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Erschienen in:

13.06.2024 | Original Paper

An efficient interleaved Boost DC–DC converter with high-voltage gain based on switched capacitor

verfasst von: Leila Ahmadi, Alireza Siadatan, Ebrahim Afjei, Shahram Javadi

Erschienen in: Electrical Engineering | Ausgabe 1/2025

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Abstract

An interleaved high step-up DC–DC Boost converter is proposed in this paper. The converter applies two auxiliary cells at the input and two switched capacitors to reach high-voltage gain. Due to the interleaved structure and two auxiliary cells which create four paths at the input side, the current ripple and stress decrease significantly. Soft switching condition is obtained without using any auxiliary switch resulting in high efficiency. The converter has a simple control circuit, and it can be operated in a wide range of duty cycles. Operating modes and design procedures are presented in detail with equivalent circuits and relevant equations. The comparison with other similar structures is done to show its superiority.

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Literatur
1.
Zurück zum Zitat Shabani S, Delshad M, Sadeghi R, Alhelou HH (2022) A high step-up PWM non-isolated DC-DC converter with soft switching operation. IEEE Access 10:37761–37773CrossRef Shabani S, Delshad M, Sadeghi R, Alhelou HH (2022) A high step-up PWM non-isolated DC-DC converter with soft switching operation. IEEE Access 10:37761–37773CrossRef
2.
Zurück zum Zitat Rezvanyvardom M, Mirzaei A, Shabani M, Mekhilef S, Rawa M, Wahyudie A, Ahmed M (2022) Interleaved step-up soft-switching DC–DC Boost converter without auxiliary switches. Energy Rep 8:6499–6511CrossRef Rezvanyvardom M, Mirzaei A, Shabani M, Mekhilef S, Rawa M, Wahyudie A, Ahmed M (2022) Interleaved step-up soft-switching DC–DC Boost converter without auxiliary switches. Energy Rep 8:6499–6511CrossRef
3.
Zurück zum Zitat Chakraborty U, Kashyap P, Kapoor H, Mahalingam P (2020) Interleaved high step-up DC-DC converter for photovoltaic applications. In: 2020 IEEE first international conference on smart technologies for power, energy and control (STPEC), pp 1–6 Chakraborty U, Kashyap P, Kapoor H, Mahalingam P (2020) Interleaved high step-up DC-DC converter for photovoltaic applications. In: 2020 IEEE first international conference on smart technologies for power, energy and control (STPEC), pp 1–6
4.
Zurück zum Zitat Shamsi T, Delshad M, Adib E, Rouholla M (2021) Anewsimple-structure passive lossless snubber for DC_DC boost converters. IEEE Trans Ind Electron 68(3):2207–2214CrossRef Shamsi T, Delshad M, Adib E, Rouholla M (2021) Anewsimple-structure passive lossless snubber for DC_DC boost converters. IEEE Trans Ind Electron 68(3):2207–2214CrossRef
5.
Zurück zum Zitat Nouri T, Shaneh M (2020) A new interleaved ultra-large gain converter for sustainable energy systems. IET Power Electron 14(1):90–105CrossRefMATH Nouri T, Shaneh M (2020) A new interleaved ultra-large gain converter for sustainable energy systems. IET Power Electron 14(1):90–105CrossRefMATH
6.
Zurück zum Zitat Khorasani RR, Moradmand Jazi H, Chaudhuri NR, Khoshkbar-Sadigh A, Shaneh M, Adib E, Wheeler P (2022) An interleaved soft switched high step-up boost converter with high power density for renewable energy applications. IEEE Trans Power Electron 37(11):13782–13798CrossRef Khorasani RR, Moradmand Jazi H, Chaudhuri NR, Khoshkbar-Sadigh A, Shaneh M, Adib E, Wheeler P (2022) An interleaved soft switched high step-up boost converter with high power density for renewable energy applications. IEEE Trans Power Electron 37(11):13782–13798CrossRef
7.
