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1:
[发明]
【中文】电力用油的置换系统及置换方法 【EN】Replacement system and replacement method for electric power oil
申请号:
201911338348.0
公开号:CN110903887A 主分类号:C10M175/00
申请人:
【中文】国网湖北省电力有限公司孝感供电公司【EN】State Grid Hubei Electric Power Co., Ltd. Xiaogan power supply company
申请日:2019.12.23 公开日:2020.03.24
发明人:
【中文】任乔林
;
肖洒
;
任贝婷
;
肖亚平
;
蔡世腾
;
张之昱
;
黄晓舟【EN】Ren Qiaolin
;
Xiao Sa
;
Ren Beiting
;
Xiao Yaping
;
Cai Shiteng
;
Zhang Zhiyu
;
Huang Xiaozhou
摘要:【中文】一种电力用油的置换系统及置换方法,包括吸附罐,吸附罐底部和顶部分别设有进油口和出油口,进油口通过管道与加热器输出端连接,加热器的输入端通过管道与油泵输出端连接,油泵的输入端通过管道与滤油机输出端连接,滤油机输入端通过管道与缓冲罐底部出口连接,缓冲罐顶部入口通过管道与吸附罐出油口连接。提供了一个高效的废油置换系统,能够持续地对大量的废油进行置换除污,能够保证除污质量,提高了置换效率。 【EN】The utility model provides a replacement system and replacement method of power oil, includes the adsorption tank, and adsorption tank bottom and top are equipped with oil inlet and oil-out respectively, and the oil inlet passes through the pipeline to be connected with the heater output, and the input of heater passes through the pipeline to be connected with the oil pump output, and the input of oil pump passes through the pipeline to be connected with the oil filter output, and the oil filter input passes through pipeline and buffer tank bottom exit linkage, and buffer tank top entry passes through the pipeline and is connected with the adsorption tank oil-out. The efficient waste oil replacement system is provided, a large amount of waste oil can be continuously replaced and decontaminated, the decontamination quality can be guaranteed, and the replacement efficiency is improved.
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2:
[发明]
【中文】一种变电站退役蓄电池检测及梯级利用方法 【EN】Method for detecting and utilizing transformer substation retired storage battery in cascade mode
申请号:
201911408061.0
公开号:CN111129622A 主分类号:H01M10/42
申请人:
【中文】孝感市光源电力集团有限责任公司【EN】XIAOGAN GUANGYUAN ELECTRIC POWER GROUP Co.,Ltd.
申请日:2019.12.31 公开日:2020.05.08
发明人:
【中文】杨新国
;
周菊华
;
陈卫东
;
宋诚
;
华哲
;
任乔林
;
肖洒【EN】Yang Xinguo
;
Zhou Juhua
;
Chen Weidong
;
Song Cheng
;
Hua Zhe
;
Ren Qiaolin
;
Xiao Sa
摘要:【中文】本发明涉及一种变电站退役蓄电池检测及梯级利用方法,首先采用各种可行的方法尽可能修复变电站退运蓄电池,然后将修复好的电池接入到监控平台和远程运营平台,通过远程运营平台的调度控制充电平台为蓄电池充电以及为用电终端供电,在此期间监控平台实时监测蓄电池的状态并能对异常状况进行告警,便于管理人员维护管理。本发明方法最大限度的实现了变电站退运蓄电池的修复和再利用,拓展了其回收应用范围和利用率,实现了蓄电池的信息化、智能化管理,具有较好的经济和社会效益。 【EN】The invention relates to a transformer substation retired storage battery detection and cascade utilization method, which comprises the steps of firstly repairing a transformer substation retired storage battery as much as possible by adopting various feasible methods, then connecting the repaired battery to a monitoring platform and a remote operation platform, controlling a charging platform to charge the storage battery and supply power to a power utilization terminal through the dispatching of the remote operation platform, and monitoring the state of the storage battery by the monitoring platform in real time and giving an alarm to abnormal conditions during the period, so that maintenance and management of managers are facilitated. The method provided by the invention realizes the restoration and reutilization of the returned storage battery of the transformer substation to the maximum extent, expands the recovery application range and utilization rate of the storage battery, realizes the informatization and intelligent management of the storage battery, and has better economic and social benefits.
