Mychuda Z, Mychuda L, Antoniv U, Szcześniak A. Logarithmic ADC with accumulation of charge and impulse feedback – construction, principle of operation and dynamic properties. International Journal of Electronics and Telecommunications. 2021 Dec 1;67(4):699–704. doi: 10.24425/ijet.2021.137865Open DOISearch in Google Scholar
Szcześniak A, Mychuda Z. Analiza prądów upływu logarytmicznego przetwornika analogowo-cyfrowego z sukcesywną aproksymacją. Przegląd Elektrotechniczny. 2012;R. 88, nr 5a:247–50.Search in Google Scholar
El-Maleh A. A Note on Moore Model for Sequential Circuits. 2016. https://www.researchgate.net/publication/305268049_A_Note_on_Moore_Model_for_Sequential_CircuitsSearch in Google Scholar
Horowitz P, Hill W. The art of electronics. Cambridge university press Cambridge; 2002.Search in Google Scholar
Chhillar K, Dahiya S. Design of Sequential Circuits with Timing Analysis and Considerations. Int J Eng Sci Comput. 2017;7: 808–11809.Search in Google Scholar
Widmer NS, Moss GL, Tocci RJ. Digital systems: principles and applications. Twelfth edition. Boston: Pearson; 2017.Search in Google Scholar
Gorzałczany M.B. Układy Cyfrowe—Metody Syntezy. Tom II: Układy Sekwencyjne, Układy Mikroprogramowane. Kielce, Poland: Wydawnictwo Politechniki Świętokrzyskiej; 2003.Search in Google Scholar
Szcześniak Z, Szcześniak A. Projektowanie układów sterowania dla automatyzacji procesów technologicznych. Kielce, Poland: Wydawnictwo Politechniki Świętokrzyskiej; 2015.Search in Google Scholar
Borden TR, Cox RA, Cox RA. Technician’s guide to programmable controllers. 6th ed. Clifton Park, NY: Delmar, Cengage Learning; 2013.Search in Google Scholar
Fernandez P, del Carpio C, Rocca E, Vinces L. An Automatic Control System Using the S7-1200 Programmable Logic Controller for the Ethanol Rectification Process. In: 2018 IEEE XXV International Conference on Electronics, Electrical Engineering and Computing (INTERCON). Lima: IEEE; 2018 p. 1–4. Available from: https://ieeexplore.ieee.org/document/8526382/Search in Google Scholar
Szcześniak A, Szcześniak Z. Algorithmic Method for the Design of Sequential Circuits with the Use of Logic Elements. Applied Sciences. 2021 Nov 23;11(23):11100. doi: 10.3390/app112311100Open DOISearch in Google Scholar
Szcześniak A, Szcześniak Z. Fast Designing Ladder Diagram of Programmable Logic Controller for a technological process. International Journal of Electronics and Telecommunications. 2022 Nov 30;68(4):709–14. doi: 10.24425/ijet. 022.141289Open DOISearch in Google Scholar
Phan VD, Vo CP, Dao HV, Ahn KK. Actuator Fault-Tolerant Control for an Electro-Hydraulic Actuator Using Time Delay Estimation and Feedback Linearization. IEEE Access. 2021;9:107111–23. doi: 10.1109/ACCESS.2021.3101038Open DOISearch in Google Scholar
Herbuś K, Ociepka P. Verification of operation of the actuator control system using the integration the B&R Automation Studio software with a virtual model of the actuator system. IOP Conf Ser: Mater Sci Eng. 2017 Aug;227:012056. doi: 10.1088/1757-899X/227/1/012056Open DOISearch in Google Scholar
Acuña-Bravo W, Canuto E, Agostani M, Bonadei M. Proportional electro-hydraulic valves: An Embedded Model Control solution. Control Engineering Practice. 2017 May;62:22–35. doi: 10.1016/j.conengprac.2017.01.013Open DOISearch in Google Scholar
Wu D, Wang X, Ma Y, Wang J, Tang M, Liu Y. Research on the dynamic characteristics of water hydraulic servo valves considering the influence of steady flow force. Flow Measurement and Instrumentation. 2021 Aug 1;80:101966. doi: 10.1016/j.flowmeasinst.2021.101966Open DOISearch in Google Scholar
Szcześniak A, Szcześniak Z. Mikroprocesorowe przetwarzanie sygnałów optoelektronicznego przetwornika położenia. Przegląd Elektrotechniczny. 2009;R. 85, nr 4:153–8.Search in Google Scholar
Vo CP, Ahn KK. High-precision Position Control of Soft Actuator Systems - The 3rd International Workshop on Active Materials and Soft Mechatronics (AMSM2018). In KAIST, Daejeon, South KoreaSearch in Google Scholar
Zhang Y, Yue H, Li K, Cai M. Analysis of Power Matching on Energy Savings of a Pneumatic Rotary Actuator Servo-Control System. Chin J Mech Eng. 2020 Dec;33(1):30. doi: 10.1186/s10033-020-00445-3Open DOISearch in Google Scholar
Szcześniak A. Analiza przetwarzania sygnałów logarytmicznego przetwornika analogowo - cyfrowego z sukcesywną aproksymacją. Kielce, Poland: Wydawnictwo Politechniki Świętokrzyskiej; 2019Search in Google Scholar
Mychuda Z, Zhuravel I, Mychuda L, Szcześniak A, Szcześniak Z, Yelisieieva H. Mathematical Modelling of the Influence of Parasitic Capacitances of the Components of the Logarithmic Analogue-to-Digital Converter (LADC) with a Successive Approximation on Switched Capacitors for Increasing Accuracy of Conversion. Electronics. 2022 May 6;11(9):1485. doi: 10.3390/electronics11091485.Open DOISearch in Google Scholar
Mychuda Z, Mychuda L, Antoniv U, Szcześniak A. Logarithmic ADC with Accumulation of Charge and Impulse Feedback : Analysis and Modeling. International Journal of Electronics and Telecommunications. 2021;Vol. 67, No. 4:705–10. doi: 10.24425/ijet.2021.137866Open DOISearch in Google Scholar
Mychuda Z, Zhuravel I, Mychuda L, Szcześniak A, Szcześniak Z. Modelling a New Multifunctional High Accuracy Analogue-to-Digital Converter with an Increased Number of Inputs. Electronics. 2022 May 25;11(11):1677. doi: 10.3390/electronics11111677Open DOISearch in Google Scholar
Time delay valve VZ-3-PK-3 data sheet. Available from: https://www.festo.com/tw/en/a/download-document/datasheet/5755Search in Google Scholar
Air gap sensors catalogue. Available from: https://www.festo.com/pl/pl/c/produkty/automatykaprzemyslowa/czujniki/czujniki-szczelinowe-powietrzne-id_pim139/Search in Google Scholar
Kisielewski P, Sobota Ł. Zastosowanie teorii masowej obsługi do modelowania systemów transportowych. Autobusy: technika, eksploatacja, systemy transportowe. 2016;17(6):600–4.Search in Google Scholar
Ficoń K. Zastosowanie teorii masowej obsługi do analizy systemu zabezpieczenia logistycznego sytuacji kryzysowych. SLW. 2017 Dec 29;47(2):59–79.Search in Google Scholar