Program
The conference program on 25 August 2016.
|
Sunday 28-Aug |
Monday 29-Aug |
Tuesday 30-Aug |
Wednesday 31-Aug |
Thursday 1-Sep |
Friday 2-Sep |
8:00 |
|
Breakfast |
Breakfast |
Breakfast |
Breakfast |
|
9:00 |
|
Plenary talks |
Stay in Cheboksary |
Stay in Nizhniy Novgorod |
Technical session E |
Breakfast |
10:00 |
|
|||||
11:00 |
Excursion in Samara |
Arrival in Samara |
||||
12:00 |
|
|||||
13:00 |
Lunch and break |
Lunch and break |
Lunch and break |
Lunch and break |
|
|
14:00 |
Technical session A |
Technical session B1 |
Technical session C |
Technical session F |
|
|
15:00 |
Lunch |
|
||||
16:00 |
|
|
||||
17:00 |
Welcome receptionon motor ship |
Stay in Kazan |
Technical session B2 |
Technical session D |
Closing Ceremony |
|
18:00 |
Departure from Samara |
Gala dinner |
|
|||
19:00 |
Opening Ceremony |
Stay in Makariev |
|
|||
20:00 |
Welcome dinner |
Dinner |
Dinner |
|
||
21:00 |
|
|
|
Dinner |
|
|
22:00 |
|
|
|
|
|
|
Plenary Talk
№ |
Title |
Authors |
Affilation |
P1 |
Electric Propulsion in Germany: Present national activities, international cooperation and future vision |
H.-W. Gronert-Marquardt, M. L. Martin Perez |
DLR |
P2 |
German EP community – an overview on its activities inside the German Society for Aeronautics and Astronautics (DGLR) and presentation of the latest position paper |
H. R. Neumann, H.-P. Harmann, A. Neumann, H. J. Leiter |
IOM Leipzig |
P3 |
Cross-sectoral cooperation in the comprehensive study of ERE and their application: On the 50th anniversary of the “Yantar” Program |
A. S. Filatyev, V. V. Skvortsov |
TsAGI |
Ion thrusters
(Technical Session A)
№ |
Title |
Authors |
Affilation |
A1 |
Advanced electric propulsion diagnostic tools at IOM |
C. Bundesmann, C. Eichhorn, F. Scholze, D.Spemann, H. Neumann, F. Scortecci, H. J. Leiter, K. Holste, P. J. Klar |
Leibniz Institute of Surface Modification |
A2 |
Modelling of a Radio Frequency Plasma Bridge Neutralizer (RFPBN) |
F. Scholze, C. Eichhorn, C. Bundesmann, D. Spemann, H. Neumann |
Leibniz Institute of Surface Modification |
A3 |
Kinetic simulation of plasma in ion thruster discharge chamber |
A. S. Lovtsov, D. Kravchenko |
SSU FSUE Keldysh Research Centre |
A4 |
Measurement of Forces in the Beam of Ion Sources and in the Plume of Sputter Targets |
A. Spethmann, T. Trottenberg, H. Kersten |
University of Kiel |
A5 |
Analytical Model of Radio-Frequency Ion Thruster |
V. V. Nigmatzyanov, S. V. Kanev; Sergey A. Khartov |
MAI |
A6 |
High-performance digital-controlled radio-frequency generator for RF ion thrusters |
J. Simon, U. Probst, P. J. Klar |
University of Giessen |
A7 |
Procedure of accelerated life tests of the ion thruster |
R. V. Akhmetzhanov, V. V. Balashov, A. V. Bogatyy, D. A. Kashirin, V. A. Obukhov, G. A. Popov, M.V. Cherkasova, D.V. Dukhopel’nikov, S.G. Ivakhnenko, A.V. Kudryavtsev, A.I. Mogulkin, E.V. Vorob’ev
|
MAI |
A8 |
Temperature measurements in the low-power radio frequency ion thrusters |
K. I. Kruglov, V. K. Abgaryan, R. V. Akhmetzhanov, V. V. Balashov, A. V. Bogatyy, A.I. Mogulkin |
MAI |
A9 |
Numerical simulation of temperature deformation for radio frequency ion thruster electrodes |
A. I. Mogulkin, V.А. Fedorov, V.А. Obukhov, V.K. Abgaryan |
MAI |
A10 |
Methods and means of low angles projections tomography diagnostics of ionic streams engines of spacecraft
|
O. V. Phylonin |
Samara University |
A11 |
Application of additive manufacturing techniques to the production of ion optics |
M. Lopez San Gregorio, K. Xie, N. Wang |
Beijing Institute of Technology |
A12 |
Update on diagnostics for DLR's electric propulsion test facility |
A. Neumann |
DLR |
Stationary plasma thrusters
(Technical Session B1)
№ |
Title |
Authors |
Affilation |
B1.1 |
Assessment of the SPT-140 thruster mechanical strength |