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3:
[发明]
【中文】基于深度强化学习的无人机轨迹及功率联合优化方法 【EN】Unmanned aerial vehicle track and power joint optimization method based on deep reinforcement learning
申请号:
202010136467.4
公开号:CN111263332A 主分类号:H04W4/44
申请人:
【中文】湖北工业大学【EN】HUBEI UNIVERSITY OF TECHNOLOGY
申请日:2020.03.02 公开日:2020.06.09
发明人:
【中文】赵楠
;
程一强
;
萧洒
;
裴一扬
;
刘聪
;
刘泽华【EN】Zhao Nan
;
Cheng Yiqiang
;
Xiao Sa
;
Pei Yiyang
;
Liu Cong
;
Liu Zehua
摘要:【中文】本发明提供一种基于深度强化学习的无人机轨迹及功率联合优化方法,其特征在于:建立无人机系统模型,对无人机轨迹控制和功率分配问题进行描述;建立马尔可夫模型,包括通过设置状态、动作空间和奖励函数,确定马尔可夫决策过程;采用深度确定性策略梯度方法,实现轨迹控制和功率分配的联合优化。应用本发明无人机可以准确移动到目标用户设备附近以提供无线服务,这可以减轻对未服务的用户设备的同信道干扰,同时控制无人机的发射功率,以实现频谱效率与避免干扰之间的平衡。 【EN】The invention provides an unmanned aerial vehicle track and power joint optimization method based on deep reinforcement learning, which is characterized by comprising the following steps: establishing an unmanned aerial vehicle system model, and describing the unmanned aerial vehicle trajectory control and power distribution problems; establishing a Markov model, wherein a Markov decision process is determined by setting a state, an action space and a reward function; and a depth certainty strategy gradient method is adopted to realize the joint optimization of the track control and the power distribution. By applying the invention, the unmanned aerial vehicle can accurately move to the vicinity of the target user equipment to provide wireless service, which can reduce the co-channel interference to the user equipment which is not served, and simultaneously control the transmitting power of the unmanned aerial vehicle to realize the balance between the frequency spectrum efficiency and the interference avoidance.
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4:
[发明]
【中文】一种能排放达标的废旧变压器油XDK吸附剂的处置方法 【EN】Disposal method of XDK adsorbent capable of discharging up to standard waste transformer oil
申请号:
201911143229.X
公开号:CN110860109A 主分类号:B01D15/08
申请人:
【中文】国网湖北省电力有限公司孝感供电公司【EN】State Grid Hubei Electric Power Co., Ltd. Xiaogan power supply company
申请日:2019.11.20 公开日:2020.03.06
发明人:
【中文】李志军
;
谢正汉
;
任乔林
;
肖洒
;
肖亚平
;
任贝婷
;
蔡世腾
;
王晟
;
何国泉
;
黄旦莉
;
覃彩芹
;
李伟【EN】Li Zhijun
;
Xie Zhenghan
;
Ren Qiaolin
;
Xiao Sa
;
Xiao Yaping
;
Ren Beiting
;
Cai Shiteng
;
Wang Cheng
;
He Guoquan
;
Huang Danli
;
QIN Cai-qin
;
Li Wei
摘要:【中文】本发明涉及一种能排放达标的废旧变压器油XDK吸附剂的处置方法,所述方法包括以下步骤:将石油醚按照3:1质量比加入到500g废XDK吸附剂中并搅拌10min,静置得到上层混合液体Ⅰ和下层经石油醚清洗后的吸附剂;向石油醚清洗后的吸附剂加入纯水到吸附剂中并搅拌10min,静置得到上层混合液体Ⅱ,下层为即清洗后的吸附剂;将上层混合液体Ⅰ和上层混合Ⅱ通过旋转蒸发仪体进行石油醚回收,得到的废液倒入油水分离池进行油水分离,对处理后得到的水进行污染物检测;清洗后的吸附剂的放置在马弗炉中,焙烧,得到再生XDK吸附剂。本发明再生的XDK吸附剂吸附油样后,绝缘性能的提升接近新XDK吸附剂吸附后的油样。再生的XDK吸附剂具有较好的吸附效果。 【EN】The invention relates to a disposal method of waste transformer oil XDK adsorbent which can be discharged to reach the standard, comprising the following steps: mixing petroleum ether according to the weight ratio of 3: adding 1 mass ratio of the mixed solution into 500g of waste XDK adsorbent, stirring for 10min, and standing to obtain an upper mixed liquid I and an adsorbent of which the lower layer is cleaned by petroleum ether; adding pure water into the adsorbent cleaned by the petroleum ether, stirring for 10min, and standing to obtain an upper-layer mixed liquid II, wherein the lower layer is the cleaned adsorbent; recovering petroleum ether from the upper layer mixed liquid I and the upper layer mixed liquid II through a rotary evaporator, pouring the obtained waste liquid into an oil-water separation tank for oil-water separation, and detecting pollutants in the treated water; and placing the cleaned adsorbent in a muffle furnace, and roasting to obtain the regenerated XDK adsorbent. After the regenerated XDK adsorbent adsorbs the oil sample, the improvement of the insulating property is close to the oil sample after the adsorption of a new XDK adsorbent. The regenerated XDK adsorbent has a good adsorption effect.
