in:(MA, Zheng)

TIME SEQUENCE ANALYSIS-BASED STATE MONITORING DATA CLEANING METHOD FOR POWER TRANSMISSION AND TRANSFORMATION DEVICE PCT/CN2015/092589
[GUO, Zhihong 郭志红, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, ZHU, Zhenhua 朱振华, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, ZHU, Zhenhua 朱振华, ZHENG, Jian 郑建, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, ZHU, Zhenhua 朱振华, ZHENG, Jian 郑建, WANG, Hui 王辉, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, ZHU, Zhenhua 朱振华, ZHENG, Jian 郑建, WANG, Hui 王辉, LI, Xiuwei 李秀卫, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, ZHU, Zhenhua 朱振华, ZHENG, Jian 郑建, WANG, Hui 王辉, LI, Xiuwei 李秀卫, ZHU, Mengzhao 朱孟兆, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, ZHU, Zhenhua 朱振华, ZHENG, Jian 郑建, WANG, Hui 王辉, LI, Xiuwei 李秀卫, ZHU, Mengzhao 朱孟兆, ZHOU, Jiabin 周加斌, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, ZHU, Zhenhua 朱振华, ZHENG, Jian 郑建, WANG, Hui 王辉, LI, Xiuwei 李秀卫, ZHU, Mengzhao 朱孟兆, ZHOU, Jiabin 周加斌, MA, Yan 马艳, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, ZHU, Zhenhua 朱振华, ZHENG, Jian 郑建, WANG, Hui 王辉, LI, Xiuwei 李秀卫, ZHU, Mengzhao 朱孟兆, ZHOU, Jiabin 周加斌, MA, Yan 马艳, DUAN, Yubing 段玉兵, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, ZHU, Zhenhua 朱振华, ZHENG, Jian 郑建, WANG, Hui 王辉, LI, Xiuwei 李秀卫, ZHU, Mengzhao 朱孟兆, ZHOU, Jiabin 周加斌, MA, Yan 马艳, DUAN, Yubing 段玉兵, LIU, Hui 刘辉, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, ZHU, Zhenhua 朱振华, ZHENG, Jian 郑建, WANG, Hui 王辉, LI, Xiuwei 李秀卫, ZHU, Mengzhao 朱孟兆, ZHOU, Jiabin 周加斌, MA, Yan 马艳, DUAN, Yubing 段玉兵, LIU, Hui 刘辉, LI, Ming 李明, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, ZHU, Zhenhua 朱振华, ZHENG, Jian 郑建, WANG, Hui 王辉, LI, Xiuwei 李秀卫, ZHU, Mengzhao 朱孟兆, ZHOU, Jiabin 周加斌, MA, Yan 马艳, DUAN, Yubing 段玉兵, LIU, Hui 刘辉, LI, Ming 李明, ZHAO, Fuqiang 赵富强, GUO, Zhihong 郭志红, DU, Xiuming 杜修明, YANG, Yi 杨祎, CHEN, Yufeng 陈玉峰, SHENG, Gehao 盛戈皞, MA, Qiang 马强, YAN, Yingjie 严英杰, GU, Chao 辜超, ZHU, Wenbing 朱文兵, ZHU, Zhenhua 朱振华, ZHENG, Jian 郑建, WANG, Hui 王辉, LI, Xiuwei 李秀卫, ZHU, Mengzhao 朱孟兆, ZHOU, Jiabin 周加斌, MA, Yan 马艳, DUAN, Yubing 段玉兵, LIU, Hui 刘辉, LI, Ming 李明, ZHAO, Fuqiang 赵富强, XU, Guangke 许光可] No. 86, West Chang, An Street, Xicheng District 中国北京市西城区西长安街86号, Beijing 100031Beijing 100031;No.2000, Wangyue Road, Shizhong District 中国山东省济南市市中区望岳路2000号, Shandong 250002Jinan, Shandong 250002 A time sequence analysis-based state monitoring data cleaning method for a power transmission and transformation device, comprising the steps of: establishing an initial time sequence model for state data of a power transmission and transformation device, and estimating an initially-fit residual sequence and residual variance by means of the initial time sequence model; calculating a test statistic of each observation point utilizing the initial time sequence model; judging whether a maximum value of the absolute values of test statistics is greater than a set threshold value; and calculating the test statistic of each of the observation points by means of a model residual of a corrected time sequence model, and judging whether a new noise point exists according to whether the maximum value of the absolute values of the test statistics is greater than the set threshold value, until all the noise points are identified. The method has the advantages of a high cleaning efficiency, keeping the data integrity, and avoiding the loss of useful information about data.
