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申请号:201911406194.4 公开号:CN111242563A 主分类号:G06Q10/10
申请人:【中文】航天信息股份有限公司【EN】AISINO CORPORATION Inc. 申请日:2019.12.31 公开日:2020.06.05
摘要:【中文】本发明公开了一种用于对票据数据进行处理的方法及系统,其中方法包括:从请求设备接收针对票据数据进行处理的数据处理请求,基于认证内容对认证数据进行初始身份验证;基于所述数据内容生成动态认证信息,并将所述动态认证信息发送给请求设备;确定所述动态应答信息和数据内容的匹配度,并且当所述动态应答信息和数据内容的匹配度大于匹配阈值时,根据请求类型确定所述数据处理请求的处理类型;当处理类型为数据查询时,根据查询结果进行反馈;当处理类型为数据处理时,根据所述请求类型确定与数据处理相关联的处理设备,并将数据处理请求转发给相关联的处理设备。 【EN】The invention discloses a method and a system for processing bill data, wherein the method comprises the following steps: receiving a data processing request for processing the bill data from the requesting device, and performing initial identity verification on the authentication data based on the authentication content; generating dynamic authentication information based on the data content, and sending the dynamic authentication information to a request device; determining the matching degree of the dynamic response information and the data content, and determining the processing type of the data processing request according to the request type when the matching degree of the dynamic response information and the data content is greater than a matching threshold value; when the processing type is data query, feedback is carried out according to a query result; and when the processing type is data processing, determining the processing equipment associated with the data processing according to the request type, and forwarding the data processing request to the associated processing equipment.
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申请号:202411201587.2 公开号:CN119062512A 主分类号:F03D7/00
摘要:本公开提出一种基于数字孪生的风机控制方法、装置、设备和存储介质,该方法包括:构建风电机组机理模型,其中,机理模型包括风机整机模型、单自由度风机振动模型和尾流效应模型;对机理模型进行模型校准得到初始数字孪生模型;获取风电机组的外部环境参数并输入至初始数字孪生模型,以确定执行预设控制策略的预测发电效益;确定基于外部环境参数执行预设控制策略的真实发电效益;基于预测和真实发电效益对初始数字孪生模型进行调整得到目标数字孪生模型,基于目标数字孪生模型确定目标风机控制策略,其中,目标数字孪生模型的目标函数用于最小化尾流影响。由此,能够基于数字孪生模型综合考虑尾流影响有效提升所得目标风机控制策略的发电效益。
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申请号:202411425287.2 公开号:CN119312049A 主分类号:G06F18/20
摘要:本申请公开了一种风速随机分布参数的确定方法和装置、存储介质、电子装置、计算机程序产品,该方法包括:获取观测点的历史环境监测数据;基于历史环境监测数据,采用预先建立的贝叶斯网络模型估计观测点的第一风速随机分布参数。采用第一风速随机分布参数和历史环境监测数据作为训练样本,训练长短期记忆神经网络模型,得到风速随机分布参数预测模型;基于观测点的当前环境监测数据,采用风速随机分布参数预测模型,确定观测点的第二风速随机分布参数。利用贝叶斯网络模型和长短期记忆神经网络模型组合起来,能够快速且准确的预测风速随机分布参数。
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申请号:202111089021.1 公开号:CN113718841A 主分类号:E02D27/52
摘要:本发明提供了一种海上风电防冲刷装置,海上风电防冲刷装置包括桩基础、套筒和消能件,所述桩基础包括在其轴向上相互连接的第一部分和第二部分,所述第二部分埋入海床中,所述海床具有海床面,所述第一部分位于所述海床面的上方;所述套筒套设在所述第一部分上且其底部支撑在所述海床面上,所述套筒的外周面设有向外突出的消能件,和/或所述套筒的周壁上设有通孔。根据本发明实施例的海上风电防冲刷装置具有扰流效果好和稳定性更高等优点。
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申请号:202211632150.5 公开号:CN118228847A 主分类号:G06Q10/04
摘要:本发明提供一种抽油机井举升智能设计算法,该抽油机井举升智能设计算法包括:步骤1,采集油田数据制备抽油机井数据库,并确定指标体系;步骤2,对采集样本进行数据预处理及特征工程;步骤3,进行算法建模并测试,选择最优算法;步骤4,建立抽油机井智能优化算法。该抽油机井举升智能设计算法建立抽油机井智能优化算法进一步提升油井生产参数及配套工艺设计结果的准确率,能够突破现有技术的局限,引领油井举升优化设计进入新的阶段。通过应用基于数据分析的抽油机井举升设计智能优化方法,有助于保证抽油机举升工艺系统满足生产要求,提高整个系统运行的稳定性,延长设备的整体寿命。
