The issues related to technical regulation in civil aviation are considered. The purpose of the study is to assess the prospects for harmonization of aviation quality standards. The study used methods of comparative analysis of the re-quirements of such standards. The analysis of harmonization impact of national and international quality standards of aer-onautical engineering on the safety of aircraft flight has been carried out. The basic principles of such harmonization are described. Its most important consequences for civil aviation have been determined.

1.
V. A.
Afanasiev
,
V. A.
Lebedev
,
V. P.
Monakhova
,
E. P.
Myshelov
,
Yu. A.
Nozhnitsky
, “
Technical regulation and quality management
”, (
Librokom Book House
,
Moscow
,
2017
).
2.
A. Yu.
Burova
, “
Methods and algorithms of turbojet engines thrust parameters control unerroric
”,
Journal of Physics: Conference Series
2096
(
1
),
012060
(
2021
).
3.
V. M.
Novichkov
,
A. Yu.
Burova
, “
Algorithm of Two Turbojets Thrust Asymmetry Minimization for Digital Control System of Twin-Engine Jet Airliner
”, In:
2019 International Multi-Conference on Industrial Engineering and Modern Technologies (FarEastCon
), (
2019
).
4.
A. Yu.
Burova
, “
Minimisation of asymmetry of thrust of the dual-flow turbojet engines of the airliner in accord-ance with the results of the system analysis of the thrust parameters
”,
Asia Life Sciences Supplement
21
(
2
),
629
643
(
2019
).
5.
A.
Burova
, “
Digital Signal Multi-Stage Discrete Fourier Transform and Its Practical Applications
”, In:
2021 23rd International Conference on Digital Signal Processing and its Applications (DSPA
),
1
5
(
2021
).
6.
A.
Burova
,
A
Ryapukhin
, “
Reduction of the number of multiplication operations in digital signal processing algorithms by classical methods of discrete Fourier transform
”,
AIP Conference Proceedings
2402
,
040002
(
2021
). DOI: .
7.
A. Y.
Burova
, “
Concept of multistage discrete Fourier transform without performing multiplications
”,
Journal of Physics: Conference Series
1889
(
2
),
022003
(
2021
).
8.
A.
Burova
, “
Digital Signal Multi-Stage Discrete Fourier Transform and Its Practical Applications
”, In:
2021 23rd International Conference on Digital Signal Processing and its Applications (DSPA
),
1
5
(
2021
).
9.
A. Y.
Burova
,
V. V.
Kabakov
, ““
Unerroric” of multistage discrete Fourier transform of digital signal without arithmetic operations of multiplication
”,
Amazonia Investiga
9
(
25
),
429
437
(
2020
).
10.
A. Yu.
Burova
,
V. V.
Kabakov
, “
Automatic control of working car engine vibrations using multi-stage discrete Fourier transformation
”,
Journal of Physics: Conference Series
1679
(
2
),
022025
(
2020
).
11.
A.
Burova
,
A
Ryapukhin
, “
Reduction of the number of multiplication operations in digital signal processing algorithms by classical methods of discrete Fourier transform
”,
AIP Conference Proceedings
2402
,
040002
(
2021
). DOI: .
12.
S. V.
Novikov
,
D. A. Veas
Iniesta
, “
Analysis of development trends in the innovation industry of the Russian Federation
”,
Amazonia Investiga
8
(
19
),
298
307
(
2019
).
13.
D. S. Veas
Iniesta
,
J. G. Estay
Sepúlveda
, “
Development of methods and tools of the commercialization of high-tech projects on the example of Moscow Aviation Institute (National Research University
)”,
Amazonia Investiga
10
(
43
),
83
95
(
2021
).
14.
A. Y.
Burova
,
A. V. Ryapukhin. A. R.
Muntyan
, “
Reduced hardware costs with software and hardware imple-mentation of digital methods multistage discrete Fourier transform on programmable logic devices
”,
Amazonia Investiga
9
(
27
),
227
233
(
2020
).
15.
A. Yu.
Burova
,
T. O.
Usatenko
, “
Digital Algorithms for the Discrete Frequency Selection of Signals that Do Not Use Algorithmic Multiplication Operations
”,
TEM Journal
9
(
2
),
501
506
(
2020
).
16.
A. Y.
Burova
,
T. O.
Usatenko
, “
Digital methods of discrete Fourier transform, allowing minimizing the number of algorithmic multiplication operations
”,
Journal of Physics: Conference Series
1889
(
3
),
032035
(
2021
).
17.
E. O.
Bykova
,
G. R.
Kamaletdinova
,
A. E.
Sorokin
, “
Analysis of the Flexibility of a Soft Hinge with a Floating Power Connection
”,
IOP Conference Series: Materials Science and Engineering
753
(
4
),
042080
(
2020
).
18.
Y. I.
Choni
,
A. G.
Romanov
,
I. Y.
Danilov
,
V. V.
Mochalov
,
V. A.
Bartenev
,
A. O.
Shemyakov
, “
On the effi-ciency of defocusing a large satellite multi-beam hybrid parabolic antenna
”,
IOP Conference Series: Materials Science and Engineering
450
(
2
),
022020
(
2018
).
19.
O.
Guschina
,
T.
Shevgunov
,
E.
Efimov
,
V.
Kirdyashkin
, “The Exact Frequency Domain Solution for the Periodic Synchronous Averaging Performed in Discrete-Time”, In:
Proceedings of the Computational Methods in Sys-tems and Software
.
Springer
,
Cham
(
2019
).
20.
L. A.
Kondratenko
,
L. I.
Mironova
,
V. G.
Dmitriev
,
O. V.
Egorova
,
A. O.
Shemiakov
. “
Investigation of the dynamics of nonlinear mechanical systems with long power lines through digital modeling
”,
Periodico Tche Quimica
16
(
33
),
668
680
(
2019
).
21.
D. A.
Kozorez
,
M. N.
Krasil’shchikov
,
D. M.
Kruzhkov
,
K. I.
Sypalo
, “
A solution of the navigation problem for autonomous insertion of payload into a geostationary orbit using a low-thrust engine
”,
Journal of Computer and Systems Sciences International
54
(
1
),
104
115
(
2015
).
22.
D. A.
Kozorez
,
M. N.
Krasilshchikov
,
D. M.
Kruzhkov
,
K. I.
Sypalo
, “
Autonomous navigation during the final ascent of a spacecraft into the geostationary orbit
”,
Autonomous integrated navigation system concept. Journal of Computer and Systems Sciences International
54
(
5
),
798
807
(
2015
).
23.
A. I.
Maron
,
T. K.
Kravchenko
,
T. Y.
Shevgunov
, “
Estimation of resources required for restoring a system of computer complexes with elements of different significance
”,
Business Informatics
13
(
2
),
18
28
(
2019
).
24.
L. B.
Metechko
,
A. E.
Sorokin
,
S. V.
Novikov
, “
Aerospace monitoring in solving problems of modern precision agriculture
”,
Amazonia Investiga
8
(
19
),
638
646
(
2019
).
25.
P. A.
Ukhov
,
B. A.
Dmitrochenko
,
A. V.
Ryapukhin
, “
The practice of technological deception in videoconfer-encing systems for distance learning and ways to counter it
”,
Amazonia Investiga
,
10
(
40
),
153
168
(
2021
).
This content is only available via PDF.
You do not currently have access to this content.