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1:
[发明]
【中文】一种家用光伏发电系统 【EN】Household photovoltaic power generation system
申请号:
201911377960.9
公开号:CN110932652A 主分类号:H02S10/20
申请人:
【中文】义乌工商职业技术学院【EN】Yiwu Industrial & Commercial College
申请日:2019.12.27 公开日:2020.03.27
发明人:
【中文】李时辉
;
王波
;
王小强
;
朱加民
;
郑陈孙【EN】Li Shihui
;
Wang Bo
;
Wang Xiaoqiang
;
Zhu Jiamin
;
Zheng Chensun
摘要:【中文】本发明提供了一种家用光伏发电系统,该家用光伏发电系统包括:光伏组件,电性连接至蓄电池,用于接收太阳能,并将太阳能转换为电能存储至蓄电池中;蓄电池用于接收光伏组件的电能;充放电控制器连接至蓄电池,用于对蓄电池的充放电进行控制;逆变器连接在光伏组件与蓄电池之间,用于将光伏组件的直流电转换为交流电进行存储;采样电路对蓄电池输出的电流进行采样;报警装置用于当蓄电池的输出电流不符合预设条件时报警。本发明实施例通过在家用光伏发电系统中设置采样电路、充放电控制器以及报警装置,能够对光伏发电系统的使用情况进行监测,当发电系统输出的电流出现不正常情况时,能够及时通知用户,保证用户用电安全。 【EN】The invention provides a household photovoltaic power generation system, which comprises: the photovoltaic module is electrically connected to the storage battery and used for receiving solar energy and converting the solar energy into electric energy to be stored in the storage battery; the storage battery is used for receiving the electric energy of the photovoltaic module; the charge and discharge controller is connected to the storage battery and is used for controlling the charge and discharge of the storage battery; the inverter is connected between the photovoltaic module and the storage battery and used for converting the direct current of the photovoltaic module into alternating current for storage; the sampling circuit samples the current output by the storage battery; the alarm device is used for giving an alarm when the output current of the storage battery does not accord with the preset condition. According to the embodiment of the invention, the sampling circuit, the charge and discharge controller and the alarm device are arranged in the household photovoltaic power generation system, so that the service condition of the photovoltaic power generation system can be monitored, and when the current output by the power generation system is abnormal, a user can be informed in time, and the power utilization safety of the user is ensured.
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2:
[发明]
【中文】一种并网光伏温室 【EN】Grid-connected photovoltaic greenhouse
申请号:
201911381345.5
公开号:CN110999681A 主分类号:A01G9/14
申请人:
【中文】义乌工商职业技术学院【EN】YIWU INDUSTRIAL & COMMERCIAL College
申请日:2019.12.27 公开日:2020.04.14
发明人:
【中文】李时辉
;
王波
;
朱加民
;
王小强
;
柯伟聪【EN】Li Shihui
;
Wang Bo
;
Zhu Jiamin
;
Wang Xiaoqiang
;
Ke Weicong
摘要:【中文】本申请提供了一种并网光伏温室,该并网光伏温室包括:并网光伏顶,设置在并网光伏温室的顶部,由光伏组件构成,用于吸收太阳能为并网光伏温室供电;透光膜墙,设置在并网光伏温室的四周,用于透过自然光;种植框架,包括第一运输区域、第二运输区域以及种植区域,种植区域划分为多层种植架,每个种值架上都设置有轨道,轨道连接第一运输区域和第二运输区域;种植盘,种植盘底部设置有与种植盘配合的滑轨。本发明实施例通过在温室顶部设置并网光伏顶,保证在日照不足仍能够确保温室内用电的稳定,并且通过设置种植框架和种植盘,种植盘可以在种植框架上来回运动,高效利用温室空间,且能够保证不同作物对环境的种植需求,提高生产效率。 【EN】The application provides grid-connected photovoltaic greenhouse, this grid-connected photovoltaic greenhouse includes: the grid-connected photovoltaic roof is arranged at the top of the grid-connected photovoltaic greenhouse, is composed of photovoltaic components and is used for absorbing solar energy to supply power to the grid-connected photovoltaic greenhouse; the light-transmitting film walls are arranged on the periphery of the grid-connected photovoltaic greenhouse and are used for transmitting natural light; the planting frame comprises a first transportation area, a second transportation area and a planting area, the planting area is divided into a plurality of layers of planting frames, each planting frame is provided with a track, and the tracks are connected with the first transportation area and the second transportation area; plant the dish, plant the dish bottom and be provided with plant a complex slide rail. According to the embodiment of the invention, the grid-connected photovoltaic roof is arranged at the top of the greenhouse, so that the stability of electricity utilization in the greenhouse can be ensured even if sunlight is insufficient, the planting plate can move back and forth on the planting frame by arranging the planting frame and the planting plate, the greenhouse space is efficiently utilized, the planting requirements of different crops on the environment can be ensured, and the production efficiency is improved.