A. Y. Usanov, O. Boichenko |
EDB Fakel |
B1.2 |
Development of power processing unit for stationary plasma thruster of space vehicles on the basis of a modular distributed structure with a digital interface |
M.B. Irz, S.V. Karamov, V.Y. Molotkov |
AVECS JSC. |
B1.3 |
Formation of the items surface roughness from noble metals and their alloys to increase their catalytic capability |
R. S. Poddubniy |
EDB Fakel |
B1.4 |
Low-current cathode with BaO based thermoemitter |
R. S. Poddubniy, G. Parakhin, A. Sinitsin |
EDB Fakel |
B1.5 |
Investigation of low-power thruster on krypton propellant |
P. A. Saevets, V. P. Kim, P. G. Smirnov, D. P. Grdlichko |
EDB Fakel |
B1.6 |
Investigation of the thermal catalytic thruster on HAN-based monopropellant |
D. A. Goza |
EDB Fakel |
Magnetoplasmodynamic thrusters
(Technical Session B2)
№ |
Title |
Authors |
Affilation |
B2.1 |
A review of European Electric propulsion plume modeling
|
B. Zitouni |
OHB |
B2.2 |
Measurements and analysis of potential oscillations near the hollow cathode |
Y. Qin, K. Xie, J. Ouyang |
Beijing Institute of Technology |
B2.3 |
Development of next-generation ablative pulsed plasma thruster APPT-250 |
G. A. Dyakonov, N. N. Antropov, A. V. Bogatyi, V. N. Boykachev, N. V. Lyubinskaya, G. A. Popov, S. A. Semenikhin, V. K. Tyutin, V. N. Yakovlev |
MAI |
B2.4 |
Simulation of the charged particles motion in the discharge channel of the ablation pulsed plasma thruster |
A. Antipov, A.V. Bogatyy |
MAI |
B2.5 |
Study on the evolutionary process of characteristics of plasma properties in pulsed plasma thruster |
G. Zuo |
Beijing Institute of Technology |
Design of electric propulsion spacecraft, problems of power sources and thruster-spacecraft conjunction
(Technical Session C)
№ |
Title |
Authors |
Affilation |
|
|||
C1 |
On the optimal use of electric ramjet for low-orbit spacecraft |
A. S. Filatyev, O. V. Yanova |
TsAGI |
|
|||
C2 |
The issues of the international standards development which are regulate methods and instruments of EPS development |
V. Y. Sinelnikov, A. Semenkin, A. Sizov, V. Sinelnikov, E. Tverdokhlebova, T. Homin |
TsNIIMash |
|
|||
C3 |
Iodine as an alternative propellant for Xenon |
W. Gärtner, S. Scharmann, P. E. Köhler, K. Holste, P. J. Klar |
University of Giessen |
||||
C4 |
The creation of a system of storage and supply of iodine in electricrocket thruster |
P. A. Shcherbina, V. G. Ostrovsky, A. A. Smolentsev |
RSC Energia |
|
|||
C5 |
Peculiarities of determination of electromagnetic interference emission from electric propulsion thrusters under ground conditions |
A. P. Plokhikh, V.М. Arbatskiy, S.V. Baranov, N.A. Vazhenin, G.A. Popov |
MAI |
|
|||
C6 |
Improvement of the “AIST-2D” satellite’s efficiency by equipping it with an electro-rocket vernier engine |
V.V. Salmin, S.I. Tkachenko, I.S. Tkachenko, V.V. Volotsuev, S.L. Safronov, I.V. Kaurov, S.V. Shikhanov |
Samara University |
|
|||
C7 |
Selection of the source data to create an energy system of low-orbit space vehicle with electrojet propulsion system |
V. V. Volotsuev |
Samara University |
|
|||
Problems of flight dynamics and motion control
(Technical Session D)
№ |
Title |
Authors |
Affilation |
D1 |
Development of orbit control propulsion subsystem on the base of KM-60 thruster for geostationary spacecraft |
D. V. Volkov, Y. M. Ermoshkin, E. N. Yakimov |
ISS-ReshetnevCompany |
V. V. Vorontsov, A. N. Kostin, A. S. Lovtsov |
SSC FSUE Keldysh Research Centre |
||
O. A. Gorshkov |
Central Research Institute of Machine Building |
||
A. A. Ostapushenko, D. V. Udalov |
SPC Polus |
||
Y. S. Arkhipov, S. A. Buldashev |
Research Institute of Machine Building |
||
D2 |
Optimization of heliocentric trajectories of spacecraft with a multimode electric propulsion |
V. G. Petukhov, Woo Sang Wook
