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Design and simulation of the ATP system considering the advanced targeting angle in quantum positioning system 被引量:1
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作者 CONG Shuang ZHANG Xiang DUAN Shiqi 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2022年第5期1227-1236,共10页
A compensation implementation scheme of the advanced targeting process based on the fine tracking system is proposed in this paper.Based on the working process of the quantum positioning system(QPS)and its acquisition... A compensation implementation scheme of the advanced targeting process based on the fine tracking system is proposed in this paper.Based on the working process of the quantum positioning system(QPS)and its acquisition,tracking and pointing(ATP)system,the advanced targeting subsystem of the ATP system is designed.Based on six orbital parameters of the quantum satellite Mozi,the advanced targeting azimuth angle and pitch angle are transformed into the dynamic tracking center of the fine tracking system in the ATP system.The deviation of the advanced targeting process is analyzed.In the Simulink,the simulation experiment of the ATP system considering the deviation compensation of the advanced targeting is carried out,and the results are analyzed. 展开更多
关键词 quantum positioning system(QPS) ACQUISITION tracking and pointing(ATP) advanced targeting
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Fusion Reactor and Fusion Reactor Materials— Target Fuel Depletion Fraction and Energy Gain of Inertial Confinement Fusion with D-^3He Advanced Fuel
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作者 DENG Baiquan FENG Kaiming 《Southwestern Institute of Physics Annual Report》 2004年第1期85-88,共4页
The target fuel depletion and energy gain of inertial confinement fusion (ICF) for uniform spherical target of D-SHe advanced fuel compressed by high power laser-beam have been derived and calculated in this article... The target fuel depletion and energy gain of inertial confinement fusion (ICF) for uniform spherical target of D-SHe advanced fuel compressed by high power laser-beam have been derived and calculated in this article. Our numerical calculations show that if only the approximation of small internal energy of central spark and high inertial confinement parameter Hr = ρRF is valid for typical efficiency parameters of reactor system, the net fusion energy output can be possible for ICF of D-3He target. Inversely, under the approxi- mation of large internal energy of central spark and low HF it will not be possible to get net fusion energy output for ICF of D-^3He target. Hereby, an indirect proof of the scientific basis of fast ignition(FI) philosophy has been provided as a matter of fact. 展开更多
关键词 D-^3He advanced fuel target ICF Fuel depletion and energy gain
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