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Erschienen in: Arabian Journal for Science and Engineering 8/2022

20.04.2021 | RESEARCH ARTICLE-COMPUTER ENGINEERING AND COMPUTER SCIENCE

Upgrading the Quality of Power Using TVSS Device and PFC Converter Fed SBLDC Motor

verfasst von: U. Arun Kumar, C. S. Ravichandran

Erschienen in: Arabian Journal for Science and Engineering | Ausgabe 8/2022

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Abstract

This globe has now come to a point where it is unmanageable for humans to do any work without power. Therefore, the main motive of this paper is to ameliorate the status of power. So to boost the condition of power, there are three predominant processes. So this proposed procedure performs functions like repressing the transitory voltage surge, get unification of PF, and lowering the harmonic distortion. This is because power changes, whether high or low, present a complication with electrical equipment. Therefore, transient voltage surge suppressors are utilized in the AC power line to stay the power changes usual. Then, for the motive of unifying the energy factor and lessening the harmonic distortion, this paper utilizes the more efficient BLDC Motor fed through bridgeless converter configuration. Because utilizing a brushless motor, performs functions extremely efficiently such as longevity, increasing reliability and reduced noise. However, since it is exceeding principle to command the speed of the motor, the Sensorless form is utilized here. The intention of utilizing this is the spot of the rotor is extremely pivotal to handle the momentum of the motor and it's also hugely difficult to identify. Therefore, this proposed mechanism for performing these functions utilizes the Sensorless BLDC Motor and to reach power factor correction (PFC) bridgeless converter topologies are used. A comparitive analysis is done among the various converters and the best converter is analyzed based on the PQ parameters. The obtained quality of power is under the acceptable limits of IEEE and IEC standards.

