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標(biāo)題: Titlebook: Dynamics and Control of Lorentz-Augmented Spacecraft Relative Motion; Ye Yan,Xu Huang,Yueneng Yang Book 2017 Springer Science+Business Med [打印本頁]

作者: mountebank    時間: 2025-3-21 19:50
書目名稱Dynamics and Control of Lorentz-Augmented Spacecraft Relative Motion影響因子(影響力)




書目名稱Dynamics and Control of Lorentz-Augmented Spacecraft Relative Motion影響因子(影響力)學(xué)科排名




書目名稱Dynamics and Control of Lorentz-Augmented Spacecraft Relative Motion網(wǎng)絡(luò)公開度




書目名稱Dynamics and Control of Lorentz-Augmented Spacecraft Relative Motion網(wǎng)絡(luò)公開度學(xué)科排名




書目名稱Dynamics and Control of Lorentz-Augmented Spacecraft Relative Motion被引頻次




書目名稱Dynamics and Control of Lorentz-Augmented Spacecraft Relative Motion被引頻次學(xué)科排名




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書目名稱Dynamics and Control of Lorentz-Augmented Spacecraft Relative Motion讀者反饋




書目名稱Dynamics and Control of Lorentz-Augmented Spacecraft Relative Motion讀者反饋學(xué)科排名





作者: 有權(quán)    時間: 2025-3-21 21:14
Dynamics and Control of Lorentz-Augmented Spacecraft Relative Motion978-981-10-2603-4
作者: 好開玩笑    時間: 2025-3-22 01:18

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作者: 突變    時間: 2025-3-23 19:55
Dynamics and Control of Lorentz-Augmented Spacecraft Hovering,inuously to induce an equilibrium state at a desired position. Due to the constraints on the quantity of propellant onboard, long-time hovering around low-Earth orbits (LEOs) is hardly achievable using traditional chemical propulsion.
作者: CODE    時間: 2025-3-24 01:09

作者: 刪減    時間: 2025-3-24 04:24
Ye Yan,Xu Huang,Yueneng YangOffers detailed dynamical analysis of and controller design for Lorentz-augmented space missions.Includes completed numerical examples to verify the theoretical analyses.Provides essential insights in
作者: 臨時抱佛腳    時間: 2025-3-24 08:27
http://image.papertrans.cn/e/image/283960.jpg
作者: brachial-plexus    時間: 2025-3-24 13:58
Relative Navigation of Lorentz-Augmented Orbital Motion,al magnetic field. As derived in the last chapter, both the local magnetic field and the relative velocity are functions of the relative states between spacecraft, that is, relative position and velocity.
作者: 忍受    時間: 2025-3-24 15:29
Dynamics and Control of Lorentz-Augmented Spacecraft Hovering,inuously to induce an equilibrium state at a desired position. Due to the constraints on the quantity of propellant onboard, long-time hovering around low-Earth orbits (LEOs) is hardly achievable using traditional chemical propulsion.
作者: cochlea    時間: 2025-3-24 22:42
al magnetic field. As derived in the last chapter, both the local magnetic field and the relative velocity are functions of the relative states between spacecraft, that is, relative position and velocity.
作者: 1FAWN    時間: 2025-3-25 01:27

作者: nauseate    時間: 2025-3-25 05:47

作者: 使乳化    時間: 2025-3-25 11:29
al magnetic field. As derived in the last chapter, both the local magnetic field and the relative velocity are functions of the relative states between spacecraft, that is, relative position and velocity.
作者: 逢迎春日    時間: 2025-3-25 14:52

作者: 牌帶來    時間: 2025-3-25 17:43
Saumyendra Sengupta,Carl Phillip Korobkindeveloped based on a linearized dynamical model of Lorentz-augmented relative orbital motion. Due to the characteristic of the linearized dynamics, several constraints are imposed on the initial relative position and maneuvering time in this strategy. To get rid of these constraints, nonlinear optim
作者: 侵略主義    時間: 2025-3-25 21:11

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作者: Ardent    時間: 2025-3-26 04:51

作者: Valves    時間: 2025-3-26 09:21
Springers Angewandte InformatikLorentz-augmented spacecraft formation flying (SFF) is one of the most promising applications of Lorentz spacecraft.
作者: DOTE    時間: 2025-3-26 13:44

作者: 蹣跚    時間: 2025-3-26 16:51

作者: Torrid    時間: 2025-3-26 22:31
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