[1]
Arkhangelskiy G.G. Mekhanizatsiya gruzopodyemnykh operatsiy v stroitelstve i kommunalnom khozyaystve [Mechanization of lifting operations in the construction and communal services] (2008) Mekhanizatsiya stroitelstva, 4, pp.10-15. (rus).
Google Scholar
[2]
Vatin, N.I., Kolosova, N.B. Berdugin I.A. Efficiency of use of systems of automatic control of AccuGrade in construction (2013) Construction of Unique Buildings and Structures, 4 (9), pp.29-35. (rus).
Google Scholar
[3]
Neap, H.S., Aysal, S. Owner's factor in value-based project management in construction (2004) Journal of business ethics, 50 (1), pp.97-103.
DOI: 10.1023/b:busi.0000020874.06666.a2
Google Scholar
[4]
Ustinovichius, L., Shevchenko, G., Barvidas, A., Ashikhmin, I.V., Kochin, D. Feasibility of verbal analysis application to solving the problems of investment in construction (2010) Automation in construction, 19 (3), pp.375-384.
DOI: 10.1016/j.autcon.2009.12.004
Google Scholar
[5]
Peterson, F., Fruchter, R., Fisher, M., Hartmann, T. Teaching construction project management with BIM support: experience and lessons learned (2011) Automation on construction, 20 (2), pp.115-125.
DOI: 10.1016/j.autcon.2010.09.009
Google Scholar
[6]
Hatanaka, T., Kayama, N., Yoshinary, Y., Maniwa, S., Kaga, S., Matsumoto, S. Steel industry systems with integrated mechanical and electrical control for high-quality production and energy efficiency (2010) 59 (4), pp.159-164.
Google Scholar
[7]
Motawa, I.A., Anumba, C.J., Lee S., Pena-Mora, F. An integrated system for change management in construction (2007) Automatic in construction, 16 (3), pp.368-377.
DOI: 10.1016/j.autcon.2006.07.005
Google Scholar
[8]
Gorshkov, A.S., Rymkevich, P.P., Nemova, D.V., Vatin, N.I. Method of calculating the payback of investment for renovation of building facades (2014), Construction of Unique Buildings and Structures, 2 (17), pp.82-106. (rus).
Google Scholar
[9]
Stepanov, M.A., Barkov, A. Yu., Turgunova, E.N. Ispolzovaniye stroitelnykh podyemnikov (2011) Mechanizatsiya stroitelstva, 8, pp.13-14. (rus).
Google Scholar
[10]
Machulskiy, I.I. Opredeleniye klassov nagruzheniya I reglamentatsiya rezhimov ekspluatatsii transportiruyushchikh mashin (2002) Podyemno-transportnoye oborudovaniye, p.4, 78. (rus).
Google Scholar
[11]
Vatin, N.I., Gamayunova, O.S., Petrosova, D.V. Choosing Plastering Machines and dry mortars for plastering mechanaized way (2014), Applied Mechanics and Materials, 635-637, pp.324-328. (rus).
DOI: 10.4028/www.scientific.net/amm.635-637.324
Google Scholar
[12]
Lin, Y., Hung, C ., Hung, T. Voltage Rise due to Regenerative Braking of DC machines associated with Gantry Cranes at Kaohsiung Harbour (2007) IEEE Electrical Power Conference, pp.452-455.
DOI: 10.1109/epc.2007.4520374
Google Scholar
[13]
Serdiuk, T.V., Franyshyna, S. Yu. Commercial appeal and state support of investments in energy efficiency: international experience, Visnik Vinnitskogo Politechnicheskogo Institutu (2011), 2 (95), pp.46-51.
Google Scholar
[14]
Meshcheryakov, S.V., Ivanov, V.M., Bortyakov, D.E. Sistema avtomatizirovannogo ucheta tekhnicheskogo sostoyaniya gruzopodyemnogo oborudovaniya (2011) Nauchno - tekhnicheskiye vedomosti SPbGPU, Saint-Peterburg, 6-2 (138), pp.81-87. (rus).
Google Scholar
[15]
Radayev, A.E., Kobzev, V.V. Metodika obosnovaniya struktury parka oborudovaniya dlya skladskogo kompleksa promyshlennogo predpriyatiya na osnove imitatsionnogo modelirovaniya (2011).
Google Scholar
[16]
Vorster, M. Construction Equipment Economics, First Edition, Penn Publications (2009).
Google Scholar
[17]
Kaipa K.V., Balachandran, B. Suppression of crane-load oscullations using shape-controlled mechanical filters (2002) Journal of vibration and control, 8(2), p.121.
DOI: 10.1177/107754602023814
Google Scholar
[18]
Sorensen, K.L., Singhose, W., Dickerson, S.A., Controller enabling precise positioning and sway reduction in bridge and gantry cranes (2007) Control Engineering Practice, Vol. 15, 7, pp.825-837.
DOI: 10.1016/j.conengprac.2006.03.005
Google Scholar
[19]
Kim, SM, and Sul., SK, Control of Rubber Tyred Gantry Crane with Energy Storage Based on Supercapacitor Bank (2005) PESC IEEE, 36, pp.262-268.
DOI: 10.1109/pesc.2005.1581634
Google Scholar
[20]
Li B., Lei, L, Zou C., Li W. The study of structural fatigue of tower crane (2010) Journal of Shenyang jianzhu university, 26 (5), pp.986-990.
Google Scholar
[21]
Dolbeck, A. Valuation of the industrial machinery industry (2003), Corporate growth report weekly, 1262, p.1.
Google Scholar
[22]
Sorensen, K.L., Singhose, W., Dickerson, S.A., Controller enabling precise positioning and sway reduction in bridge and gantry cranes (2007) Control Engineering Practice, Vol. 15, 7, pp.825-837.
DOI: 10.1016/j.conengprac.2006.03.005
Google Scholar
[23]
Kvog, G.M. Some aspects of assessing the effectiveness of investments into energy conversation of premises (2012) Vestnik TISBI, 2 (50), pp.68-76. (rus).
Google Scholar
[24]
Beldjajev, V., Lehtla, T., Molder, H. Influence of regenerative braking to power characteristics of a gantry crane (2010) PQ2010: 7th international conference – 2010 electric power quality and supply reliability, conference proceedings, pp.73-77.
DOI: 10.1109/pq.2010.5550015
Google Scholar
[25]
Information on http: /exkavator. ru.
Google Scholar
[26]
Information on http: /enargys. ru.
Google Scholar
[27]
Information on http: /www. machineryzone. ru.
Google Scholar