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MECHANISM FOR DISPLAYING DYNAMIC IMAGE IN WRIST WATCH PCT/CN2015/097294
[MA, Zheng 马征, MA, Zheng 马征, WANG, Chen 王晨, MA, Zheng 马征, WANG, Chen 王晨, LI, Jiaqi 李家琦, MA, Zheng 马征, WANG, Chen 王晨, LI, Jiaqi 李家琦, SONG, Xinyu 宋新宇, MA, Zheng 马征, WANG, Chen 王晨, LI, Jiaqi 李家琦, SONG, Xinyu 宋新宇, WANG, Shichao 王世超, MA, Zheng 马征, WANG, Chen 王晨, LI, Jiaqi 李家琦, SONG, Xinyu 宋新宇, WANG, Shichao 王世超, LI, Ang 李昂, MA, Zheng 马征, WANG, Chen 王晨, LI, Jiaqi 李家琦, SONG, Xinyu 宋新宇, WANG, Shichao 王世超, LI, Ang 李昂, ZHANG, Shilong 张世龙, MA, Zheng 马征, WANG, Chen 王晨, LI, Jiaqi 李家琦, SONG, Xinyu 宋新宇, WANG, Shichao 王世超, LI, Ang 李昂, ZHANG, Shilong 张世龙, LIU, Yinglin 刘英璘] No.199, Huanhe Nan Road, Airport Economic Area 中国天津市空港经济区环河南路199号, Tianjin 300308Tianjin 300308;No.92, Weijin Road, Nankai District 中国天津市南开区卫津路92号, Tianjin 300072Tianjin 300072 Disclosed is a mechanism for displaying a dynamic image in a wrist watch, comprising a hollowed dial plate (1) and a pattern dial plate (2) which are mounted in parallel in a superposed mode,wherein hollowed clusters (1a) are arranged in the hollowed dial plate (1); the hollowed clusters (1a) are arranged in accordance with a motion track array of the pattern dial plate (2), and each unit in the hollowed clusters (1a) is formed by adjacent hollowed portions and non-hollowed portions; the pattern dial plate (2) moves relatively under the hollowed dial plate (1); and in the initial state, the relative position relationship between the hollowed dial plate (1) and the pattern dial plate (2) should be such that a changed region pattern of the pattern dial plate (2) partially coincides with a hollow portion. A dynamic continuous image is shown in the wrist watch by the motion of a movable component in a movement using the principle of visual lag. The structure is simple, the operation is reliable, and the manufacturability is good, so that continuous animation performance can be realized on the wrist watch, improving the ornamental value of the wrist watch.