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申请号:201911235488.5 公开号:CN110899231A 主分类号:B08B3/12
申请人:【中文】哈尔滨工业大学【EN】HARBIN INSTITUTE OF TECHNOLOGY 申请日:2019.12.05 公开日:2020.03.24
摘要:【中文】一种高效率超声清洗装置及方法,它涉及超声空化技术领域。本发明为解决现有超声波清洗仪清洗效果差,效率低和声能利用率低的问题。清洗装置包括清洗槽、样品放置台、超声波发生器、超声头和一组滑轨,样品放置台设置在清洗槽内,超声波发生器设置在清洗槽的外侧,超声波发生器的输出端与超声头连接,超声头的形状为框状,超声头设置在清洗槽内且套装在样品放置台的外侧,超声波发生器的下方沿长度方向设有一组滑轨,超声波发生器的下端面上设有一组辊轮,辊轮与滑轨滑动连接。清洗方法:选择超声波发生器;组装超声波发生器;加入清洗液;超声清洗。本发明用于超声波清洗。 【EN】A high-efficiency ultrasonic cleaning device and a method relate to the technical field of ultrasonic cavitation. The invention aims to solve the problems of poor cleaning effect, low efficiency and low sound energy utilization rate of the existing ultrasonic cleaning instrument. The cleaning device comprises a cleaning tank, a sample placing table, an ultrasonic generator, an ultrasonic head and a set of sliding rails, wherein the sample placing table is arranged in the cleaning tank, the ultrasonic generator is arranged on the outer side of the cleaning tank, the output end of the ultrasonic generator is connected with the ultrasonic head, the ultrasonic head is shaped like a frame, the ultrasonic head is arranged in the cleaning tank and sleeved on the outer side of the sample placing table, a set of sliding rails is arranged below the ultrasonic generator along the length direction, a set of rolling wheels are arranged on the lower end face of the ultrasonic generator, and the rolling wheels are slidably connected with the sliding rails. The cleaning method comprises the following steps: selecting an ultrasonic generator; assembling an ultrasonic generator; adding a cleaning solution; and (4) ultrasonic cleaning. The ultrasonic cleaning device is used for ultrasonic cleaning.
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申请号:202411685376.0 公开号:CN119543252A 主分类号:H02J3/32
摘要:本申请公开了一种风机储能系统的运行控制方法,其中,上述方法包括:获取功率输出;将功率输出与风机储能系统的自耗功率比较,确定储能设备的充放电状态;在基于充放电状态确定储能设备处于放电状态的情况下,确定放电状态下的第一控制系数,按照第一控制系数确定第一储能功率参考值,基于第一储能功率参考值控制风机储能系统的储能变换器的工作状态;在基于充放电状态确定储能设备处于充电状态的情况下,确定充电状态下的第二控制系数,按照第二控制系数确定第二储能功率参考值,并基于第二储能功率参考值控制风机储能系统的储能变换器的工作状态。解决了相关技术中多变的运行工况下,风机储能系统可能会出现功率不平衡,影响供电质量的问题。
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申请号:202411706952.5 公开号:CN119695956A 主分类号:H02J3/24
摘要:本申请公开了一种电力系统的运行控制方法,其中,上述方法包括:获取电力系统的实时负荷,以及频率变化量,以及电力系统的风电机组的环境风速;将实时负荷和设定的标准负荷进行比较,确定负荷比较结果,以及将频率变化量与设定的频率变化量阈值进行比较,确定频率比较结果;在基于负荷比较结果确定系统负荷发生变化、基于频率比较结果确定频率变化量满足频率波动条件,以及环境风速满足风速条件的情况下,对风电机组进行惯量响应处理;以及在对电力系统中惯量响应处理进行调整达到预设时长的情况下,控制电力系统中储能设备的功率输出,以对电力系统的系统频率进行调整。解决了相关技术中电力系统频率调节的能力较差的问题。
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申请号:201910730732.9 公开号:CN110908682A 主分类号:G06F8/65