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3:
[发明]
【中文】一种均衡长期能效和网络稳定性的C-RAN系统资源分配方法 【EN】C-RAN system resource allocation method for balancing long-term energy efficiency and network stability
申请号:
201911296078.1
公开号:CN111107645A 主分类号:H04W72/04
申请人:
【中文】东南大学【EN】SOUTHEAST University
申请日:2019.12.16 公开日:2020.05.05
发明人:
【中文】朱鹏程
;
徐冰倩
;
李佳珉
;
王东明
;
尤肖虎【EN】Zhu Pengcheng
;
Xu Bingqian
;
Li Jiamin
;
Wang Dongming
;
You Xiaohu
摘要:【中文】本发明提供了一种均衡长期能效和网络稳定性的C‑RAN系统资源分配方法,包括:建立结合能量协作的混合能量供应C‑RAN数学模型;建立长期能效优化问题的目标函数和约束条件;基于李雅普诺夫方程和罚函数的思想,将系统长期能效优化问题转化为单时隙优化问题;采用联合资源分配优化算法求解转化后的单时隙优化问题。本发明能够优化分配系统资源(传输功率、协作能量、电网供能),在有效提高系统长期能效和网络稳定性之间实现均衡,优化系统性能,使得采用能量协作的混合能量供应C‑RAN系统满足各种长期和瞬时服务质量需求,具有广阔的应用前景。 【EN】The invention provides a C-RAN system resource allocation method for balancing long-term energy efficiency and network stability, which comprises the following steps: establishing a hybrid energy supply C-RAN mathematical model combined with energy cooperation; establishing an objective function and a constraint condition of a long-term energy efficiency optimization problem; converting the long-term energy efficiency optimization problem of the system into a single-time slot optimization problem based on the concepts of the Lyapunov equation and a penalty function; and solving the converted single-time-slot optimization problem by adopting a joint resource allocation optimization algorithm. The invention can optimize and distribute system resources (transmission power, cooperation energy and power supply of a power grid), realize balance between effectively improving the long-term energy efficiency and network stability of the system, and optimize the performance of the system, so that the hybrid energy supply C-RAN system adopting energy cooperation meets various long-term and instantaneous service quality requirements, and has wide application prospect.
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4:
[发明]
【中文】一种多源异构数据的自适应变频增量更新方法 【EN】Self-adaptive frequency conversion increment updating method for multi-source heterogeneous data
申请号:
202010036197.X
公开号:CN111259025A 主分类号:G06F16/23
申请人:
【中文】河海大学【EN】HOHAI University
申请日:2020.01.14 公开日:2020.06.09
发明人:
【中文】朱跃龙
;
丁昱凯
;
冯钧
;
陆佳民【EN】Zhu Yuelong
;
Ding Yukai
;
Feng Jun
;
Lu Jiamin
摘要:【中文】本发明公开了一种多源异构数据的自适应变频增量更新方法,包括如下步骤:确定数据源与核心数据库集群;构建数据更新模型;部署并初始化数据更新模型;通过数据更新模型获取各数据源处数据;比较所获数据时间戳,判断是否需要更新;将更新数据加载至核心数据库集群;根据更新数据刷新频率配置表与时间戳记录表。本发明可以根据数据来源及数据结构动态更新数据,可自适应调整不同数据源更新频率,灵活性好,配置方便,更新速度较快,可扩展性较强。 【EN】The invention discloses a self-adaptive frequency conversion increment updating method of multi-source heterogeneous data, which comprises the following steps: determining a data source and a core database cluster; constructing a data updating model; deploying and initializing a data updating model; acquiring data at each data source through a data updating model; comparing the obtained data time stamps and judging whether the data time stamps need to be updated or not; loading the updated data to the core database cluster; and refreshing the frequency configuration table and the time stamp record table according to the updated data. The invention can dynamically update data according to the data source and the data structure, can adaptively adjust the update frequency of different data sources, and has the advantages of good flexibility, convenient configuration, high update speed and strong expandability.
