In the article, modes of energy and resource efficiency of the technological process corresponding to the requirements of the "frequency converter-asynchronous motor-pump-pressure pipe" system as a control object have been developed. The mechanical characteristics of each element in the "frequency converter-asynchronous motor-pump-pressure pipe" system are calculated and built separately and together. Using these graphs, it is used in the frequency start-up and adjustment of pumping units working on individual and common pipelines of irrigation and water supply pumping stations. In order to meet the demand for water supply, the effect of the additional resistances in individual and common pressure pipes on the electrical load was determined, and the optimal operating modes were determined during the adjustment of the pump units. When the pressure created by the pumping units working in the separate pressure pipe of the irrigation and water supply pumping stations is greater than the static pressure in the pipe, the push valve is opened and soft start is ensured.

1.
Murot
Tulyaganov
.
IOP Publishing Journal of Physics: Conference
,
2388
,
012099
, (
2022
),
2.
A.A.
Pulatov
,
M.F.
Shaimiev
,
U.M.
Mirsaidov
.
Journal of Physics: Conference Series
,
2388
,
012127
, (
2022
), .
3.
N. B.
Pirmatov
,
U. T.
Berdiyev
, and ofters.
E3S Web of Conferences
,
401
,
03021
, (
2023
)
4.
R.
Karimov
.
AIP Conference Proceedings
,
2552
,
030014
, (
2022
).
5.
A.A.
Pulatov
,
M.F.
Shaimiev
,
U.M.
Mirsaidov
.
E3S Web of Conferences
390
,
06039
, (
2023
),
6.
Nurali
Pirmatov
,
Abdullo
Panoev
, and ofters.
E3S Web of Conferences
,
383
,
04046
(
2023
)
7.
Ravshan
Dusmatov
.
Proceedings of the 11th International Conference on Applied Innovations in IT.
Volume
11
, Issue
1
, (
2023
).
8.
T.S.
Kamalov
.
Frequency-regulated electric drive of pumping stations of machine irrigation systems
.
T
.:
Fan
,
2014
,
354
p. (in Uzbekistan).
9.
B.S.
Leznov
.
Frequency-adjustable electric drive of pumping units
.-
Moscow
:
Mashinostroenie
,
2013
.-
176
p. (in Russian).
10.
K.G.
Abidov
,
O.O.
Zaripov
, and afters.
AIP Conference Proceedings
,
2552
,
030023
, (
2022
),
11.
K.
Abidov
,
N.
Khamudkhanova
.
E3S Web of Conferences
,
216
,
01111
, (
2020
),
12.
Lutfulla
Eshkuvatov
,
Rakhimjan
Babakhodjaev
and
Nazim
Tashbaev
.
AIP Conference Proceedings
,
2552
,
030021-1
-
030021-6
, (
2023
),
13.
Sh.
Umarov
,
Kh.
Sapaev
, and afters.
AIP Conference Proceedings
2552
,
040010
, (
2023
),
14.
T.
Kamalov
,
S.
Khalikov
,
IOP Conf Ser.: Mater. Sci. Eng.
216
,
01157
, (
2020
),
15.
Islombek
Abdullabekov
,
Sapaev
Khushnud
.
AIP Conference Proceedings
2552
,
040023
, (
2023
),
16.
Sh.
Umarov
,
Kh.
Sapaev
.
Journal of Physics: Conference Series
2388
,
012090
, (
2022
),
17.
Khushnud
Sapaev
,
Shukhrat
Umarov
, and afters.
IP Conference Proceedings
2402
,
060016
, (
2021
),
18.
Khushnud
Sapaev
,
Shukhrat
Umarov
,
Islombek
Abdullabekov
.
E3S Web of Conferences
216
,
01150
, (
2020
),
19.
M.M.
Mirsaidov
,
B. KH.
Fayzullayev
, and afters.
IOP Conf. Series: Materials Science and Engineering
862
,
062081
, (
2020
), https://iopscience.iop.org/article/10.1088/1757-899X/862/6/062081
20.
Khamudkhanov
,
M.M.
,
Abdullabekov
,
I.A.
, and afters.
Web ofCon-ferences, II International scientific conference. IOP Conf. Series: Materials Science and Engineering
862
,
062048
, (
2020
), https://iopscience.iop.org/article/10.1088/1757-899X/862/6/062048
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