型计算补偿后的带载数据,得到全张量磁梯度数据的补偿结果。本公开能有效消除全张量磁梯度数据中的平台干扰,还原数据的真实值。 【EN】The invention provides a full-tensor magnetic gradient data compensation optimization method and system, aiming at each magnetic gradient component of full-tensor magnetic gradient data, adopting different experimental data under various working conditions, introducing relaxation coefficients and decision variables, and establishing constraint conditions of a model; establishing an objective function of a compensation optimization model according to the basic characteristics of passivity and non-rotation of the mathematical optimization model and the environmental magnetic field, and establishing a basic compensation optimization model by combining constraint conditions; and solving parameters of the compensation optimization model according to the no-load data, and calculating compensated loaded data according to the compensation model to obtain a compensation result of the full tensor magnetic gradient data. The method can effectively eliminate the platform interference in the full tensor magnetic gradient data and restore the true value of the data.
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7:
[发明]
【中文】用于处理信息的方法和装置 【EN】Method and apparatus for processing information
申请号:
201811287919.8
公开号:CN111125501A 主分类号:G06F16/9535
申请人:
【中文】北京字节跳动网络技术有限公司【EN】BEIJING BYTEDANCE NETWORK TECHNOLOGY Co.,Ltd.
申请日:2018.10.31 公开日:2020.05.08
发明人:
【中文】龙睿
;
薛潇剑【EN】Long Rui
;
Xue Xiaojian
摘要:【中文】本申请实施例公开了用于处理信息的方法和装置。该方法的一具体实施方式包括:获取目标用户的用户信息和待呈现产品图像集合;对于待呈现产品图像集合中的待呈现产品图像,将该待呈现产品图像和用户信息输入预先训练的第一评价模型,获得第一评价结果,其中,第一评价结果用于表征所输入的用户信息所对应的用户对所输入的待呈现产品图像所指示的产品的感兴趣程度;基于所获得的第一评价结果,从待呈现产品图像集合中选取待呈现产品图像作为呈现用产品图像。该实施方式提高了信息处理的针对性和多样性。 【EN】The embodiment of the application discloses a method and a device for processing information. One embodiment of the method comprises: acquiring user information of a target user and a product image set to be presented; for a product image to be presented in a product image set to be presented, inputting the product image to be presented and user information into a pre-trained first evaluation model to obtain a first evaluation result, wherein the first evaluation result is used for representing the interest degree of a user corresponding to the input user information on a product indicated by the input product image to be presented; and selecting the product image to be presented from the product image set to be presented as a product image for presentation based on the obtained first evaluation result. The embodiment improves the pertinence and diversity of information processing.
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8:
[发明]
【中文】一种用于特定环境的监控分析系统及方法 【EN】Monitoring and analyzing system and method for specific environment
申请号:
201911233954.6
公开号:CN111126176A 主分类号:G06K9/00
申请人:
【中文】山东浪潮人工智能研究院有限公司【EN】SHANDONG INSPUR ARTIFICIAL INTELLIGENCE RESEARCH INSTITUTE Co.,Ltd.
申请日:2019.12.05 公开日:2020.05.08
发明人:
【中文】李雪
;
李锐
;
金长新【EN】Li Xue
;
Li Rui
;
Jin Changxin
摘要:【中文】本发明公开了一种用于特定环境的监控分析系统及方法,属于监控分析领域,要解决的技术问题为如何实现对特定环境电梯进行监控并进行异常行为分析。包括:视频采集模块,用于获取监控视频并对监控视频进行帧序列图像抽取,得到多帧原始视频图像;图像预处理模块,用于对原始视频图像进行图像序列预处理,得到去噪后视频图像;背景建模模块,用于基于背景差法对视频图像进行分离,得到背景图像和人体前景图像;特征提取模块,用于通过基于外观形状特征和基于运动特征结合的方法对人体前景图像进行特征提取,得到运动特征;运动轨迹模块,用于在运动轨迹异常时生成警报信息。方法为通过上述系统对特定环境内人体行为进行分析预警。 【EN】The invention discloses a monitoring and analyzing system and a monitoring and analyzing method for a specific environment, belongs to the field of monitoring and analyzing, and aims to solve the technical problem of how to monitor an elevator in the specific environment and analyze abnormal behaviors. The method comprises the following steps: the video acquisition module is used for acquiring a monitoring video and extracting a frame sequence image of the monitoring video to obtain a plurality of frames of original video images; the image preprocessing module is used for preprocessing an image sequence of an original video image to obtain a denoised video image; the background modeling module is used for separating the video image based on a background difference method to obtain a background image and a human body foreground image; the characteristic extraction module is used for extracting the characteristics of the human body foreground image by a method based on the combination of appearance shape characteristics and motion characteristics to obtain the motion characteristics; and the motion track module is used for generating alarm information when the motion track is abnormal. The method is to analyze and early warn human body behaviors in a specific environment through the system.