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METHOD FOR MANUFACTURING HIGH-PRESSURE SOLID-ELECTROLYTE ALUMINUM ELECTROLYTIC CAPACITOR PCT/CN2015/073531
[LIU, Yongpeng 刘泳澎, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LUO, Wei 罗伟, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LUO, Wei 罗伟, ZHENG, Ping 郑萍, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LUO, Wei 罗伟, ZHENG, Ping 郑萍, LIAO, Qiong 廖琼, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LUO, Wei 罗伟, ZHENG, Ping 郑萍, LIAO, Qiong 廖琼, LI, Huifeng 李慧峰, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LUO, Wei 罗伟, ZHENG, Ping 郑萍, LIAO, Qiong 廖琼, LI, Huifeng 李慧峰, WU, Dirong 吴棣荣, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LUO, Wei 罗伟, ZHENG, Ping 郑萍, LIAO, Qiong 廖琼, LI, Huifeng 李慧峰, WU, Dirong 吴棣荣, WU, Weiqiao 伍伟桥] LIAO, Qiong 中国广东省肇庆市端州区肇庆大道南侧、端州八路西侧2区厂区廖琼, Guangdong 5260002nd Area, Western Side of No.8 Duanzhou Road, Southen Side of Zhaoqing Avenue, DuanzhouZhaoqing, Guangdong 526000 Provided is a method for manufacturing a high-pressure solid-electrolyte aluminum electrolytic capacitor, comprising: (1) soldering a core cladding onto an iron bar, applying a voltage for processing, and after processing, cleaning and drying; (2) immersing the dried core cladding in a dispersion for impregnation for 1-30 minutes; (3) removing the core cladding from the dispersion, vacuumizing, then immersing the core cladding in a dispersion for impregnation for 1-10 minutes; (4) keeping the core cladding in the dispersion, and breaking the vacuum and repressurizing, the impregnation time being 1-10 minutes; (5) keeping the core cladding in the dispersion, and deflating to atmospheric pressure, the impregnation time being 1-10 minutes; (6) removing the core cladding, placing the core cladding to dry at 65°C-100°C for 20-60 minutes, and then placing the core cladding to dry at 135°C-165°C for 20-60 minutes; (7) repeating steps (3) to (6) at least once; (8) sealing into a casing and aging; said dispersion being a dispersion containing an electrically conductive polymer. The described manufacturing method results in a solid capacitor having a low ESR value and a high withstand voltage, and also results in a low leakage current.
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SOLID ELECTROLYTE ALUMINIUM ELECTROLYTIC CAPACITOR AND MANUFACTURING METHOD THEREOF PCT/CN2015/073533
[LIU, Yongpeng 刘泳澎, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LUO, Wei 罗伟, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LUO, Wei 罗伟, ZHENG, Ping 郑萍, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LUO, Wei 罗伟, ZHENG, Ping 郑萍, LIAO, Qiong 廖琼, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LUO, Wei 罗伟, ZHENG, Ping 郑萍, LIAO, Qiong 廖琼, LI, Huifeng 李慧峰, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LUO, Wei 罗伟, ZHENG, Ping 郑萍, LIAO, Qiong 廖琼, LI, Huifeng 李慧峰, WU, Dirong 吴棣荣, LIU, Yongpeng 刘泳澎, MA, Yanbin 马彦斌, YUAN, Yong 袁永, LUO, Wei 罗伟, ZHENG, Ping 郑萍, LIAO, Qiong 廖琼, LI, Huifeng 李慧峰, WU, Dirong 吴棣荣, WU, Weiqiao 伍伟桥] Liao,Qiong 中国广东省肇庆市端州区肇庆大道南侧、端州八路西侧2区厂区廖琼, Guangdong 5260002nd Area, Western Side of No.8 Duanzhou Road, Southen Side of Zhaoqing Avenue, DuanzhouZhaoqing, Guangdong 526000 Disclosed in the present invention is a solid electrolyte aluminium electrolytic capacitor, comprising an aluminium shell and a core pack, the core pack comprising anodised aluminium foil, cathode foil, and electrolytic paper and a solid electrolyte interposed between the anodised aluminium foil and the cathode foil, the solid electrolyte comprising a conductive polymer and a conductive carbon material. The solid electrolyte aluminium electrolytic capacitor has excellent ESR performance, the solid electrolyte being a conductive polymer and a conductive carbon material, resolving the problems of reduced performance and significantly increased resistance of conductive polymers under high temperatures. Also disclosed in the present invention is a manufacturing method for the solid electrolyte aluminium electrolytic capacitor. The manufacturing method obtains a solid-state capacitor having a low ESR value and a high voltage-resistance value, simultaneously obtaining a low leakage current and good batch consistency.