|
MAI |
D3 |
An analysis of the expediency of complication of Spitzer’s scheme for SC insertion into geostationary orbit using electric propulsion |
M. S. Konstantinov |
MAI |
D4 |
Application of electric propulsion for controled spacecraft, that function on non Keplerian orbits |
O. L. Starinova, R. M. Khabibullin, M. K. Fain, I. V. Gorunova, A, Y. Shornikov |
Samara University |
D5 |
Keeping of parameters of a low working orbit of a space vehicle by means of electrojet engines |
V. V. Volotsuev, V.V. Salmin, S. L. Safronov, I. S. Tkachenko
|
Samara University |
N. R. Stratilatov, , S. S. Raube, S. V. Shihanov |
JSC RSC “Progress” |
||
D6 |
Application of electric propulsion for the insertion of the spacecraft with diffractive optical element in various positions of the geostationary orbit |
V. A. Soifer, V. V. Salmin, S. V. Karpeev, A. S. Chetverikov, K. V. Peresypkin, I. S. Tkachenko |
Samara University |
D7 |
Calculation of window start of a spacecraft with solar electric propulsion for flight between non-complanar near-earth circular orbits |
S.A. Ishkov, K.V.Petrukhina, V.V. Salmin |
Samara University |
D8 |
Analyze of electric thruster efficiency for low Earth orbits correction problem |
G. A. Filippov, S. A. Ishkov |
Samara University |
D9 |
Optimization of ballistic schemes flights spacecraft with electric propulsion power plants to the geostationary orbit
|
V.V. Salmin, K.V. Petrukhina, A.S. Chetverikov |
Samara University |
D10 |
Forming a project of the combined module including a chemical upper stage and electric jet transport module in the programming environment CREO ELEMENTS/PRO |
K.V. Petrukhina, A.S. Russkih, V.V. Salmin, S.L. Safronov |
Samara University |
D11 |
Delivery of a satellite with a highly elliptical orbit to geosynchronous orbit using electric propulsions |
V.V. Salmin, K.V. Petrukhina, A.A. Kvetkin |
Samara University |
D12 |
Analysis of the orbit injection scheme for a radiotelescope system with very long bases using EPS |
I. V. Kaurov, V. V. Salmin, I. S. Tkachenko, S. L. Safronov, M. A. Ivanushkin, S. S. Volgin, M. D. Korovin |
Samara University |
D13 |
Influence of the shaded areas on the low thrust spacecraft flight control in the Earth-Moon system |
M. K. Fain |
Samara University |
Application problems of electric propulsion on the small, micro- and nano- satellites (Technical Session E)
№ |
Title |
Authors |
Affilation |
E1 |
Radio-frequency ion thruster for microsatellites |
D. A. Kashirin, N. N. Antropov, R. V. Akhmetzhanov, A. V. Bogatyy, K. I. Kruglov, A. I. Mogulkin
|
MAI |
E2 |
Experience in operating a constellation of small satellites using SSAU ground control center and perspectives of managing a constellation of satellites using a distributed network of control centers based on a multi-agent approach |
S. I. Tkachenko, I. V. Kaurov, I. S. Tkachenko, M. A. Ivanushkin, S. S. Volgin, M. D. Korovin |
Samara University |
E3 |
Verification of the ground testing procedure of the thermal control system of “AIST” small satellite series using telemetry data obtained via Samara University ground control center
|
S. I. Tkachenko, V. V. Salmin, I. S. Tkachenko, I. V.Kaurov, M. D. Korovin |
Samara University |
E4 |
Analysis of power and thermal regime of an "AIST" series satellites for possibility of utilizing an EPS |
S. I. Tkachenko, V. V. Salmin, I. S. Tkachenko, I. V.Kaurov, M. D. Korovin |
Samara University |
E5 |
Propulsion unit for maneuvering of the low-altitude nanosatellite |
A. V. Ivliev, I. V. Belokonov |
Samara University |
E6 |
Control systems for the movement of nanosatellites in ISS zone |
O. V. Phylonin, I. V. Belokonov, P. N. Nikolayev |
Samara University |
E7 |
The small size ions plasmas engine for nano satellites |
O. V. Phylonin, I. V. Belokonov |
