in:(LI, Jianming)

NOVEL FAN AND AIR CONDITIONER COORDINATED CONTROL METHOD PCT/CN2014/095147
[LIU, Yu 刘煜, LIU, Yu 刘煜, TAN, Jianming 谭建明, LIU, Yu 刘煜, TAN, Jianming 谭建明, LI, Shaobin 李绍斌, LIU, Yu 刘煜, TAN, Jianming 谭建明, LI, Shaobin 李绍斌, DU, Hui 杜辉, LIU, Yu 刘煜, TAN, Jianming 谭建明, LI, Shaobin 李绍斌, DU, Hui 杜辉, SU, Binghui 苏炳珲, LIU, Yu 刘煜, TAN, Jianming 谭建明, LI, Shaobin 李绍斌, DU, Hui 杜辉, SU, Binghui 苏炳珲, LIU, Ying 刘莹, LIU, Yu 刘煜, TAN, Jianming 谭建明, LI, Shaobin 李绍斌, DU, Hui 杜辉, SU, Binghui 苏炳珲, LIU, Ying 刘莹, ZHAN, Chaoyong 詹朝永, LIU, Yu 刘煜, TAN, Jianming 谭建明, LI, Shaobin 李绍斌, DU, Hui 杜辉, SU, Binghui 苏炳珲, LIU, Ying 刘莹, ZHAN, Chaoyong 詹朝永, FU, Meijun 符美军] West Jinji Road, Qianshan 中国广东省珠海市前山金鸡西路, Guangdong 519070Zhuhai, Guangdong 519070 Novel fan and air conditioner coordinated control method, the air conditioner comprising an outdoor unit and at least one indoor unit; the novel fan is used to supply air to and/or exhaust air from a room having the indoor unit, and the novel fan is in communication with a controller of the outdoor unit; the control method comprises the following steps: when the novel fan is powered on, computing in real time a capacity requirement Q of the indoor unit, comparing the capacity requirement Q with an initial capacity requirement Q1, and controlling an air volume of the novel fan according to the comparison result.
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SLOT ANTENNA AND MOBILE TERMINAL PCT/CN2015/076786
[WANG, Hanyang 王汉阳, WANG, Hanyang 王汉阳, YING, Lijun 应李俊, WANG, Hanyang 王汉阳, YING, Lijun 应李俊, ZHANG, Xuefei 张学飞, WANG, Hanyang 王汉阳, YING, Lijun 应李俊, ZHANG, Xuefei 张学飞, LI, Jianming 李建铭, WANG, Hanyang 王汉阳, YING, Lijun 应李俊, ZHANG, Xuefei 张学飞, LI, Jianming 李建铭, YU, Dong 余冬, WANG, Hanyang 王汉阳, YING, Lijun 应李俊, ZHANG, Xuefei 张学飞, LI, Jianming 李建铭, YU, Dong 余冬, XUE, Liang 薛亮, WANG, Hanyang 王汉阳, YING, Lijun 应李俊, ZHANG, Xuefei 张学飞, LI, Jianming 李建铭, YU, Dong 余冬, XUE, Liang 薛亮, WANG, Lei 王磊, WANG, Hanyang 王汉阳, YING, Lijun 应李俊, ZHANG, Xuefei 张学飞, LI, Jianming 李建铭, YU, Dong 余冬, XUE, Liang 薛亮, WANG, Lei 王磊, ZHANG, Zhihua 张志华] Huawei Administration Building 中国广东省深圳市龙岗区坂田华为总部办公楼, Guangdong 518129Bantian, Longgang DistrictShenzhen, Guangdong 518129 Provided are a slot antenna and a mobile terminal, which relate to the technical field of antennas and are used for generating different resonance frequencies to cover a required frequency band. The slot antenna comprises: a system circuit board, a ground conductor, a radiator and a first adjustable unit, wherein the system circuit board is connected to the ground conductor to form an electrical conductor; the radiator is opposite to the electrical conductor to form a slot; a feeding end is provided on the system circuit board; the feeding end is electrically connected to the radiator; one end of the first adjustable unit is connected to the system circuit board, and the other end of the first adjustable unit is connected to the radiator; and the first adjustable unit is used for adjusting the resonance frequency of the slot antenna. Provided are a slot antenna and a mobile terminal, which relate to the technical field of antennas and are used for generating different resonance frequencies to cover a required frequency band. The slot antenna comprises: a system circuit board, a ground conductor, a radiator and a first adjustable unit, wherein the system circuit board is connected to the ground conductor to form an electrical conductor; the radiator is op
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PROCESS FOR PURIFICATION OF TAIL GAS CONTAINING VOLATILE ORGANICS PCT/CN2015/081356