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METHOD FOR PREPARING BIO-METHANE BY PURIFYING BIOGAS PCT/CN2014/094784
[YANG, Zhuhong 杨祝红, YANG, Zhuhong 杨祝红, DING, Jian 丁键, YANG, Zhuhong 杨祝红, DING, Jian 丁键, CHEN, Yifeng 陈义峰, YANG, Zhuhong 杨祝红, DING, Jian 丁键, CHEN, Yifeng 陈义峰, LI, Zheng 李峥, YANG, Zhuhong 杨祝红, DING, Jian 丁键, CHEN, Yifeng 陈义峰, LI, Zheng 李峥, MA, Chunyan 马春燕, YANG, Zhuhong 杨祝红, DING, Jian 丁键, CHEN, Yifeng 陈义峰, LI, Zheng 李峥, MA, Chunyan 马春燕, LIU, Chang 刘畅, YANG, Zhuhong 杨祝红, DING, Jian 丁键, CHEN, Yifeng 陈义峰, LI, Zheng 李峥, MA, Chunyan 马春燕, LIU, Chang 刘畅, LU, Xiaohua 陆小华, YANG, Zhuhong 杨祝红, DING, Jian 丁键, CHEN, Yifeng 陈义峰, LI, Zheng 李峥, MA, Chunyan 马春燕, LIU, Chang 刘畅, LU, Xiaohua 陆小华, XIE, Ruijie 谢瑞杰, YANG, Zhuhong 杨祝红, DING, Jian 丁键, CHEN, Yifeng 陈义峰, LI, Zheng 李峥, MA, Chunyan 马春燕, LIU, Chang 刘畅, LU, Xiaohua 陆小华, XIE, Ruijie 谢瑞杰, YUAN, Shengjuan 袁圣娟] NO.30 Puzhu Road(S), Pukou 中国江苏省南京市浦口区浦珠南路30号, Jiangsu 211816Nanjing, Jiangsu 211816 Provided is a method for preparing bio-methane by purifying biogas. The method comprises: pressurizing the biogas, introducing the pressurized biogas into an absorption tower from the lower part of the absorption tower till the pressure in the tower reaches 0.3 MPa to 20 MPa, continuously introducing the biogas, spraying an absorbent into the tower by means of a nozzle on the upper part of the absorption tower, and enabling the biogas and the absorbent to be in sufficient contact to remove carbon dioxide in the biogas, wherein the pressure in the absorption tower is 0.3 MPa to 20 MPa, and the flow ratio of the absorbent to the biogas is 8-100 kg/h:1 Nm3/h; the absorbent is an aqueous solution which takes at least one of choline-based deep eutectic solvents or imidazole ionic liquids as an active ingredient, and the mass fraction of the active ingredient is 5% to 90%.
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DYNAMIC CODED LOCK AND REMOTE CODED LOCK APPARATUS PCT/CN2015/078350
[MA, Zheng 马铮, MA, Zheng 马铮, XIAO, Zhihong 肖志宏, MA, Zheng 马铮, XIAO, Zhihong 肖志宏, CHEN, Jiaxian 陈家贤, MA, Zheng 马铮, XIAO, Zhihong 肖志宏, CHEN, Jiaxian 陈家贤, PENG, Ming 彭明] 3rd Floor, Block A3 中国广东省珠海市高新区软件园路1号会展中心3#第三层, Guangdong 519000No.1 Software Park Road, State Hightech ZoneZhuhai, Guangdong 519000 A dynamic coded lock, comprising a set bar, a set bar drive device, a microprocessor, an unlocking verification device and a power conversion device. The unlocking verification device is electrically connected to the set bar drive device through the microprocessor to drive the set bar. The dynamic coded lock further comprises a physical interface. The physical interface is electrically connected to the microprocessor to provide a communication interface allowing the dynamic coded lock to communicate with an external communication apparatus. The physical interface is electrically connected to the power conversion device to provide a power supply interface allowing the external power supply apparatus to supply power to the dynamic coded lock. Also disclosed is a remote coded lock apparatus having the dynamic coded lock.
