Jiangshan
Jiangshan Chen, Beijing CN
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20130294545 | METHOD AND APPARATUS FOR ELIMINATING DIRECT CURRENT OFFSET - The present invention provides a method and an apparatus for eliminating direct current offset. The method comprises the steps of: calculating Euclidean distances between every two demodulation symbols of a plurality of demodulation symbols based on Quadrature Phase Shift Keying (QPSK) modulation; determining four sets from the plurality of demodulation symbols in accordance with the Euclidean distances between the demodulation symbols, each set corresponding to a modulation direction for the QPSK modulation; performing Euclidean distance weighted summation on the determined four sets respectively, and selecting a demodulation symbol with the minimum weighted summation value from each set as a rough estimation point for the QPSK modulation, so as to obtain four rough estimation points; re-determining four sets from the plurality of demodulation symbols in accordance with the Euclidean distances between the demodulation symbols and the rough estimation points; performing Euclidean distance weighted summation on the re-determined four sets respectively, and selecting a demodulation symbol with the minimum weighted summation value from each set as a precise estimation point; and performing direct current offset calculation and compensation in accordance with the precise estimation points. The present invention can improve the demodulation performance of a system. | 11-07-2013 |
Jiangshan Xu, Shenzhen City CN
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20150046966 | CABLE TV NETWORK BROADBAND ACCESS SYSTEM WITH DISTRIBUTED DEPLOYMENT AND CENTRALIZED CONTROL - The present invention provides a cable TV broadband access system with distributed deployment and centralized control, which comprises: a system terminal end, configured to receive and transmit uplink and downlink service data, and receive and respond to access control data and management control data; a system access end, configured to implement data format transformation and data forwarding or processing for said uplink and downlink service data, said access control data and said management control data of said system terminal end, and transmit, receive and respond to management control data of said system access end; a system head end, configured to implement management control and access control for said system access end and said system terminal end, and process, converge and forward said uplink and downlink service data. Said system uses a system architecture with three-stage distributed deployment and centralized control comprising a system terminal end, a system access end and a system head end, and it can not only realize the end-to-end control management and QoS priority assurance of the broadband data service, but can also realize easy network deployment, low comprehensive cost and high management efficiency. | 02-12-2015 |
Jiangshan Yu, Birmingham GB
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20160080336 | Key Usage Detection - Key usage detection, and in particular, methods and systems for a recipient of an encrypted message to detect usage of the recipient's secret key. | 03-17-2016 |
Jiangshan Zhao, Beijing CN
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20140023101 | SINGLE-CAVITY DUAL-ELECTRODE DISCHARGE CAVITY AND EXCIMER LASER - A single-cavity dual-electrode discharge cavity and an excimer laser including such a discharge cavity are disclosed. The discharge cavity may comprise a cavity body and two sets of main discharge electrodes. The cavity body may comprise a left chamber and a right chamber arranged to form a symmetric dual-chamber cavity. The left and right chambers can interface and communicate with each other at a plane of symmetry of the entire discharge cavity. The two sets of main discharge electrodes can be disposed in the left and right chambers on the upper side, respectively. According to the present disclosure, the single-cavity configuration can be used to achieve functions of dual-cavity configurations, such as MOPA, MOPO, and MOPRA. Thus, it is possible to reduce system complexities and also ensure synchronization of discharging in the discharge cavity. | 01-23-2014 |
20150333468 | FLOW GUIDE DEVICE FOR DUAL-ELECTRODE DISCHARGE CAVITY, DUAL ELECTRODE DISCHARGE CAVITY UTILIZE THE SAME AND EXCIMER LASER - The present disclosure proposes a flow guide device for a discharge cavity having a symmetrical configuration and including two pairs of electrodes; the flow guide device comprises two rotors which correspond to one pair of the two pairs of electrodes, respectively, installed positions of which are symmetrical about a symmetrical plane of the discharge cavity and is beneath the electrodes, a rotational axis of which is parallel to an axial direction of the electrodes which is parallel to a base plane of the discharge cavity, and the two rotors have opposite rotation directions and identical rotation speeds. The flow guide device further comprises a spoiler plate and a flow guide plate so that the discharge gas flow passes through the discharge cavity in a manner of high speed and uniform cycling when flowing through the discharge region. Thus, the discharge quality is guaranteed so as to improve the energy and reliability of the laser. | 11-19-2015 |
Jiangshan Zheng, Beijing CN
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20150025526 | ABLATION ELECTRODE AND PERFUSED ELECTRODE CATHETER USING THE ELECTRODE - The present invention discloses an ablation electrode used in a catheter. The ablation electrode includes an electrode shell, an optional cavity inside the electrode shell and a temperature sensor. An outflow liquid pathway for the perfusion liquid is arranged on the electrode shell, and an inflow liquid pathway for the perfusion liquid is arranged in the proximal end of the electrode shell. A thermal conduction isolation structure is arranged between the temperature sensor and the liquid pathway. The thickness of the electrode shell where the temperature sensor is located is less than 0.2 mm. The present invention also provides a perfusion electrode catheter which includes the ablation electrode. The perfused electrode catheter of the present invention can provide efficient prompts on the rising ablation temperature in the ablation process. | 01-22-2015 |