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5:
[发明]
【中文】变压器绝缘油吸附剂自动净化装置及使用方法 【EN】Automatic purifying device for transformer insulating oil adsorbent and using method
申请号:
201911083518.5
公开号:CN110898460A 主分类号:B01D15/10
申请人:
【中文】国网湖北省电力有限公司孝感供电公司【EN】State Grid Hubei Electric Power Co., Ltd. Xiaogan power supply company
申请日:2019.11.07 公开日:2020.03.24
发明人:
【中文】肖洒
;
任乔林
;
肖亚平
;
王晓新
;
黄晓舟
;
李艳
;
赵婧
;
但碧野
;
刘亮
;
冯立
;
冯正华【EN】
Xiao Sa
;
Ren Qiaolin
;
Xiao Yaping
;
Wang Xiaoxin
;
Huang Xiaozhou
;
Li Yan
;
Zhao Jing
;
But Biye
;
Liu Liang
;
Feng Li
;
Feng Zhenghua
摘要:【中文】本发明公开了一种变压器绝缘油吸附剂自动净化装置及使用方法,包括罐体、气路系统、油路系统、吸附装置和电热器;气路系统竖直方向穿过罐体,与罐体配合;油路系统水平方向穿过罐体,与罐体配合;吸附装置连接在罐体内部,吸附装置内部放置有吸附剂;电热器设置在罐体顶部,与热电阻连接配合;热电阻设置在吸附装置内部,与吸附剂接触配合。该装置在吸附剂内加装加热装置,在油路管口设置高精度压力传感器,通过实验将压力变化与吸附剂中的杂质量联系起来,通过数据支撑的自动控制,对吸附剂内的杂质进行加热焚烧,解决了现有技术无法在线工作,只能停机拆卸并更换吸附剂的问题,具有自动化程度高,可在线清理杂质,大大降低了劳动强度的特点。 【EN】The invention discloses an automatic purifying device of transformer insulating oil adsorbent and a using method thereof, comprising a tank body, a gas circuit system, an oil circuit system, an adsorption device and an electric heater; the gas path system vertically penetrates through the tank body and is matched with the tank body; the oil way system horizontally penetrates through the tank body and is matched with the tank body; the adsorption device is connected inside the tank body, and an adsorbent is placed inside the adsorption device; the electric heater is arranged on the top of the tank body and is connected and matched with the thermal resistor; the thermal resistance is arranged inside the adsorption device and is in contact fit with the adsorbent. The device installs heating device additional in the adsorbent, sets up high accuracy pressure sensor at the oil circuit mouth of pipe, links up pressure variation and the impurity volume in the adsorbent through the experiment, and automatic control through the data support heats the burning to the impurity in the adsorbent, has solved prior art unable online work, can only shut down the problem of dismantling and changing the adsorbent, has degree of automation height, can clear up impurity on line, greatly reduced intensity of labour's characteristics.
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6:
[发明]
【中文】一种高倍聚光太阳能光伏、光热复合联产联供组件 【EN】High-concentration solar photovoltaic and photothermal composite co-production combined supply assembly
申请号:
201911280137.6
公开号:CN110855233A 主分类号:H02S40/22
申请人:
【中文】武汉理工大学【EN】WUHAN UNIVERSITY OF TECHNOLOGY
申请日:2019.12.13 公开日:2020.02.28
发明人:
【中文】李鹏
;
张顺翔
;
罗琦
;
蔡兰兰
;
杨裕锦
;
陈元涛
;
祝璇
;
肖洒
;
孙成
;
韩昊
;
严晗
;
翟鹏程【EN】Li Peng
;
Zhang Shunxiang
;
Luo Qi
;
Cai Lanlan
;
Yang Yujin
;
Chen Yuantao
;
Zhu Xuan
;
Xiao Sa
;
Sun Cheng
;
Han Hao
;
Yan Han
;
Zhai Pengcheng
摘要:【中文】本发明公开了一种高倍聚光太阳能光伏、光热复合联产联供组件,菲涅尔聚光透镜的下方通过中部波状挡板支撑,四周边缘固定在框架上部,框架下部固定在换热底板正面的四周边缘处,换热底板正面中间的空白区域用于固定光伏‑光电复合联产单元、导热载体、导热柱体及中部波状挡板,其中光伏‑光电复合联产单元固定在导热载体正中位置,导热柱体穿插于两个光伏‑光电复合联产单元之间,并穿透换热底板,使之直接与纳米复合相变蓄热保温层相接触,将纳米复合相变蓄热保温层与换热底板的背面吹涨板密封固定。本发明高倍聚光太阳能光伏、光热复合联产联供组件极大地提高了太阳能的产热效率和发电效率,降低了能源消耗、环境污染和生产成本。 【EN】The invention discloses a high-power light-gathering solar photovoltaic and photothermal composite co-production combined supply assembly, wherein a Fresnel light-gathering lens is supported by a middle corrugated baffle, the peripheral edge of the Fresnel light-gathering lens is fixed on the upper part of a frame, the lower part of the frame is fixed on the peripheral edge of the front surface of a heat exchange bottom plate, and a blank area in the middle of the front surface of the heat exchange bottom plate is used for fixing a photovoltaic-photoelectric composite co-production unit, a heat conduction carrier, a heat conduction column and the middle corrugated baffle, wherein the photovoltaic-photoelectric composite co-production unit is fixed in the middle of the heat conduction carrier, the heat conduction column is inserted between two photovoltaic-photoelectric composite co-production units and penetrates through the heat exchange bottom plate to be directly contacted with a nano composite phase-change heat-accumulation heat. The high-concentration solar photovoltaic and photothermal composite co-production combined supply component greatly improves the heat production efficiency and the power generation efficiency of solar energy, and reduces the energy consumption, the environmental pollution and the production cost.