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5:
[发明]
【中文】杂交瘤细胞株3H7-8-8、抗体及其应用 【EN】Hybridoma cell strain 3H7-8-8, antibody and application thereof
申请号:
201910937173.9
公开号:CN110964699A 主分类号:C12N5/20
申请人:
【中文】浙江大学【EN】ZHEJIANG University
申请日:2019.09.29 公开日:2020.04.07
发明人:
【中文】蔡建庭
;
徐丽怡
;
朱永良
;
余琳
;
陈佳敏
;
陈肖【EN】Cai Jianting
;
Xu Liyi
;
Zhu Yongliang
;
Yu Lin
;
Chen Jiamin
;
Chen Xiao
摘要:【中文】本发明公开了一种杂交瘤细胞株3H7‑8‑8、抗体及其应用。所涉及的杂交瘤细胞株的保藏编号为CCTCC NO:C2019141。所涉及的抗体为本发明的杂交瘤细胞株3H7‑8‑8分泌的抗体。所涉及的应用为单克隆抗体用于KRAS突变检测的应用。 【EN】The invention discloses a hybridoma cell strain 3H7-8-8, an antibody and application thereof. The preservation number of the related hybridoma cell strain is CCTCC NO: C2019141. The related antibody is an antibody secreted by the hybridoma cell strain 3H 7-8-8. The application relates to the application of the monoclonal antibody in KRAS mutation detection.
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6:
[发明]
【中文】一种可高效散热的储能电池散热支架 【EN】Energy storage battery heat dissipation support capable of efficiently dissipating heat
申请号:
201911138812.1
公开号:CN111029496A 主分类号:H01M2/10
申请人:
【中文】江苏科技大学【EN】JIANGSU UNIVERSITY OF SCIENCE AND TECHNOLOGY
申请日:2019.11.20 公开日:2020.04.17
发明人:
【中文】施红
;
胡亮春
;
朱信龙
;
邹燚涛
;
杨凯杰
;
徐文冰
;
陈佳敏【EN】Shi Hong
;
Hu Liangchun
;
Zhu Xinlong
;
Zou Yitao
;
Yang Kaijie
;
Xu Wenbing
;
Chen Jiamin
摘要:【中文】本发明公开一种可高效散热的储能电池散热支架,包括支架本体、强制通风模块、水冷散热底盘模块和流场控制装置模块,强制通风模块包括通风管道、进风口和出风口,在每个通风管道内连接一个所述流场控制装置模块;水冷散热底盘模块设在支架本体底部。该散热支架上综合了风冷和水冷两种冷却模式,冷却效果提升,且将通风管道与支架本体设计一体化,不需再另设风道,通风管道中的导流板位置和角度可在不同的工况下灵活调节,满足了储能电池冷却所需的风量并保证了在各工况下风道送风的均匀性;可通过通风管道两端公母口的配合进行多支架模块的叠加安装,实现了热管理结构模块化,结构紧凑,易拆装易集成。 【EN】The invention discloses an energy storage battery heat dissipation support capable of dissipating heat efficiently, which comprises a support body, a forced ventilation module, a water-cooling heat dissipation chassis module and a flow field control device module, wherein the forced ventilation module comprises ventilation pipelines, an air inlet and an air outlet, and one flow field control device module is connected in each ventilation pipeline; the water-cooling heat dissipation chassis module is arranged at the bottom of the bracket body. The heat dissipation bracket integrates two cooling modes of air cooling and water cooling, the cooling effect is improved, the ventilating duct and the bracket body are designed and integrated, an air duct is not required to be additionally arranged, the position and the angle of the flow guide plate in the ventilating duct can be flexibly adjusted under different working conditions, the air quantity required by cooling the energy storage battery is met, and the air supply uniformity of the air duct under each working condition is ensured; the multiple support modules can be stacked and installed through the matching of the male and female openings at the two ends of the ventilation pipeline, so that the modularization of the heat management structure is realized, the structure is compact, and the assembly and disassembly are easy to integrate.
