Patents by Inventor Hong MOU
Hong MOU has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 11081888Abstract: The present disclosure provides a method, an apparatus, and a medium for calculating capacities of a plurality of photovoltaic power stations. The method includes: receiving a plurality of historical weather data sets from the plurality of weather monitoring stations; determining a scene year based on the plurality of historical weather data sets; receiving an actual generating capacity of each photovoltaic power station predicted by a power system dispatch center; extracting weather data of each photovoltaic power station in the scene year from the corresponding historical weather data set; obtaining an available generating capacity of each photovoltaic power station in the scene year based on the weather data; and determining a capacity of each photovoltaic power station in the scene year according to the actual generating capacity and the available generating capacity of each photovoltaic power station.Type: GrantFiled: August 13, 2019Date of Patent: August 3, 2021Assignees: TSINGHUA UNIVERSITY, ECONOMIC AND TECHNOLOGICAL RESEARCH INSTITUTE, STATE GRID SHANDONG ELECTRIC POWER COMPANYInventors: Jian Zhang, Xin Tian, Xueliang Li, Ning Zhang, Jian Wu, Long Zhao, Yan Wang, Zhijie Zheng, Hong Mou, Yuan Wang, Xiaoming Liu, Jie Zhang, Xiaonan Gao, Jianing Zhang, Dong Liu, Ying Mou, Shanjie Jia, Bo Li, Yi Zhu, Xiaohai Gao, Xin Wei, Jia Wei
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Publication number: 20200059101Abstract: The present disclosure provides a method, an apparatus, and a medium for calculating capacities of a plurality of photovoltaic power stations. The method includes: receiving a plurality of historical weather data sets from the plurality of weather monitoring stations; determining a scene year based on the plurality of historical weather data sets; receiving an actual generating capacity of each photovoltaic power station predicted by a power system dispatch center; extracting weather data of each photovoltaic power station in the scene year from the corresponding historical weather data set; obtaining an available generating capacity of each photovoltaic power station in the scene year based on the weather data; and determining a capacity of each photovoltaic power station in the scene year according to the actual generating capacity and the available generating capacity of each photovoltaic power station.Type: ApplicationFiled: August 13, 2019Publication date: February 20, 2020Inventors: Jian ZHANG, Xin TIAN, Xueliang LI, Ning ZHANG, Jian WU, Long ZHAO, Yan WANG, Zhijie ZHENG, Hong MOU, Yuan WANG, Xiaoming LIU, Jie ZHANG, Xiaonan GAO, Jianing ZHANG, Dong LIU, Ying MOU, Shanjie JIA, Bo LI, Yi ZHU, Xiaohai GAO, Xin WEI, Jia WEI
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Patent number: 9319001Abstract: An exemplary embodiment of the present disclosure illustrates an amplifier circuit comprising an amplifier block and a biasing block. The amplifier block is used to receive an input signal and amplify the input signal to generate an output signal. The a biasing block coupled to the amplifier block is used to provide biasing voltages to bias the amplifier block, and compensate an output gain of the amplifier block before the output gain of the amplifier block is compressed, so as to extend a P1 dB compression point of the amplifier block, wherein the biasing currents are substantially independent to temperature and/or system voltage variation.Type: GrantFiled: February 24, 2014Date of Patent: April 19, 2016Assignee: Advanced Semiconductor Engineering Inc.Inventors: Jaw-Ming Ding, Rong-Hsang Ho, Jia-Hong Mou
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Patent number: 9184716Abstract: A low noise amplifier is disclosed. The low noise amplifier comprises a current mirror circuit, a bias circuit, a cascode amplifying circuit and a power gain compensating circuit. The current mirror circuit is used for providing a first current and third current. The bias circuit is used for receiving a first current and third current and outputting a first bias voltage and a second bias voltage according to the first current and third current. The cascode amplifying circuit respectively receives the first bias voltage and the second bias voltage, and accordingly to work at an operation bias point. The power gain compensating circuit is used for receiving a RF output signal and accordingly outputs a gain compensating signal to the current mirror circuit so as to dynamically adjust current value of the first current and third current and further to compensates power gain of the low noise amplifier in order to increase 1 dB gain compression point (P1 dB).Type: GrantFiled: March 28, 2014Date of Patent: November 10, 2015Assignee: ADVANCED SEMICONDUCTOR ENGINEERING INC.Inventors: Jaw-Ming Ding, Jia-Hong Mou