[ZHANG, Bing 张兵, ZHANG, Bing 张兵, LI, Jianming 李建明, ZHANG, Bing 张兵, LI, Jianming 李建明, RUAN, Jie 阮杰, ZHANG, Bing 张兵, LI, Jianming 李建明, RUAN, Jie 阮杰, ZHANG, Chunlu 张春璐, ZHANG, Bing 张兵, LI, Jianming 李建明, RUAN, Jie 阮杰, ZHANG, Chunlu 张春璐, AN, Xibao 安喜报] Room 512 (Science Park) 中国天津市南开区科研西路8号内办公大楼内512室(科技园), Tianjin 300192Inside the Office Building, Inside No. 8, Keyan West Road, Nankai DistrictTianjin 300192 Provided are a process and a device for purification of tail gas containing volatile organics. Tail gas to be treated is brought into a sectional absorption tower (T101, T111, T121) from the bottom of the tower, and the volatile organics are removed from the tail gas by absorption with a solvent; and the tail gas continues to rise, and the solvent volatile and/or entrained in tail gas is removed by absorption with water to obtain purified tail gas. The device comprises a sectional absorption tower (T101, T111, T121) comprising a water absorption section located at the upper part inside the tower (T101, T111, T121) and a solvent absorption section located below the water absorption section.
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ANTENNA DEVICE AND TERMINAL PCT/CN2014/084019
[LI, Yuanpeng 李元鹏, LI, Yuanpeng 李元鹏, YU, Yafang 于亚芳, LI, Yuanpeng 李元鹏, YU, Yafang 于亚芳, WANG, Hanyang 王汉阳, LI, Yuanpeng 李元鹏, YU, Yafang 于亚芳, WANG, Hanyang 王汉阳, LI, Jianming 李建铭, LI, Yuanpeng 李元鹏, YU, Yafang 于亚芳, WANG, Hanyang 王汉阳, LI, Jianming 李建铭, HOU, Meng 侯猛, LI, Yuanpeng 李元鹏, YU, Yafang 于亚芳, WANG, Hanyang 王汉阳, LI, Jianming 李建铭, HOU, Meng 侯猛, MENG, Bo 孟博] Huawei Administration Building, Bantian, Longgang District 中国广东省深圳市龙岗区坂田华为总部办公楼, Guangdong 518129Shenzhen, Guangdong 518129 Provided are an antenna device and a terminal, comprising an antenna body, a first filter device and a second filter device, wherein the first filter device comprises a first inductor and a first high-pass low-resistance component, and the second filter device comprises a second inductor and a second high-pass low-resistance component; a feed terminal is provided on the first filter device, and a ground terminal is provided on the second filter device; the first inductor and the first high-pass low-resistance component are both electrically connected in parallel between a first end of the antenna body and the feed terminal; and the second inductor and the second high-pass low-resistance component are both electrically connected in parallel between a second end of the antenna body and the ground terminal. The use of the technical solutions provided in the embodiments of the present invention can reduce the occupied space of a terminal antenna.
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COMMUNICATION TERMINAL PCT/CN2014/087943
[LI, Jianming 李建铭, LI, Jianming 李建铭, WANG, Hanyang 王汉阳, LI, Jianming 李建铭, WANG, Hanyang 王汉阳, HUANG, Jianren 黄建仁, LI, Jianming 李建铭, WANG, Hanyang 王汉阳, HUANG, Jianren 黄建仁, XU, Haowei 许浩维] Huawei Administration Building 中国广东省深圳市龙岗区坂田华为总部办公楼, Guangdong 518129Bantian, Longgang DistrictShenzhen, Guangdong 518129 The present invention provides a communication terminal, comprising a feed terminal, a grounding terminal, an antenna and a switch component. The antenna has an asymmetric structure. The feed terminal is electrically connected with a feed circuit in the communication terminal, and the grounding terminal is electrically connected with the grounding end in the communication terminal. The switch component is used for switching between a first connection manner and a second connection manner. The first connection manner comprises that the feed terminal is electrically connected with a first end of the antenna and the grounding terminal is electrically connected with a second end of the antenna. The second connection manner comprises that the grounding terminal is electrically connected with the first end of the antenna and the feed terminal is electrically connected with the second end of the antenna. Using the technical solution of the embodiments of the present invention, the amount of bonding pads is reduced and it is ensured that influences to the antenna are identical when the left or right part of the head, the left hand or the right hand approaches the terminal.