Samara University |
Electric propulsion application in planets and asteroid rendezvous mission and utilization of space debris
(Technical Session F)
№ |
Title |
Authors |
Affilation |
F1 |
Special refill spacecraft debris collector, equipped with electric thruster, design parameters optimization |
S. A. Ishkov, G. A. Filippov |
Samara University |
F2 |
Autonomous control program for special spacecraft debris collector rendezvous transfer with fragment of space debris |
S. A. Ishkov, G. A. Filippov |
Samara University |
F3 |
Nonlinear flight simulation of low thrust spacecraft to asteroid orbit |
R. M. Khabibullin |
Samara University |
F4 |
Effectiveness analyses of electrospray sustainer engine installed on a spacecraft maneuvering in vicinity of an asteroid |
O. L. Starinova, A. Y. Shornikov |
Samara University |
F5 |
Modified Newton’s method as a boundary problem solution for the task of controlled spacecraft's motion in dynamic gravitational field of an asteroid |
O. L. Starinova, A. Y. Shornikov |
Samara University |
F6 |
The design of low thrust engine spacecraft for exploration of asteroids |
O. L. Starinova, R. M. Khabibullin, M. K. Fain, H. Judon |
Samara University |
F7 |
Simulation of low thrust spacecraft guided motion for a number of missions in the Solar system |
O. L. Starinova, I. V. Gorbunova, M. K. Fain, R. M. Khabibullin, A. Yu. Shornikov |
Samara University |
Poster presentations
№ |
Title |
Authors |
Affilation |
|
1 |
Ontological modeling of flight preparation manual |
N. M. Borgest, O. A. Orlova |
Samara University |
|
2 |
Aerospace structures strength increasing using short fiber reinforcing |
V. A. Komarov, E. I. Kurkin, R. V. Charkviani |
Samara University |
|
3 |
Composite aerospace structures shape distortion during all stages of vacuum infusion production |
V. A. Komarov, E. I. Kurkin, M. O. Spirina |
Samara University |
|
4 |
Application of short fiber reinforced composite materials multilevel model fordesign of ultra-light aerospace structures |
E. I. Kurkin, V. O. Sadykova |
Samara University |
|
5 |
Simulation of rarefied gas flows in microchannels |
E. I. Kurkin, V. N. Samsonov, V. G. Shakhov |
Samara University |
|
6 |
Reinforcement of aerospace structural elements made of layered composite materials |
S. A. Pavlova, A.A. Pavlov, R. V. Charkviani |
Samara University |
|
7 |
Creation of ultralight spacecraft constructions made of composite materials |
R. V. Charkviani, R. N. Kamalieva |
Samara University |
|
8 |
Experimental study of interlaminar strength and stiffness of composite materials |
S. A. Pavlova, A. A. Pavlov, R. V. Charkviani |
Samara University |
|
9 |
Evaluation of anisogrid composite lattice structures weight effectiveness using the load-carrying factor |
A. V. Boldyrev, D. M. Kozlov, M. V. Pavelchuk |
Samara University |
|
10 |
Designing of additive structures |
V. A. Komarov, S. A. Pavlova, A. A. Pavlov |
Samara University |
|
11 |
Evaluation of usage efficiency of the propulsion systems with energy accumulation for the orbital correction |
S.A. Ishkov, A. A. Khramov |
Samara University |
|
12 |
Estimation of the perturbation when passing through the resonance of an asymmetric satellite with an electric propulsion |
Yu. M. Zabolotnov., V. V. Lyubimov, E. V. Kurkina |
Samara University |
|
13 |
Dynamics of the formation of a rotating orbital tether system with the help of electro-thruster |
Yu. M.Zabolotnov |
Samara University |
|
14 |
The influence of space factors on the size stability of small spacecraft structure elements |
S. A. Chernyakin, Yu. V. Skvortsov, S. V. Glushkov |
Samara University |
|
15 |
Pulse-width control of electro-reaction engines for a station-keeping of land-survey satellite on sun-synchronous orbit |
Y. I. Somov |
Samara University |
|