[14] Recommendations for Standardization “P 50.1.031-2001”. Informatsionnye
tekhnologii podderzhki zhiznennogo tsikla produktsii. Terminologicheskiy slovar’.
Ch. 1. Stadii zhiznennogo tsikla produktsii [Continuous acquisition and life-cycle
support. Glossary. Part 1. Product life-cycle stages]. Moscow, Standartinform Publ.,
2002. 32 p.
[15] Pinto J.K., Slevin D.P. Critical success factors across the project life cycle.
Project
Management J.
, 1988, vol. 19, iss. 3, pp. 67–75.
[16] Ostroverkh A.I. Osnovnye printsipy sovershenstvovaniya organizatsionno-
tekhnologicheskogo soprovozhdeniya proizvodstvennykh protsessov v
mashinostroenii. Diss. dokt. tekhn. nauk. Rossiyskiy gosudarstvennyy tekh.
univ. im. K.E. Tsiolkovskogo [Fundamentals for improved organizational and
technological support of production processes at machinery production. Dr. tech.
sci. diss. Tsiolkovskiy Russ. St. Tech. Univ.]. Moscow, Tsiolkovskiy RSTU, MATI
Publ., 2007, 287 p.
[17] Kasaev K.S., Artemov Yu.A., Astakhov Yu.P., eds. Tekhnologicheskoe obespechenie
slozhnykh tekhnicheskikh sistem. Entsiklopediya v 24 tomakh “Novye naukoemkie
tekhnologii v tekhnike” [Technological support of complex technical systems.
In encyclopaedia “New high technologies in technics”. In 24 vol.]. Moscow,
ENTSITEKH Publ., 1998. 396 p. (vol. 12, part 1).
[18] International standardization of commercial rocket and space technology.
Elektronika: nauka, tekhnologiya, biznes
[Electronika:NTB], 2001, no. 5, p. 74 (in
Russ.).
[19] Filatov A.N., Sterlikov K.V., Mikushkina M.V. Technology of top-down design of
rocket space engineering (RSE) based on decisions of the “PTK” company.
Rats.
Upr. Predpriyatiem
[Rat. Enterpr. Man.], 2013, no. 2 (in Russ.).
[20] Prudnikov V.A. Metodika sistemnogo proektirovaniya kompleksa sredstv
tekhnologicheskogo osnashcheniya dlya ispytaniy agregatov sistem upravleniya
raketno-kosmicheskoy tekhniki na etape proizvodstva. Diss. kand. tekhn. nauk.
FGUP GKNPTs im. M.V. Khrunicheva [Methodology of system design for complex
of technological equipment means for testing of control systems aggregates of space
rocket engineering at the production stage. Cand. tech. sci. diss. Federal state unitary
enterprise “Khrunichev State Space Research and Production Center”]. Moscow,
GKNPTs im. M.V. Khrunicheva Publ., 2006. 150 p.
[21] Sukhov G.M., Sukhov S.G. Tekhnologicheskoe prognozirovanie ispytaniy
tekhnicheskikh sistem letatel’nykh apparatov [Technology forecasting of testing for
engineering systems of aircraft]. Moscow, MATI Publ., 1993. 86 p.
[22] Petrov A.V. Modelirovanie organizatsionno-tekhnologicheskoy sredy sozdaniya
raketno-kosmicheskoy tekhniki [Modeling organizational and technological
environment for the creation of space rocket machinery]. Moscow, Mashinostroenie
Publ., 1999. 318 p.
[23] Ostroverkh A.I., Sychev V.N., Tsyrkov A.V. Reengineering of organizational and
technological support of the processes for production of space rocket machinery.
Tekhnol. Mashinost.
[Engin. Techn.], 2006, no. 8, pp. 88–91 (in Russ.).
[24] Shenaev M.O. Razrabotka metodiki i sredstv organizatsii tekhnicheskoy podgotovki
seriynogo proizvodstva pnevmogidravlicheskikh sistem izdeliy aviatsionnoy
tekhniki. Diss. kand. tekhn. Nauk. Rossiyskiy gosudarstvennyy tekh. univ.
im. K.E. Tsiolkovskogo [Development of methods and means of the organization
of technical training for full-scale production of pneumatic hydraulic systems for
aeronautical engineering products. Cand. tech. sci. diss. Tsiolkovskiy Russ. St. Tech.
Univ.]. Moscow, Tsiolkovskiy RSTU, MATI Publ., 2009. 146 p.
82 ISSN 0236-3941. Вестник МГТУ им. Н.Э. Баумана. Сер. “Машиностроение”. 2014. № 5