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METHOD FOR CONTROLLING TRANSMISSION SECURITY OF INDUSTRIAL COMMUNICATIONS FLOW BASED ON SDN ARCHITECTURE PCT/CN2015/098820
[ZENG, Peng 曾鹏, ZENG, Peng 曾鹏, SHANG, Wenli 尚文利, ZENG, Peng 曾鹏, SHANG, Wenli 尚文利, LI, Dong 李栋, ZENG, Peng 曾鹏, SHANG, Wenli 尚文利, LI, Dong 李栋, WAN, Ming 万明, ZENG, Peng 曾鹏, SHANG, Wenli 尚文利, LI, Dong 李栋, WAN, Ming 万明, ZHAO, Jianming 赵剑明, ZENG, Peng 曾鹏, SHANG, Wenli 尚文利, LI, Dong 李栋, WAN, Ming 万明, ZHAO, Jianming 赵剑明, LIU, Jindi 刘金娣, ZENG, Peng 曾鹏, SHANG, Wenli 尚文利, LI, Dong 李栋, WAN, Ming 万明, ZHAO, Jianming 赵剑明, LIU, Jindi 刘金娣, YANG, Ming 杨明] No.114 Nanta Street, Dongling District 中国辽宁省沈阳市东陵区南塔街114号, Liaoning 110016Shenyang, Liaoning 110016 Disclosed is a method for controlling transmission security of an industrial communications flow based on an SDN architecture. The method comprises: designing a flow security control module in a management controller, performing in-depth parsing on industrial communications flow data, matching with a preset industrial rule policy, and executing a control processing operation of the industrial rule policy, to implement transmission control of an industrial communication flow. The management controller comprises an industrial rule policy database, used for storing all industrial rule policies set by a user. An SDN switch maintains a structure of a flow table, and an industrial communications flow is forwarded according to the flow table. The flow table comprises a security control identifier, used for indicating whether security transmission of the communications flow needs to be controlled. The present invention can detect the legality of an industrial communications data flow, access of industrial communication that does not conform to an industrial rule policy is controlled, so that security and reliability of an industrial control system based on an SDN architecture is ensured. Disclosed is a method for controlling transmission security of an industrial communications flow based on an SDN architecture. The method comprises: designing a flow security control module in a management controller, performing in-depth parsing on industrial communications flow data, matching with a preset industrial rule policy, an
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CLEAN PROCESS FOR PREPARING CHLOROFORMYL SUBSTITUTED BENZENE PCT/CN2015/079272
[WANG, Nongyue 王农跃, WANG, Nongyue 王农跃, QU, Xiongwei 瞿雄伟, WANG, Nongyue 王农跃, QU, Xiongwei 瞿雄伟, LI, Guohua 李国华, WANG, Nongyue 王农跃, QU, Xiongwei 瞿雄伟, LI, Guohua 李国华, SHAO, Jianming 邵建明, WANG, Nongyue 王农跃, QU, Xiongwei 瞿雄伟, LI, Guohua 李国华, SHAO, Jianming 邵建明, ZHAO, Quanzhong 赵全忠, WANG, Nongyue 王农跃, QU, Xiongwei 瞿雄伟, LI, Guohua 李国华, SHAO, Jianming 邵建明, ZHAO, Quanzhong 赵全忠, WEN, Guoqiang 闻国强] Room 16-C, Double Pigeon Building, 中国上海市浦东新区浦电路438号双鸽大厦16-C室, Shanghai 200122No. 438, Pudian Road, Pudong New Area,Shanghai 200122 The present invention belongs to the technical field of chemical engineering, and relates to a clean process for preparing chloroformyl substituted benzene. The process of the present invention employs the hydrogen chloride exhaust gas of an oxidative chlorination reaction and an acyl chlorination reaction, and reuses, in a chlorination reaction, the obtained oxidation product chlorine gas. The present invention is a clean process for preparing a polymer-grade chloroformyl substituted benzene.