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MODULATORS OF COMPLEMENT ACTIVITY PCT/US2016/015412
[ARATA, Michelle, Denise, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, JOSEPHSON, Kristopher, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, JOSEPHSON, Kristopher, LARSON, Kelley, Cronin, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, JOSEPHSON, Kristopher, LARSON, Kelley, Cronin, MA, Zhong, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, JOSEPHSON, Kristopher, LARSON, Kelley, Cronin, MA, Zhong, NIMS, Nathan, Ezekiel, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, JOSEPHSON, Kristopher, LARSON, Kelley, Cronin, MA, Zhong, NIMS, Nathan, Ezekiel, RICARDO, Alonso, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, JOSEPHSON, Kristopher, LARSON, Kelley, Cronin, MA, Zhong, NIMS, Nathan, Ezekiel, RICARDO, Alonso, SEYB, Kathleen, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, JOSEPHSON, Kristopher, LARSON, Kelley, Cronin, MA, Zhong, NIMS, Nathan, Ezekiel, RICARDO, Alonso, SEYB, Kathleen, TANG, Guo-Qing, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, JOSEPHSON, Kristopher, LARSON, Kelley, Cronin, MA, Zhong, NIMS, Nathan, Ezekiel, RICARDO, Alonso, SEYB, Kathleen, TANG, Guo-Qing, TRECO, Douglas, A., ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, JOSEPHSON, Kristopher, LARSON, Kelley, Cronin, MA, Zhong, NIMS, Nathan, Ezekiel, RICARDO, Alonso, SEYB, Kathleen, TANG, Guo-Qing, TRECO, Douglas, A., WANG, Zhaolin, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, JOSEPHSON, Kristopher, LARSON, Kelley, Cronin, MA, Zhong, NIMS, Nathan, Ezekiel, RICARDO, Alonso, SEYB, Kathleen, TANG, Guo-Qing, TRECO, Douglas, A., WANG, Zhaolin, YE, Ping, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, JOSEPHSON, Kristopher, LARSON, Kelley, Cronin, MA, Zhong, NIMS, Nathan, Ezekiel, RICARDO, Alonso, SEYB, Kathleen, TANG, Guo-Qing, TRECO, Douglas, A., WANG, Zhaolin, YE, Ping, ZHENG, Hong, ARATA, Michelle, Denise, DHAMNASKAR, Ketki, Ashok, ELBAUM, Daniel, JOSEPHSON, Kristopher, LARSON, Kelley, Cronin, MA, Zhong, NIMS, Nathan, Ezekiel, RICARDO, Alonso, SEYB, Kathleen, TANG, Guo-Qing, TRECO, Douglas, A., WANG, Zhaolin, YE, Ping, ZHENG, Hong, PERLMUTTER, Sarah, Jacqueline] One Kendall SquareSuite B14301Cambridge, MA 02139 The present invention provides polypeptide modulators of complement activity, including cyclic polypeptide modulators. Also provided are methods of utilizing such modulators as therapeutics.
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METHOD BASED ON ANEMOMETER TOWER MEASUREMENT DATA FOR DETERMINING WIND FARM DISCARDED WIND POWER PCT/CN2015/088576
[FENG, Shuanglei 冯双磊, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, WANG, Weisheng 王伟胜, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, WANG, Weisheng 王伟胜, LIU, Chun 刘纯, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, WANG, Weisheng 王伟胜, LIU, Chun 刘纯, JIANG, Wenling 姜文玲, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, WANG, Weisheng 王伟胜, LIU, Chun 刘纯, JIANG, Wenling 姜文玲, WANG, Zheng 王铮, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, WANG, Weisheng 王伟胜, LIU, Chun 刘纯, JIANG, Wenling 姜文玲, WANG, Zheng 王铮, CHE, Jianfeng 车建峰, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, WANG, Weisheng 王伟胜, LIU, Chun 刘纯, JIANG, Wenling 姜文玲, WANG, Zheng 王铮, CHE, Jianfeng 车建峰, LU, Jing 卢静, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, WANG, Weisheng 王伟胜, LIU, Chun 刘纯, JIANG, Wenling 姜文玲, WANG, Zheng 王铮, CHE, Jianfeng 