Zurück zum Zitat Sadaf S, Bhaskar MS, Meraj M, Iqbal A, Al-Emadi N (2021) A novel modified switched inductor boost converter with reduced switch voltage stress. IEEE Trans Ind Electron 68(2):1275–1289CrossRef Sadaf S, Bhaskar MS, Meraj M, Iqbal A, Al-Emadi N (2021) A novel modified switched inductor boost converter with reduced switch voltage stress. IEEE Trans Ind Electron 68(2):1275–1289CrossRef
8.
Zurück zum Zitat Ding X, Wang F, Zhou M, Cao Y, Wei Z (2022) Soft switching high voltage gain quasi-Z-source DC–DC converter with switched-capacitor technique. IEEE Trans Ind Electron 69(11):11231–11241CrossRefMATH Ding X, Wang F, Zhou M, Cao Y, Wei Z (2022) Soft switching high voltage gain quasi-Z-source DC–DC converter with switched-capacitor technique. IEEE Trans Ind Electron 69(11):11231–11241CrossRefMATH
9.
Zurück zum Zitat Nouri T, Kurdkandi NV, Shaneh M (2021) A novel interleaved high step-up converter with built-in transformer voltage multiplier cell. IEEE Trans Ind Electron 68(6):4988–4999CrossRef Nouri T, Kurdkandi NV, Shaneh M (2021) A novel interleaved high step-up converter with built-in transformer voltage multiplier cell. IEEE Trans Ind Electron 68(6):4988–4999CrossRef
10.
Zurück zum Zitat Li B, Wang P, Wang Z, Ma X, Bi H (2021) A new coupled-inductor-based high-gain interleaved DC-DC converter with sustained soft switching. IEEE Trans Veh Technol 70(7):6527–6541CrossRefMATH Li B, Wang P, Wang Z, Ma X, Bi H (2021) A new coupled-inductor-based high-gain interleaved DC-DC converter with sustained soft switching. IEEE Trans Veh Technol 70(7):6527–6541CrossRefMATH
11.
Zurück zum Zitat GuruKumar G, Sundaramoorthy K, Karthikeyan V, Babaei E (2020) Switched capacitor inductor network based ultra-gain DC-DC converter using single switch. IEEE Trans Ind Electron 67(12):10274–10283CrossRef GuruKumar G, Sundaramoorthy K, Karthikeyan V, Babaei E (2020) Switched capacitor inductor network based ultra-gain DC-DC converter using single switch. IEEE Trans Ind Electron 67(12):10274–10283CrossRef
12.
Zurück zum Zitat Chen S, Liang T, Yang L, Chen J (2011) A cascaded high step-up DC-DC converter with single switch for micro-source applications. IEEE Trans Power Electron 26(4):1146–1153CrossRefMATH Chen S, Liang T, Yang L, Chen J (2011) A cascaded high step-up DC-DC converter with single switch for micro-source applications. IEEE Trans Power Electron 26(4):1146–1153CrossRefMATH
13.
Zurück zum Zitat Rezvanyvardom M, Mirzaei A, Heydari S (2021) Fully soft-switching nonisolated quasi-Z$-source DC–DC converter with high-voltage gain. IEEE J Emerg Sel Top Power Electron 9(2):1854–1862CrossRef Rezvanyvardom M, Mirzaei A, Heydari S (2021) Fully soft-switching nonisolated quasi-Z$-source DC–DC converter with high-voltage gain. IEEE J Emerg Sel Top Power Electron 9(2):1854–1862CrossRef
14.
Zurück zum Zitat Rahimi R, Habibi S, Ferdowsi M, Shamsi P (2022) An interleaved high step-up DC-DC converter based on integration of coupled inductor and built-in-transformer with switched-capacitor cells for renewable energy applications. IEEE Access 10:34–45CrossRefMATH Rahimi R, Habibi S, Ferdowsi M, Shamsi P (2022) An interleaved high step-up DC-DC converter based on integration of coupled inductor and built-in-transformer with switched-capacitor cells for renewable energy applications. IEEE Access 10:34–45CrossRefMATH
15.
Zurück zum Zitat Zhang Y, Zhang W, Gao F, Gao S, Rogers DJ (2020) A switched-capacitor interleaved bidirectional converter with wide voltage-gain range for super capacitors in EVs. IEEE Trans Power Electron 35(2):1536–1547CrossRefMATH Zhang Y, Zhang W, Gao F, Gao S, Rogers DJ (2020) A switched-capacitor interleaved bidirectional converter with wide voltage-gain range for super capacitors in EVs. IEEE Trans Power Electron 35(2):1536–1547CrossRefMATH
16.
Zurück zum Zitat Zheng Y, Smedley KM (2019) Interleaved high step-up converter integrating coupled inductor and switched capacitor for distributed generation systems. IEEE Trans Power Electron 34(8):7617–7628CrossRefMATH Zheng Y, Smedley KM (2019) Interleaved high step-up converter integrating coupled inductor and switched capacitor for distributed generation systems. IEEE Trans Power Electron 34(8):7617–7628CrossRefMATH