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7:
[发明]
【中文】鼠李糖乳杆菌胞外多糖及其制备方法和所用菌 【EN】Lactobacillus rhamnosus exopolysaccharide, preparation method thereof and bacteria used thereby
申请号:
202010028764.7
公开号:CN111154676A 主分类号:C12N1/20
申请人:
【中文】浙江工商大学【EN】ZHEJIANG GONGSHANG University
申请日:2020.01.11 公开日:2020.05.15
发明人:
【中文】顾青
;
周涛
;
周佳敏
;
郦萍
;
朱宇竹
;
周青青【EN】Gu Qing
;
Zhou Tao
;
Zhou Jiamin
;
Li Ping
;
Zhu Yuzhu
;
Zhou Qingqing
摘要:【中文】本发明公开了鼠李糖乳杆菌(Lactobacillus rhamnosus)ZFM231,保藏编号为:CCTCC NO:M 2019883。该菌株在葡萄糖为碳源的M RS培养基中培养,培养后的粗多糖经DEAE‑52柱层析以及Sephadex G‑100凝胶柱分离纯化后得到四种不同的胞外多糖组分EPS‑0M,EPS‑0.1M,EPS‑0.3M和EPS‑0.5M。本发明鼠李糖乳杆菌胞外多糖及其四个组分具有较强的抗氧化能力;四个组分具有显著的脂肪酶抑制活性,且有较强的降低胆固醇及甘油三酯的效果。通过构建肠道微生物体外发酵模型实验表明各组分均对肠道菌群有较好的调节作用。 【EN】The invention discloses Lactobacillus rhamnosus (Lactobacillus rhamnosus) ZFM231, which has a preservation number of: CCTCC NO: M2019883. The strain is cultured in an M RS culture medium with glucose as a carbon source, and four different extracellular polysaccharide components of EPS-0M, EPS-0.1M, EPS-0.3M and EPS-0.5M are obtained after the cultured crude polysaccharide is separated and purified by DEAE-52 column chromatography and Sephadex G-100 gel column. The lactobacillus rhamnosus exopolysaccharide and the four components thereof have stronger antioxidant capacity; the four components have obvious lipase inhibition activity and stronger effect of reducing cholesterol and triglyceride. Experiments for constructing an in-vitro fermentation model of the intestinal microorganisms show that all the components have better regulation effect on the intestinal flora.
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8:
[发明]
【中文】加入空间众包工作者评分要素的空间众包任务分配方法 【EN】Spatial crowdsourcing task allocation method adding scoring elements of spatial crowdsourcing workers
申请号:
202010009499.8
公开号:CN111191952A 主分类号:G06Q10/06
申请人:
【中文】合肥城市云数据中心股份有限公司【EN】HEFEI CITY CLOUD DATA CENTER Co.,Ltd.
申请日:2020.01.06 公开日:2020.05.22
发明人:
【中文】冉家敏
;
刘胜军
;
朱旭辉
;
周芳
;
倪志伟
;
彭鹏【EN】Ran Jiamin
;
Liu Shengjun
;
Zhu Xuhui
;
Zhou Fang
;
Ni Zhiwei
;
Peng Peng
摘要:【中文】本发明公开了一种加入空间众包工作者评分要素的空间众包任务分配方法,其步骤包括:1根据时空特征将任一地理区域划分为一系列连续的时空环境;2设置时间戳和区域面积;3获取时空环境下所有空间众包任务集合;4获取任务集合中未被接单任务,并依次编号;5获取时空环境下所有空间众包工作者集合;6获取工作者集合中未接单工作者,并依次编号;7采用改进的离散萤火虫群优化算法为时空环境下每一个未被接单任务匹配一个未接单工作者,从而使得在时空环境下的任务分配质量得分最优。本发明能实现空间众包任务分配时空间众包工作者评分总和尽可能高的同时空间众包工作者总旅行成本尽可能小的双目标,从而提高任务分配的效率和分配质量。 【EN】The invention discloses a space crowdsourcing task allocation method adding scoring elements of space crowdsourcing workers, which comprises the following steps: 1, dividing any geographic area into a series of continuous space-time environments according to space-time characteristics; 2 setting time stamp and area; 3, acquiring all spatial crowdsourcing task sets in the space-time environment; 4, acquiring the tasks which are not received in the task set, and numbering in sequence; 5, acquiring all spatial crowdsourcing worker sets in the space-time environment; 6, acquiring missed single workers in the worker set, and numbering in sequence; and 7, matching each missed order worker for each missed order task in the space-time environment by adopting an improved discrete firefly swarm optimization algorithm, so that the task distribution quality score in the space-time environment is optimal. The invention can realize the dual goals that the total score of the space crowdsourcing workers is as high as possible and the total travel cost of the space crowdsourcing workers is as low as possible when the space crowdsourcing tasks are distributed, thereby improving the efficiency and the distribution quality of the task distribution.
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9:
[发明]
【中文】一种基于地下水水文地质试验的数值模拟检测方法 【EN】Numerical simulation detection method based on groundwater hydrogeology test
申请号:
201911089050.0
公开号:CN110929390A 主分类号:G06F30/20
申请人:
【中文】光大环保(盐城)固废处置有限公司
;
中国环境科学研究院
;
上海市岩土地质研究院有限公司
;
光大绿色环保管理(深圳)有限公司【EN】Everbright environmental protection (Yancheng) solid waste disposal Co., Ltd
;
CHINESE RESEARCH ACADEMY OF ENVIRONMENTAL SCIENCES
;
Shanghai geo Geological Research Institute Co., Ltd.
