航天推进技术研究院主办
HANG Guan-rong,KANG Xiao-lu.Development overview of foreign multimode Hall electric propulsion technology and corresponding inspiration[J].Journal of Rocket Propulsion,2014,40(02):1-6.
国外多模式霍尔电推进发展概况及启示
- Title:
- Development overview of foreign multimode Hall electric propulsion technology and corresponding inspiration
- Keywords:
- multi
- 分类号:
- V439+.4-34
- 文献标志码:
- A
- 摘要:
- 多模式霍尔电推进具有多个工作模式,调节能力强,相对于20世纪80年代以来广泛应用的只有一个工作模式的霍尔电推进器,其优势明显,能很好地适应诸如GEO卫星轨道转移和在轨位置保持,以及深空探测器和空间运输平台的主推进等多种任务,因此得到了广泛研究和应用。国外多模式霍尔电推进发展现状和趋势对我国多模式霍尔电推进的发展具有重要的启示作用。针对我国航天器对电推进的迫切任务需求,定量分析应用多模式霍尔电推进的收益,提出我国多模式霍尔电推进发展的建议。
- Abstract:
- Multimode Hall electric propulsion with good throttle capability can operate with different modes, and has obvious advantages compared to the one-mode Hall electric propulsion which has been used extensively since 1980s. Multimode Hall electric propulsion is studied and used widely because of its good adaptability to many kinds of missions such as orbit transferring and on-orbit station keeping of GEO satellites, primary propulsion of deep space crafts and spaceships, etc. The current status and development trends of foreign multimode Hall electric propulsion result in an important inspiration to the development of domestic multimode Hall electric propulsion. According to the urgent demand of electric propulsion for domestic spacecrafts, the gains of applying multimode Hall electric propulsion is analyzed quantitatively, and the development suggestion of domestic multimode Hall electric propulsion is put forward.
参考文献/References:
[1]DUCHEMIN O, DUMAZERT P, CARICHON S, et al. Performance and lifetime predictions by testing and mo- deling for the PPS 5000 Hall thruster, AIAA-2003-4555 [R]. USA: AIAA, 2003.
[2]COREY R L, GASCON N, DELGADO J J. Performance and evolution of stationary plasma thruster electric propulsion for large communications satellites, AIAA-2010- 8688[R]. USA: AIAA, 2010.
[3]HOFER R R. High-specific impulse operation of the BPT-4000 Hall thruster for NASA science missions,
AIAA-2010-6623[R]. USA: AIAA, 2010.
[4]GRYS K D, FISHER J, WILSON F, et al. 4.5 kW Hall thruster system qualification status, AIAA-2004-3603[R]. USA: AIAA, 2004.
[5]WITZBERGER K, MANZELLA D. Performance of solar electric powered deep space missions using hall thruster propulsion, AIAA-2005-4268[R]. USA: AIAA, 2005.
[6]KAMHAWI H, HAAG T, PINERO L. Overview of the development of a low cost high voltage Hall accelerator propulsion system for NASA science missions, AIAA- 2011-5520 [R]. USA: AIAA, 2011.
[7]FLORENZ R, GALLIMORE A D, PETERSON P Y. Developmental status of a 100-kW class laboratory nested channel Hall thruster, IEPC-2011-246[R]. [S.l.]: IEPC, 2011.
[8]AKIMOV V N, BAIDAKOV S G, GALAYKO V N. Development of KM-5 HALL effect thruster and its flight testing onboard GEO spacecraft “EXPRESS-A4”[J]. Progress in Propulsion Physics, 2009 (1): 411-424.
[9]CORNU N, MARCHANDISE F, DARNON F, et al. The PPS 1350-G qualification demonstration: 10500 hrs on the ground and 5000 hrs in flight, AIAA-2007-5197[R]. USA: AIAA, 2007.
[10]KOCH N, HARMANN H-P, KORNFELD G. Status of the THALES high efficiency multi stage plasma thruster development for HEMP-T 3050 and HEMP-T 30250, IEPC-2007-110[R]. [S.l.]: IEPC, 2007.
备注/Memo
收稿日期:2013-12-04;修回日期:2014-01-10 作者简介:杭观荣(1981—),男,博士,高级工程师,研究领域为电推进技术