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SMALL MOLECULE STIMULATORS OF STEROID RECEPTOR COACTIVATOR PROTEINS AND THEIR USE IN THE TREATMENT OF CANCER PCT/US2015/067770
[LONARD, David Michael, LONARD, David Michael, WANG, Lei, LONARD, David Michael, WANG, Lei, O'MALLEY, Bert W., LONARD, David Michael, WANG, Lei, O'MALLEY, Bert W., XU, Jianming, LONARD, David Michael, WANG, Lei, O'MALLEY, Bert W., XU, Jianming, SONG, Yongcheng, LONARD, David Michael, WANG, Lei, O'MALLEY, Bert W., XU, Jianming, SONG, Yongcheng, LI, Xiaonan, LONARD, David Michael, WANG, Lei, O'MALLEY, Bert W., XU, Jianming, SONG, Yongcheng, LI, Xiaonan, PALZKILL, Timothy Gerald] One Baylor PlazaHouston, Texas 77030 Small molecule stimulators of steroid receptor coactivator (SRC) family proteins are provided, as well as methods for their use in treating or preventing cancer. Also provided are methods for stimulating SRC family proteins in a cell.
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USB DATA PIN IMPEDANCE DETECTION PCT/CN2014/087237
[SHI, Fuqiang, SHI, Fuqiang, YAO, Jianming, SHI, Fuqiang, YAO, Jianming, HUANG, Weihai, SHI, Fuqiang, YAO, Jianming, HUANG, Weihai, LI, Yong, SHI, Fuqiang, YAO, Jianming, HUANG, Weihai, LI, Yong, KESTERSON, John William] 675 Campbell Technology Parkway, Suite 150Campbell, California 95008;M2701-2, TEDA Service Outsourcing Industrial Park, No. 19, Xinhuanxi Road, TEDATianjin 300457 A device for determining impedance at a data pin of a communication interface. In one embodiment, the device includes a current source configured to selectively inject a test current to the data pin. The device also includes a sensing circuit for sensing a first test voltage corresponding to a voltage at the data pin without the test current injected, and a second test voltage corresponding to another voltage at the data pin with the test current injected. The sensing circuit determines the impedance at the data pin based on the first test voltage and the second test voltage.
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GAS DISTRIBUTION STRUCTURE OF DISTILLATION COLUMN AND CONTROL METHOD THEREOF PCT/CN2015/076403
[ZHANG, Bing 张兵, ZHANG, Bing 张兵, LI, Jianming 李建明, ZHANG, Bing 张兵, LI, Jianming 李建明, RUAN, Jie 阮杰, ZHANG, Bing 张兵, LI, Jianming 李建明, RUAN, Jie 阮杰, ZHANG, Chunlu 张春璐] Room 512 (Science Park), Inside the Office Building 中国天津市南开区科研西路8号内办公大楼内512室(科技园), Tianjin 300192Inside No. 8, Keyan West Road, Nankai DistrictTianjin 300192 A gas distribution structure of a distillation column is provided. Column plate assemblies for regulating pressure drop are arranged in a left mass transfer area (9) and a right mass transfer area (10) in a column height direction, and comprise column plates (4), vapor risers (5), downcomers (7) and caps (6), wherein a gas flow meter (3) is arranged within anyone vapor line (5). A feed inlet and a liquid collecting opening are formed in the column wall. A liquid flow meter (12), a regulating valve (13) and a circulating pump (14) are arranged on a circulating pipeline between the liquid collecting opening and the feeding inlet. Process parameters are transmitted to a distributed control system (DCS), which controls the circulating pump (14) and the regulating valve (13). The novel internal component structure and the external control process can control the parameters, including energy consumption indexes, raw material components, feed states, product quality and the like, thereby, the total control difficulty of the distillation column is reduced, and the adaptive capacity and the manipulability of the distillation column and the control system thereof are reinforced.
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