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7:
[发明]
【中文】一种用于电力设备电气试验的快速接线钳 【EN】A quick wiring pincers for power equipment electrical test
申请号:
201911197022.0
公开号:CN110940834A 主分类号:G01R1/04
申请人:
【中文】国网福建省电力有限公司检修分公司
;
国网福建省电力有限公司【EN】Maintenance branch company of State Grid Fujian Electric Power Co., Ltd.
;
State Grid Fujian Electric Power Co., Ltd.
申请日:2019.11.29 公开日:2020.03.31
发明人:
【中文】肖洒
;
林国强
;
蒋林高
;
翁德明
;
吴方连
;
李飙
;
高潮
;
林宇洲
;
陈闽江
;
黄书民
;
胡红燕【EN】
Xiao Sa
;
Lin Guoqiang
;
Jiang Lingao
;
Weng Deming
;
Wu Fanglian
;
Li Biao
;
Gao Chao
;
Lin Yuzhou
;
Chen Minjiang
;
Huang Shumin
;
Hu Hongyan
摘要:【中文】本发明涉及一种用于电力设备电气试验的快速接线钳,包括绝缘操作杆、导电钩头和连接导线,所述导电钩头下端固定于绝缘操作杆一端,并与穿设于绝缘操作杆中间的连接导线连接,所述导电钩头前端嵌设有钕铁硼强磁铁。该接线钳结构简单,易于操作,连接牢靠。 【EN】The invention relates to a quick wiring clamp for an electrical test of power equipment, which comprises an insulating operating rod, a conductive hook head and a connecting wire, wherein the lower end of the conductive hook head is fixed at one end of the insulating operating rod and is connected with the connecting wire penetrating through the middle of the insulating operating rod, and a neodymium iron boron strong magnet is embedded at the front end of the conductive hook head. The wiring clamp is simple in structure, easy to operate and firm in connection.
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8:
[发明]
【中文】一种微地震数据的降噪处理方法和装置 【EN】Noise reduction processing method and device for micro-seismic data
申请号:
201911214545.1
公开号:CN110967760A 主分类号:G01V1/36
申请人:
【中文】中国海洋石油集团有限公司
;
中海油田服务股份有限公司【EN】CHINA NATIONAL OFFSHORE OIL Corp.
;
CHINA OILFIELD SERVICES Ltd.
申请日:2019.12.02 公开日:2020.04.07
发明人:
【中文】魏肃东
;
李敬松
;
王杏尊
;
谢晶晶
;
黄子俊
;
刘子雄
;
高杰
;
肖洒
;
汪超
;
杨慰兴【EN】Wei Sudong
;
Li Jingsong
;
Wang Xingzun
;
Xie Jingjing
;
Huang Zijun
;
Liu Zixiong
;
Gao Jie
;
Xiao Sa
;
Wang Chao
;
Yang Weixing
摘要:【中文】本发明公开了一种微地震数据的降噪处理方法,所述方法包括:获取噪声检波器采集的噪声信息和主检波器采集的微地震数据;根据所述噪声信息生成噪声源的降噪数据;根据所述噪声源的降噪数据对所述微地震数据进行降噪处理,生成降噪后的有效微地震数据。通过本发明的方案,实现了对微地震数据中噪声源的噪声信息进行降噪处理。 【EN】The invention discloses a noise reduction processing method of micro seismic data, which comprises the following steps: acquiring noise information acquired by a noise detector and micro-seismic data acquired by a main detector; generating noise reduction data of a noise source according to the noise information; and performing noise reduction processing on the micro seismic data according to the noise reduction data of the noise source to generate effective micro seismic data after noise reduction. By the scheme of the invention, the noise information of the noise source in the micro seismic data is subjected to noise reduction treatment.
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