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Literatur
1.
Zurück zum Zitat Bist, V.; Singh, B.: An adjustable speed PFC bridgeless buck-boost converter fed BLDC motor drive. IEEE Trans. Ind. Electro. 61(6), 2665–2677 (2014)CrossRef Bist, V.; Singh, B.: An adjustable speed PFC bridgeless buck-boost converter fed BLDC motor drive. IEEE Trans. Ind. Electro. 61(6), 2665–2677 (2014)CrossRef
2.
Zurück zum Zitat Singh, B.; Bist, V.: A BL-CSC converter-fed BLDC motor drive with power factor correction. IEEE Trans. Ind. Electron. 62(1), 172–183 (2015)CrossRef Singh, B.; Bist, V.: A BL-CSC converter-fed BLDC motor drive with power factor correction. IEEE Trans. Ind. Electron. 62(1), 172–183 (2015)CrossRef
4.
Zurück zum Zitat Chandra, A.; Al-Haddad, K.: An adjustable speed PFC bridgeless-SEPIC fed brushless DC motor drive. In: 2015 IEEE Energy Conversion Congress and Exposition (ECCE), Conference Paper (2015) Chandra, A.; Al-Haddad, K.: An adjustable speed PFC bridgeless-SEPIC fed brushless DC motor drive. In: 2015 IEEE Energy Conversion Congress and Exposition (ECCE), Conference Paper (2015)
5.
Zurück zum Zitat Singh, P.K.; Singh, B.: BLDC motor drive based on bridgeless landsman PFC converter with single sensor and reduced stress on power devices. IEEE Trans. Ind. Appl. 54(1), 625–635 (2018)CrossRef Singh, P.K.; Singh, B.: BLDC motor drive based on bridgeless landsman PFC converter with single sensor and reduced stress on power devices. IEEE Trans. Ind. Appl. 54(1), 625–635 (2018)CrossRef
6.
Zurück zum Zitat Singh, B.; Chandra, A.: Power factor correction in bridgeless-Luo converter-fed BLDC motor drive. IEEE Trans. Ind. Appl. 51(2), 1179–1188 (2015)CrossRef Singh, B.; Chandra, A.: Power factor correction in bridgeless-Luo converter-fed BLDC motor drive. IEEE Trans. Ind. Appl. 51(2), 1179–1188 (2015)CrossRef
7.
Zurück zum Zitat Singh, B.; Bist, V.: A PFC based BLDC motor drive using a bridgeless zeta converter. In: IECON 2013—39th annual conference of the IEEE industrial electronics society, conference paper (2013) Singh, B.; Bist, V.: A PFC based BLDC motor drive using a bridgeless zeta converter. In: IECON 2013—39th annual conference of the IEEE industrial electronics society, conference paper (2013)
8.
Zurück zum Zitat Chun, T.-W.; Tran, Q.-V.: Sensorless control of BLDC motor drive for an automotive fuel pump using a hysteresis comparator. IEEE Trans. Power Electron. 29(3), 1382–1391 (2014)CrossRef Chun, T.-W.; Tran, Q.-V.: Sensorless control of BLDC motor drive for an automotive fuel pump using a hysteresis comparator. IEEE Trans. Power Electron. 29(3), 1382–1391 (2014)CrossRef
9.
Zurück zum Zitat Yang, L.; Zhu, Z.Q.: Safety operation area of zero-crossing detection based sensorless high speed BLDC motor drives. In: 2019 IEEE International Electric Machines & Drives Conference (IEMDC) (2019) Yang, L.; Zhu, Z.Q.: Safety operation area of zero-crossing detection based sensorless high speed BLDC motor drives. In: 2019 IEEE International Electric Machines & Drives Conference (IEMDC) (2019)
10.
Zurück zum Zitat Mathan, K.; Kumar, P.M.; Panchatcharam, P.; Manogaran, G.; Varadharajan, R.: A novel Gini index decision tree data mining method with neural network classifiers for prediction of heart disease. Des. Autom. Embed. Syst. 22(3), 225–242 (2018)CrossRef Mathan, K.; Kumar, P.M.; Panchatcharam, P.; Manogaran, G.; Varadharajan, R.: A novel Gini index decision tree data mining method with neural network classifiers for prediction of heart disease. Des. Autom. Embed. Syst. 22(3), 225–242 (2018)CrossRef
11.
Zurück zum Zitat Singh, S.; Singh, B.: Power quality improved PMBLDCM drive for adjustable speed application with reduced sensor buck-boost PFC converter. In: 4th International Conferences Emerging Trends in Engineering and Technology (ICETET), pp. 180–184 (2011) Singh, S.; Singh, B.: Power quality improved PMBLDCM drive for adjustable speed application with reduced sensor buck-boost PFC converter. In: 4th International Conferences Emerging Trends in Engineering and Technology (ICETET), pp. 180–184 (2011)
12.