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Publication number: 20150280672Abstract: A low noise amplifier is disclosed. The low noise amplifier comprises a current mirror circuit, a bias circuit, a cascode amplifying circuit and a power gain compensating circuit. The current mirror circuit is used for providing a first current and third current. The bias circuit is used for receiving a first current and third current and outputting a first bias voltage and a second bias voltage according to the first current and third current. The cascode amplifying circuit respectively receives the first bias voltage and the second bias voltage, and accordingly to work at an operation bias point. The power gain compensating circuit is used for receiving a RF output signal and accordingly outputs a gain compensating signal to the current mirror circuit so as to dynamically adjust current value of the first current and third current and further to compensates power gain of the low noise amplifier in order to increase 1 dB gain compression point (P1dB).Type: ApplicationFiled: March 28, 2014Publication date: October 1, 2015Applicant: ADVANCED SEMICONDUCTOR ENGINEERING INC.Inventors: JAW-MING DING, JIA-HONG MOU
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Publication number: 20150244327Abstract: An exemplary embodiment of the present disclosure illustrates an amplifier circuit comprising an amplifier block and a biasing block. The amplifier block is used to receive an input signal and amplify the input signal to generate an output signal. The a biasing block coupled to the amplifier block is used to provide biasing voltages to bias the amplifier block, and compensate an output gain of the amplifier block before the output gain of the amplifier block is compressed, so as to extend a P1 dB compression point of the amplifier block, wherein the biasing currents are substantially independent to temperature and/or system voltage variation.Type: ApplicationFiled: February 24, 2014Publication date: August 27, 2015Applicant: ADVANCED SEMICONDUCTOR ENGINEERING INC.Inventors: JAW-MING DING, RONG-HSANG HO, JIA-HONG MOU
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Patent number: 9013238Abstract: A radio frequency (RF) amplifier is disclosed. The RF power amplifier includes a bias circuit, an output-stage circuit and a RF compensation circuit. When a first system voltage is larger than a first voltage threshold value, the bias circuit generates a first current rising slightly. When first system voltage is larger than second voltage threshold value, the RF compensation circuit receives a second circuit rising slightly transmitted from the bias circuit. When the first system voltage is in an operation voltage range, the first current is larger than the second circuit so as to a quiescent operating current of the RF power amplifier is independent of change of the first system voltage. When the first system voltage is larger than a third voltage threshold value, the first current is equal to the second current so as to have the bias current being a zero current to protect the RF power amplifier from over-voltage.Type: GrantFiled: September 3, 2013Date of Patent: April 21, 2015Assignee: Advanced Semiconductor Engineering, Inc.Inventors: Jaw-Ming Ding, Jia-Hong Mou, Hsin-Chin Chang
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Publication number: 20140368277Abstract: A radio frequency (RF) amplifier is disclosed. The RF power amplifier includes a bias circuit, an output-stage circuit and a RF compensation circuit. When a first system voltage is larger than a first voltage threshold value, the bias circuit generates a first current rising slightly. When first system voltage is larger than second voltage threshold value, the RF compensation circuit receives a second circuit rising slightly transmitted from the bias circuit. When the first system voltage is in an operation voltage range, the first current is larger than the second circuit so as to a quiescent operating current of the RF power amplifier is independent of change of the first system voltage. When the first system voltage is larger than a third voltage threshold value, the first current is equal to the second current so as to have the bias current being a zero current to protect the RF power amplifier from over-voltage.Type: ApplicationFiled: September 3, 2013Publication date: December 18, 2014Applicant: ADVANCED SEMICONDUCTOR ENGINEERING INC.Inventors: JAW-MING DING, JIA-HONG MOU, HSIN-CHIN CHANG
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Patent number: 6102808Abstract: A height-adjustable billiard table includes a table body and legs. The table body has a bottom portion. Securing plates are disposed at four corners of the bottom portion and have respective support screw rods secured thereto. Each support screw rod has a gear in the form of an umbrella disposed at a top end thereof. The legs have screw rod seats at top ends thereof for receiving the support screw rods that connect the securing plates to the top ends of the legs. A transmission shaft having opposed worms provided at two opposite ends thereof is disposed at the bottom portion of the table body to extend in a longitudinal direction. Two worm shafts are disposed at front and rear ends of the bottom portion of the table body. The worm shafts are transverse to the transmission shaft and parallel to each other.Type: GrantFiled: December 10, 1998Date of Patent: August 15, 2000Assignee: Wan Chao Wood Industrial Co., Ltd.Inventor: Hong-Mou Wong