QURITISH JARAYONINI BOSHQARISH OBYEKTI SIFATIDA UZATISH FUNKSIYALARINI QURISH

##article.authors##

  • Xusanov Suban Nurullayevich Qarshi muhandislik-iqtisodiyot instituti

##semicolon##

quritish jarayoniumumiy vergul ro'yxat seperatori boshqarish obyekt parametrlariumumiy vergul ro'yxat seperatori funksiyaumumiy vergul ro'yxat seperatori Simoyu usuliumumiy vergul ro'yxat seperatori sintezumumiy vergul ro'yxat seperatori rostlagich

##article.abstract##

Maqolada quritish jarayonini boshqarish obyektining modelini ishlab chiqishda
modellashtirishdan ko‘zlangan maqsadi keltirilgan. Boshqarish kanallarida o‘tish xarakteristiksini
approksimatsiyalash ta’sirlarni uzatishning barcha asosiy kanallari bo‘yicha obyektning uzatish
funksiyalarini olish Simoyu usuli foydallanilgan. Tadqiq qilinayotgan obyektning asosiy kanallari
sezilarli inersiyali va kechikishli ekanligi hamda uning dinamik xossalarini inobatga olib, yetarli
darajada aniqlik bilan uzatish funksiyalari taklif etilgan. Quritish jarayonining taklif etilgan
matematik modeli ko‘rib chiqilayotgan jarayon uchun adaptiv boshqarish qonunlarini sintez qilish
imkonini beradi.

##submission.citations##

Shagin A.V., Demkin V.I., Kononov V.Yu. Kabanova A.B.: Osnovi avtomatizatsii

texnologicheskix protsessov [Fundamentals of process automation]. Handbook, Yurayt (2017).

Sxirtladze, A. G.: Avtomatizatsiya texnologicheskix protsessov i proizvodstv [Automation of

technological processes and production]. Abris, Moskva (2012), 565p.

Igamberdiyev, X.Z., Sevinov, J.U., Zaripov, O.O.: Regulyarniye metodi i algoritmi sinteza

adaptivnix system upravleniya s nastraivayemimi modelyami [Regular methods and algorithms

for the synthesis of adaptive control systems with customizable models], Tashkent: TSTU

(2014) 160p.

Mallayev, A.R., Xusanov, S.N.: Estimation of Parameters of Settings of Regulators Based on

Active Adaptation Algorithm. International Journal of Advanced Research in Science,

Engineering and Technology 6(8), 10376-10380 (2019).

Mallaуеv, A.R., Xusanov, S.N., Sеvinov, J.U.: Algorithms for thе sуnthеsis of stabilizing statе

controllеrs for discrеtе objеcts basеd on linеar matrix inеqualitiеs. Intеrnational Journal of

Advancеd Rеsеarch in Sciеncе, Еnginееring and Tеchnologу 8(3), 16979-16986 (2021).

Kolesnikov, A.A.: Modern Applied Control Theory: Synergetic Approach in Control Theory,

Taganrog, Tomsk (2000).

Yusupbekov, N.R., Igamberdiev, H.Z., Sevinov, J.U.: Formalization of Identification

Procedures of Control Objects as a Process in the Closed Dynamic System and Synthesis of

Adaptive Regulators. Journal of Advanced Research in Dynamical and Control Systems.

(06). 77-88 (2020). doi:10.5373/JARDCS/V12SP6/SP20201009.

Mallaev, А.R., Xusanov, S.N., Sevinov, J.U.: Algorithms of Nonparametric Synthesis of

Discrete One-Dimensional Controllers, International Journal of Advanced Science and

Technology, 29(5 Special Issue), 1045-1050 (2020).

Sevinov, J.U., Mallaev, A.R., Xusanov, S.N.: Algorithms for the Synthesis of Optimal LinearQuadratic Stationary Controllers. In: Aliev R.A., Yusupbekov N.R., Kacprzyk J., Pedrycz W.,

Sadikoglu F.M. (eds) 11th World Conference “Intelligent System for Industrial Automation”

(WCIS-2020). WCIS 2020. Advances in Intelligent Systems and Computing, vol 1323.

Springer, Cham. https://doi.org/10.1007/978-3-030-68004-6_9.

Mallaуеv, A.R., Xusanov, S.N.: Algorithms for sуnthеsis of discrеtе controllеrs in nonlinеar

control sуstеms with dеlaу. Chеmical Tеchnologу, Control and Managеmеnt: 2021(2), 80-86

(2021). doi: httрs://doi.org/10.51346/tstu-02.21.1-77-0012.

Egupov, N.D., Pupkov, K.A.: Metodi klassicheskoy i sovremennoy teorii avtomaticheskogo

upravleniya [Methods of classical and modern theory of automatic control]. Handbook (5

chapter), MGTU im.N.E.Baumana (2004).

Igamberdiyev, H., Sevinov, J., Khusanov, S.: Controllers Synthesis Algorithms in the

Construction of Discrete Control Systems for Technological Objects. (2023) Lecture Notes in

Networks and Systems, 762 LNNS, pp. 426-439.

Aleksandrov, A.G.: Optimalniye i adaptivniye sistemi, Nauka, Moscow (2003) 278p.

Voskoboynikov Yu.Е. Ustoychiviye metodi i algoritmi parametricheskoy идентификации. –

Novosibirsk: NGASU (Sibstrin), 2006. –180 s.

Kabanixin S.I. Obratniye i nekorrektniye zadachi. Uchebnik dlya studentov visshix учебных

zavedeniy. – Novosibirsk: Sibirskoye nauchnoye izdatelstvo, 2009. –457 s.

Malin A.S., Muxin V.I. Issledovaniye sistem upravleniya. Izd-vo: GU VSHE, 2005. –400 s.

Kuzmenko, N.V. Avtomatizatsiya texnologicheskix protsessov i proizvodstv : uchebnoye

posobiye : v 2 ch. / N. V. Kuzmenko. – Angarsk, 2005. Ch. 1. –78 s.

Richard C Dorf,. Robert H Bishor. Modern Control Sustems, Twelfth yeition, 2010. –890 r.

Karabutov N.N.Adaptivnaya identifikatsiya sistem: informatsionniy sintez. 2006.-384 s.

Sikunov A.M. Adaptivnoye upravleniye s kompensatsiyey vliyaniya zapazdivaniya v

upravlyayushem vozdeystvii // Izvestiya akademii nauk. Teoriya i sistemi upravleniya, №4,

-S.78-81.

##submission.downloads##

Taqdimot chop etildi

2024-01-26