Zurück zum Zitat Gopalarathnam, T.; Toliyat, H.A.: A new topology for unipolar brushless DC motor drive with high power factor. IEEE Trans. Power Electron 18(6), 1397–1404 (2003)CrossRef Gopalarathnam, T.; Toliyat, H.A.: A new topology for unipolar brushless DC motor drive with high power factor. IEEE Trans. Power Electron 18(6), 1397–1404 (2003)CrossRef
13.
Zurück zum Zitat Huber, L.; Jang, Y.; Jovanovic, M.M.: Performance evaluation of bridgeless PFC boost rectifiers. IEEE Trans. Power Electron 23(3), 1381–1390 (2008)CrossRef Huber, L.; Jang, Y.; Jovanovic, M.M.: Performance evaluation of bridgeless PFC boost rectifiers. IEEE Trans. Power Electron 23(3), 1381–1390 (2008)CrossRef
14.
Zurück zum Zitat Fardoun, A.A.; Ismail, E.H.; Al-Saffar, M.A.; Sabzali, A.J.: New “real” bridgeless high efficiency AC-DC converter. In: 2012 Twenty-Seventh Annual IEEE Applied Power Electronics Conference and Exposition (APEC), pp. 317–323 (2012) Fardoun, A.A.; Ismail, E.H.; Al-Saffar, M.A.; Sabzali, A.J.: New “real” bridgeless high efficiency AC-DC converter. In: 2012 Twenty-Seventh Annual IEEE Applied Power Electronics Conference and Exposition (APEC), pp. 317–323 (2012)
15.
Zurück zum Zitat Parthasarathy, P.; Vivekanandan, S.: A typical IoT architecture-based regular monitoring of arthritis disease using time wrapping algorithm. Int. J. Comput. Appl. 42(3), 222–232 (2020) Parthasarathy, P.; Vivekanandan, S.: A typical IoT architecture-based regular monitoring of arthritis disease using time wrapping algorithm. Int. J. Comput. Appl. 42(3), 222–232 (2020)
16.
Zurück zum Zitat Fardoun, A.A.; Ismail, E.H.; Sabzali, A.J.; Al-Saffar, M.A.: New efficient bridgeless Cuk rectifiers for PFC applications. IEEE Trans. Power Electron. 27(7), 3292–3301 (2012)CrossRef Fardoun, A.A.; Ismail, E.H.; Sabzali, A.J.; Al-Saffar, M.A.: New efficient bridgeless Cuk rectifiers for PFC applications. IEEE Trans. Power Electron. 27(7), 3292–3301 (2012)CrossRef
17.
Zurück zum Zitat Fardoun, A.A.; Ismail, E.H.; Sabzali, A.J.; Al-Saffar, M.A.: A comparison between three proposed bridgeless Cuk rectifiers and conventional topology for power factor correction. In: 2010 IEEE International Conference on Sustainable Energy Technologies (ICSET), pp. 1–6 (2010) Fardoun, A.A.; Ismail, E.H.; Sabzali, A.J.; Al-Saffar, M.A.: A comparison between three proposed bridgeless Cuk rectifiers and conventional topology for power factor correction. In: 2010 IEEE International Conference on Sustainable Energy Technologies (ICSET), pp. 1–6 (2010)
18.
Zurück zum Zitat Parthasarathy, P.; Vivekanandan, S.: A numerical modelling of an amperometric-enzymatic based uric acid biosensor for GOUT arthritis diseases. Inf Med Unlocked 12, 143–147 (2018)CrossRef Parthasarathy, P.; Vivekanandan, S.: A numerical modelling of an amperometric-enzymatic based uric acid biosensor for GOUT arthritis diseases. Inf Med Unlocked 12, 143–147 (2018)CrossRef
19.
Zurück zum Zitat Sabzali, A.J.; Ismail, E.H.; Al-Saffar, M.A.; Fardoun, A.A.: New bridgeless DCM Sepic and Cuk PFC rectifiers with low conduction and switching losses. IEEE Trans. Ind. Appl. 47(2), 873–881 (2011)CrossRef Sabzali, A.J.; Ismail, E.H.; Al-Saffar, M.A.; Fardoun, A.A.: New bridgeless DCM Sepic and Cuk PFC rectifiers with low conduction and switching losses. IEEE Trans. Ind. Appl. 47(2), 873–881 (2011)CrossRef
20.
Zurück zum Zitat Kumar, P.M.; Lokesh, S.; Varatharajan, R.; Babu, G.C.; Parthasarathy, P.: Cloud and IoT based disease prediction and diagnosis system for healthcare using Fuzzy neural classifier. Futur. Gener. Comput. Syst. 86, 527–534 (2018)CrossRef Kumar, P.M.; Lokesh, S.; Varatharajan, R.; Babu, G.C.; Parthasarathy, P.: Cloud and IoT based disease prediction and diagnosis system for healthcare using Fuzzy neural classifier. Futur. Gener. Comput. Syst. 86, 527–534 (2018)CrossRef
Metadaten
Titel
Upgrading the Quality of Power Using TVSS Device and PFC Converter Fed SBLDC Motor
verfasst von
U. Arun Kumar
C. S. Ravichandran
Publikationsdatum
20.04.2021
Verlag
Springer Berlin Heidelberg
Erschienen in
Arabian Journal for Science and Engineering / Ausgabe 8/2022
Print ISSN: 2193-567X
Elektronische ISSN: 2191-4281
DOI
https://doi.org/10.1007/s13369-021-05600-z

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