车建峰, LU, Jing 卢静, ZHANG, Fei 张菲, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, WANG, Weisheng 王伟胜, LIU, Chun 刘纯, JIANG, Wenling 姜文玲, WANG, Zheng 王铮, CHE, Jianfeng 车建峰, LU, Jing 卢静, ZHANG, Fei 张菲, JIN, Shuanglong 靳双龙, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, WANG, Weisheng 王伟胜, LIU, Chun 刘纯, JIANG, Wenling 姜文玲, WANG, Zheng 王铮, CHE, Jianfeng 车建峰, LU, Jing 卢静, ZHANG, Fei 张菲, JIN, Shuanglong 靳双龙, HU, Ju 胡菊, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, WANG, Weisheng 王伟胜, LIU, Chun 刘纯, JIANG, Wenling 姜文玲, WANG, Zheng 王铮, CHE, Jianfeng 车建峰, LU, Jing 卢静, ZHANG, Fei 张菲, JIN, Shuanglong 靳双龙, HU, Ju 胡菊, YANG, Hongying 杨红英, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, WANG, Weisheng 王伟胜, LIU, Chun 刘纯, JIANG, Wenling 姜文玲, WANG, Zheng 王铮, CHE, Jianfeng 车建峰, LU, Jing 卢静, ZHANG, Fei 张菲, JIN, Shuanglong 靳双龙, HU, Ju 胡菊, YANG, Hongying 杨红英, MA, Zhenqiang 马振强, FENG, Shuanglei 冯双磊, WANG, Bo 王勃, ZHAO, Yanqing 赵艳青, WANG, Weisheng 王伟胜, LIU, Chun 刘纯, JIANG, Wenling 姜文玲, WANG, Zheng 王铮, CHE, Jianfeng 车建峰, LU, Jing 卢静, ZHANG, Fei 张菲, JIN, Shuanglong 靳双龙, HU, Ju 胡菊, YANG, Hongying 杨红英, MA, Zhenqiang 马振强, SONG, Zongpeng 宋宗朋] No. 86, West Chang'an Street, Xicheng District 中国北京市西城区西长安街86号, Beijing 100031Beijing 100031;No. 15, Xiaoying East Road, Qinghe, Haidian District 中国北京市海淀区清河小营东路15号, Beijing 100192Beijing 100192;No.110 Xingcai Road, Zhangbei District 中国河北省张家口市张北县兴才路110号, Hebei 076450Zhangjiakou, Hebei 076450 A method based on anemometer tower measurement data for determining the discarded wind electrical power of wind farms. On the basis of anemometer tower measurement data, the method takes into consideration the impact of such factors as terrain, topography, and wind turbine wake, calculates wind speed at wind turbine hub height, and obtains a theoretical wind turbine power according to a power curve, then adds up the theoretical power of all the wind turbines of a wind farm to obtain a total theoretical power thereof; finally, the total theoretical power of the wind farm and the actual power thereof are respectively integrated over time, to obtain a theoretical and an actual electrical power; subtracting one from the other yields the discarded wind electrical power of the wind farm, thus providing precise calculation of wind farm discarded wind electrical power. The present method is applicable to all types of wind farm and resolves problems of low accuracy in the calculation by the sample turbine method of discarded wind electrical power.
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TUBE CABLE APPARATUS, METHOD FOR MANUFACTURING TUBE CABLE APPARATUS, AND APPLICATION THEREOF PCT/CN2014/000980
[ZHANG, Wenyong 张文勇, ZHANG, Wenyong 张文勇, ZHU, Cheng 朱橙, ZHANG, Wenyong 张文勇, ZHU, Cheng 朱橙, LI, Deng 李登, ZHANG, Wenyong 张文勇, ZHU, Cheng 朱橙, LI, Deng 李登, WANG, Xing 王星, ZHANG, Wenyong 张文勇, ZHU, Cheng 朱橙, LI, Deng 李登, WANG, Xing 王星, MA, Jinxiang 马金祥, ZHANG, Wenyong 张文勇, ZHU, Cheng 朱橙, LI, Deng 李登, WANG, Xing 王星, MA, Jinxiang 马金祥, ZHENG, Bin 郑镔, ZHANG, Wenyong 张文勇, ZHU, Cheng 朱橙, LI, Deng 李登, WANG, Xing 王星, MA, Jinxiang 马金祥, ZHENG, Bin 郑镔, SUN, Junlong 孙俊龙, ZHANG, Wenyong 张文勇, ZHU, Cheng 朱橙, LI, Deng 李登, WANG, Xing 王星, MA, Jinxiang 马金祥, ZHENG, Bin 郑镔, SUN, Junlong 孙俊龙, ZHANG, Shulin 张书林] Huatong Street, Fengnan District 中国河北省唐山市丰南区华通大街, Hebei 063300Tangshan, Hebei 063300 A tube cable apparatus, a method for manufacturing the tube cable apparatus, and an application thereof. A single-core cable (4) and a hydraulically