摘要:【中文】本发明实施例公开了一种车辆控制器的固件升级方法、系统、车辆和存储介质,该方法包括:车载多媒体主机接收到用户触发的升级连通指令后,控制外接通用串行总线USB设备与所述升级连通指令对应的目标控制器连通;车载多媒体主机确认外接USB设备中的升级数据包满足升级条件时,向用户展示对应所述目标控制器的升级启动按钮;车载多媒体主机根据用户触发所述升级启动按钮生成固件升级指令,控制所述目标控制器基于所述升级数据包进行固件升级。本发明实施例实现了通过USB对车载控制器进行固件升级,大大缩短了固件升级时间,有效提高了车辆控制器的固件升级效率,操作简单且不需要专业设备。 【EN】The embodiment of the invention discloses a firmware upgrading method, a system, a vehicle and a storage medium of a vehicle controller, wherein the method comprises the following steps: after receiving an upgrading communication instruction triggered by a user, the vehicle-mounted multimedia host controls an external Universal Serial Bus (USB) device to be communicated with a target controller corresponding to the upgrading communication instruction; when the vehicle-mounted multimedia host confirms that an upgrading data packet in the external USB equipment meets the upgrading condition, an upgrading starting button corresponding to the target controller is displayed to a user; and the vehicle-mounted multimedia host generates a firmware upgrading instruction according to the upgrading starting button triggered by the user, and controls the target controller to upgrade the firmware based on the upgrading data packet. The embodiment of the invention realizes the firmware upgrade of the vehicle-mounted controller through the USB, greatly shortens the firmware upgrade time, effectively improves the firmware upgrade efficiency of the vehicle controller, and has simple operation and no need of professional equipment.
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申请号:201911134372.2 公开号:CN110894974A 主分类号:F24D13/04
申请人:【中文】南昌大学【EN】Lattice Power (Jiangxi) Corp. 申请日:2019.11.19 公开日:2020.03.20
摘要:【中文】本发明涉及一种基于干旱地区的供暖供电蓄能装置。包括风力发电机、光伏发电机、箱体。风力发电机和光伏发电机在箱体的外面,在箱体内,上端设有保温水箱,保温水箱内设有电热丝和温度传感器,中间部分为散热片和温差发电片,下端为冷水箱和水泵,各部分间通过带有阀门的水管相连,自上而下形成流道。借助水的巨大比热容,在白天用电低谷时期,装置用多余的风电和光电加热隔热箱内的水体,从而将不稳定难储存的电能转化为稳定易储存的内能。在夜间的低温时期,保温箱内的热水放至散热片内。通过热对流,将热水的内能转化为箱体内空气的热能,从而提高室温。 【EN】The invention relates to a heating, power supplying and energy storing device based on a drought area. Comprises a wind driven generator, a photovoltaic generator and a box body. The wind driven generator and the photovoltaic generator are arranged outside the box body, a heat preservation water tank is arranged at the upper end in the box body, heating wires and a temperature sensor are arranged in the heat preservation water tank, the middle part of the heat preservation water tank is provided with cooling fins and a temperature difference power generation fin, the lower end of the heat preservation water tank is provided with a cold water tank and a water pump, all the parts are connected through a water pipe with a valve, and a flow passage is formed. With the help of the huge specific heat capacity of water, in the daytime, in the period of the power consumption valley, the device uses the water in the unnecessary wind-powered electricity generation and the photoelectric heating heat insulation box to turn the electric energy that is unstable and difficult to store into the internal energy that is stable and easy to store. In the low-temperature period at night, hot water in the heat insulation box is put into the radiating fins. The internal energy of the hot water is converted into the heat energy of the air in the box body through heat convection, so that the room temperature is improved.
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