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9:
[发明]
【中文】基于重磁梯度数据张量不变量的目标深度估计方法及系统 【EN】Target depth estimation method and system based on tensor invariants of gravity-magnetic gradient data
申请号:
201911309471.X
公开号:CN111123380A 主分类号:G01V7/00
申请人:
【中文】山东大学【EN】SHANDONG University
申请日:2019.12.18 公开日:2020.05.08
发明人:
【中文】丁然
;
田招招
;
薛瑞【EN】Ding Ran
;
Tian Zhaozhao
;
Xue Rui
摘要:【中文】本发明公开提供了一种基于重磁梯度数据张量不变量的目标深度估计方法及系统。根据球体模型对象的重力梯度张量平面数据图,计算其梯度矩阵的特征值及特征值组合的张量不变量;利用张量不变量与总水平导数,通过反正切运算,建立水平距离与埋深之间的关系;根据两条45°等值线之间的距离,对目标体的深度进行估计。该方法对于单独地质体或距离较远的多个地质体情况下的深度估计问题,可以获得较高精度的计算结果。 【EN】The invention discloses a target depth estimation method and a target depth estimation system based on tensor invariants of gravity-magnetic gradient data. Calculating an eigenvalue of a gradient matrix of the spherical model object and tensor invariance of eigenvalue combination according to a gravity gradient tensor plane data graph of the spherical model object; establishing a relation between a horizontal distance and a buried depth by utilizing tensor invariants and a total horizontal derivative through an arc tangent operation; the depth of the target volume is estimated from the distance between the two 45 ° contours. The method can obtain a high-precision calculation result for the depth estimation problem under the condition of a single geologic body or a plurality of geologic bodies with long distances.
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10:
[发明]
【中文】快装通道式车辆辐射检测装置及检测方法 【EN】Fast-assembly channel type vehicle radiation detection device and detection method
申请号:
201911415355.6
公开号:CN111060952A 主分类号:G01T1/167
申请人:
【中文】中广核久源(成都)科技有限公司【EN】CGN JIUYUAN (CHENGDU) TECHNOLOGY Co.,Ltd.
申请日:2019.12.31 公开日:2020.04.24
发明人:
【中文】胡锐
;
肖明
;
薛永希【EN】Hu Rui
;
Xiao Ming
;
Xue Yongxi
摘要:【中文】本发明提供一种快装通道式车辆辐射检测装置及检测方法,该装置包括左下探测器组件和右下探测器组件;左下探测器组件和右下探测器组件底部均设有一个底座,左下探测器组件和右下探测器组件的顶部分别通过一组探测器组件连接装置与左上探测器组件和右上探测器组件连接;探测器组件连接装置包括设在左上探测器组件和右上探测器组件底部的外限位套和设在左下探测器组件和右下探测器组件顶部的用于插入外限位套内部的内插套;外限位套和内插套上分别设有第一螺孔和第二螺孔;每个外限位套的外侧端面与四个外支撑杆的顶部连接,外支撑杆的底部均与底座的上端面相接。该装置方便随时拆卸和安装,适合在特定区域临时组装并对通过的车辆进行检测。 【EN】The invention provides a fast-assembly channel type vehicle radiation detection device and a detection method, wherein the device comprises a left lower detector component and a right lower detector component; the bottoms of the left lower detector assembly and the right lower detector assembly are respectively provided with a base, and the tops of the left lower detector assembly and the right lower detector assembly are respectively connected with the left upper detector assembly and the right upper detector assembly through a group of detector assembly connecting devices; the detector component connecting device comprises outer limiting sleeves arranged at the bottoms of the upper left detector component and the upper right detector component and inner inserting sleeves arranged at the tops of the lower left detector component and the lower right detector component and used for being inserted into the outer limiting sleeves; the outer limiting sleeve and the inner inserting sleeve are respectively provided with a first screw hole and a second screw hole; the outer end face of each outer limiting sleeve is connected with the tops of the four outer supporting rods, and the bottoms of the outer supporting rods are connected with the upper end face of the base. The device is convenient to disassemble and assemble at any time, is suitable for temporary assembly in a specific area and detects passing vehicles.
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