controlled tube (1) are disposed in a coiled tube (3), and an insulation structure (2) is filled between the single-core cable (4), the hydraulically controlled tube (1) and the coiled tube (3). The method for manufacturing the tube cable comprises: respectively coating an insulation material on the shaped single-core cable (4) and the shaped hydraulically controlled tube (1), and thermoforming the insulation material to obtain the insulation structure (2) in which the single-core cable (4) and the hydraulically controlled tube (1) are disposed; disposing the insulation structure (2) on a steel belt; disposing the steel belt provided with the insulation structure (2) on a tube machine, and pressing the steel belt into a shaped tube; welding seams of the shaped tube structure; checking the seams by using a flaw detector; and polishing and finishing the exterior of a steel tube, so as to obtain the finished product of the tube cable apparatus. By means of the method for manufacturing the tube cable apparatus, the continuous high-speed welding production of the tube cable apparatus can be achieved, and the production efficiency is high.
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TUBE CABLE, METHOD FOR MANUFACTURING TUBE CABLE, AND APPLICATION THEREOF PCT/CN2014/000981
[ZHANG, Wengyong 张文勇, ZHANG, Wengyong 张文勇, ZHU, Cheng 朱橙, ZHANG, Wengyong 张文勇, ZHU, Cheng 朱橙, LI, Deng 李登, ZHANG, Wengyong 张文勇, ZHU, Cheng 朱橙, LI, Deng 李登, WANG, Xing 王星, ZHANG, Wengyong 张文勇, ZHU, Cheng 朱橙, LI, Deng 李登, WANG, Xing 王星, MA, Jinxiang 马金祥, ZHANG, Wengyong 张文勇, ZHU, Cheng 朱橙, LI, Deng 李登, WANG, Xing 王星, MA, Jinxiang 马金祥, ZHENG, Bin 郑镔, ZHANG, Wengyong 张文勇, ZHU, Cheng 朱橙, LI, Deng 李登, WANG, Xing 王星, MA, Jinxiang 马金祥, ZHENG, Bin 郑镔, SUN, Junlong 孙俊龙, ZHANG, Wengyong 张文勇, ZHU, Cheng 朱橙, LI, Deng 李登, WANG, Xing 王星, MA, Jinxiang 马金祥, ZHENG, Bin 郑镔, SUN, Junlong 孙俊龙, ZHANG, Shulin 张书林] Hua Tong Street, Fengnan District 中国河北省唐山市丰南区华通大街, Hebei 063300Tangshan, Hebei 063300 A cable for a submersible pump in a deepwater oilfield, and particularly, a tube cable, a method for manufacturing the tube cable and an application thereof. The cable consists of a conductor structure (1) and an insulation structure (2) sleeved on the exterior of the conductor structure (1). A steel tube (3) is sleeved on the exterior of the insulation structure (2). The structure provided with a steel tube layer can prolong the service life of the cable and improve the working efficiency. The method for manufacturing the tube cable comprises: disposing a manufactured cable on a steel belt; disposing, on a tube machine, the steel belt provided with the cable, and pressing the steel belt into a shaped tube; welding seams of the shaped tube structure; checking the seams by using a flaw detector; and polishing and finishing the exterior of the steel tube, so as to obtain the finished product of the tube cable. By means of the method for manufacturing the tube cable, the continuous high-speed welding production of the long tube cable can be achieved, and the production efficiency is high. In use, the tube cable directly provides power to the underground submersible pump in the oilfield, and the tube cable is directly put into a well or drawn out from the well when the well is repaired, so that the tube cable can be used in cables with different specifications. The tube cable can improve the service life of the cables and improve the efficiency.
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