;
Everbrig
申请日:2019.11.08 公开日:2020.03.27
发明人:
【中文】张建平
;
杨亮
;
杨铸
;
刘玉强
;
徐亚
;
顾佳珉
;
谢世红
;
李任政
;
姚孟杰【EN】Zhang Jianping
;
Yang Liang
;
Yang Zhu
;
Liu Yuqiang
;
Xu Ya
;
Gu Jiamin
;
Xie Shihong
;
Li Renzheng
;
Yao Mengjie
摘要:【中文】本发明公开了一种基于地下水水文地质试验的数值模拟检测方法,所述方法包括如下步骤:步骤1:采集模拟区场地实际抽水试验中的水位变化数据;步骤2:基于所述水位变化数据,建立地下水流概念模型;步骤3:基于地下水流概念模型,正演模拟并初步确定缺陷情形;以及步骤4:根据所述缺陷情形进行反演计算以得出渗透系数,调整所述渗透系数,并且基于所述渗透系数来定量评估垂直防渗墙的完整性。该方法既可以定量检测垂直防渗墙的整体防渗性能,又能够精确模拟分析垂直防渗墙结构缺陷处的具体位置及规模大小等,在很大程度上弥补了垂直反射法、弹性波CT法等检测技术的不足之处,对于完善垂直防渗墙质量检测体系至关重要。 【EN】The invention discloses a numerical simulation detection method based on a groundwater hydrogeological test, which comprises the following steps: step 1: collecting water level change data in an actual pumping test of a simulation area site; step 2: establishing an underground water flow conceptual model based on the water level change data; and step 3: based on the underground water flow conceptual model, forward modeling and preliminarily determining the defect situation; and step 4: performing an inversion calculation based on the defect condition to derive a permeability coefficient, adjusting the permeability coefficient, and quantitatively evaluating the integrity of the vertical cut-off wall based on the permeability coefficient. The method can quantitatively detect the whole anti-seepage performance of the vertical anti-seepage wall, can accurately simulate and analyze the specific position, the scale and the like of the structural defect of the vertical anti-seepage wall, makes up for the defects of detection technologies such as a vertical reflection method, an elastic wave CT method and the like to a great extent, and is vital to the improvement of a quality detection system of the vertical anti-seepage wall.
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10:
[发明]
【中文】应用程序的数据访问方法及装置 【EN】Data access method and device for application program
申请号:
201911349814.5
公开号:CN111159735A 主分类号:G06F21/60
申请人:
【中文】珠海荣邦智能科技有限公司【EN】ZHUHAI RONGBANG INTELLIGENT TECHNOLOGY Co.,Ltd.
申请日:2019.12.24 公开日:2020.05.15
发明人:
【中文】陈伟
;
王伍成
;
颜武
;
吴俊成
;
李国顺
;
黄昌松
;
何浩玲
;
朱磊
;
韦家敏
;
陈林锋
;
余涛
;
崔彬【EN】Chen Wei
;
Wang Wucheng
;
Yan Wu
;
Wu Juncheng
;
Li Guoshun
;
Huang Changsong
;
He Haoling
;
Zhu Lei
;
Wei Jiamin
;
Chen Linfeng
;
Yu Tao
;
Cui Bin
摘要:【中文】本发明公开了一种应用程序的数据访问方法及装置。其中,该方法包括:检测第一应用程序对第二应用程序的数据访问请求,其中,上述第一应用程序和第二应用程序运行于同一操作系统中;在检测到上述数据访问请求后,依据上述第二应用程序的权限列表,判断上述第一应用程序是否具备对上述第二应用程序的数据访问权限;若判断结果指示具备上述数据访问权限,则允许上述第一应用程序执行访问操作,若判断结果指示不具备上述数据访问权限,则拒绝上述第一应用程序执行上述访问操作。本发明解决了现有技术中无法实现有效管理应用程序的数据访问权限的技术问题。 【EN】The invention discloses a data access method and device for an application program. Wherein, the method comprises the following steps: detecting a data access request of a first application program to a second application program, wherein the first application program and the second application program run in the same operating system; after the data access request is detected, judging whether the first application program has the data access authority to the second application program according to the authority list of the second application program; and if the judgment result indicates that the data access authority is possessed, allowing the first application program to execute the access operation, and if the judgment result indicates that the data access authority is not possessed, refusing the first application program to execute the access operation. The invention solves the technical problem that the data access authority of the application program cannot be effectively managed in the prior art.
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