17.
Zurück zum Zitat Zheng Y, Xie W, Smedley KM (2019) Interleaved high step-up converter with coupled inductors. IEEE Trans Power Electron 34(7):6478–6488CrossRefMATH Zheng Y, Xie W, Smedley KM (2019) Interleaved high step-up converter with coupled inductors. IEEE Trans Power Electron 34(7):6478–6488CrossRefMATH
18.
Zurück zum Zitat Cheng X-F, Liu C, Wang D, Zhang Y (2021) State-of-the-art review on soft-switching technologies for non-isolated DC-DC converters. IEEE Access 9:119235–119249CrossRef Cheng X-F, Liu C, Wang D, Zhang Y (2021) State-of-the-art review on soft-switching technologies for non-isolated DC-DC converters. IEEE Access 9:119235–119249CrossRef
19.
Zurück zum Zitat Jazi HM, Fekri M, Keshani M, Rahimzadeh Khorasani R, Adib E, Wheeler P, Garcia H-M, Velasco-Quesada G (2021) Soft-switching non-isolated high step-up three-level boost converter using single magnetic element. IET Power Electron 14:2324–2336CrossRef Jazi HM, Fekri M, Keshani M, Rahimzadeh Khorasani R, Adib E, Wheeler P, Garcia H-M, Velasco-Quesada G (2021) Soft-switching non-isolated high step-up three-level boost converter using single magnetic element. IET Power Electron 14:2324–2336CrossRef
20.
Zurück zum Zitat Javaheri Fard H, Sadeghzadeh SM (2022) Interleaved DC–DC converter with high-voltage gain and high-efficiency for photovoltaic system. J Electr Eng Technol 56:1–11MATH Javaheri Fard H, Sadeghzadeh SM (2022) Interleaved DC–DC converter with high-voltage gain and high-efficiency for photovoltaic system. J Electr Eng Technol 56:1–11MATH
21.
Zurück zum Zitat Li X, Zhang Y, Liu J, Gao Y, Cao M (2021) A universal ZVT design for a family of multiphase interleaved high step-up converters with minimized voltage stress and wide operating range. IEEE Trans Power Electron 36(12):13779–13791CrossRef Li X, Zhang Y, Liu J, Gao Y, Cao M (2021) A universal ZVT design for a family of multiphase interleaved high step-up converters with minimized voltage stress and wide operating range. IEEE Trans Power Electron 36(12):13779–13791CrossRef
22.
Zurück zum Zitat Kothapalli KR, Ramteke MR, Suryawanshi HM, Reddi NK, Kalahasthi RB (2021) Soft-switched ultrahigh gain DC–DC converter with voltage multiplier cell for DC microgrid. IEEE Trans Ind Electron 68(11):11063–11075CrossRef Kothapalli KR, Ramteke MR, Suryawanshi HM, Reddi NK, Kalahasthi RB (2021) Soft-switched ultrahigh gain DC–DC converter with voltage multiplier cell for DC microgrid. IEEE Trans Ind Electron 68(11):11063–11075CrossRef
23.
Zurück zum Zitat Hwu K-I, Jenn-Jong S, Wen-Zhuang J (2020) Interleaved boost converter with ZVT-ZCT for the main switches and ZCS for the auxiliary switch. Appl Sci 10(6):1–20CrossRefMATH Hwu K-I, Jenn-Jong S, Wen-Zhuang J (2020) Interleaved boost converter with ZVT-ZCT for the main switches and ZCS for the auxiliary switch. Appl Sci 10(6):1–20CrossRefMATH
24.
Zurück zum Zitat Talebi S, Adib E, Delshad M (2021) A high-gain interleaved DC–DC converter with passive clamp circuit and low current ripple. Iran J Sci Technol Trans Electr Eng 45:141–153CrossRef Talebi S, Adib E, Delshad M (2021) A high-gain interleaved DC–DC converter with passive clamp circuit and low current ripple. Iran J Sci Technol Trans Electr Eng 45:141–153CrossRef
25.
Zurück zum Zitat GhaffarpourSadighi H, Afjei SE, Salemnia A (2021) A novel soft-switched interleaved high step-up DC–DC converter for high-efficiency conversion. Int J Circuit Theory Appl 49:2515–2532CrossRef GhaffarpourSadighi H, Afjei SE, Salemnia A (2021) A novel soft-switched interleaved high step-up DC–DC converter for high-efficiency conversion. Int J Circuit Theory Appl 49:2515–2532CrossRef
26.
Zurück zum Zitat Seo S-W, Ryu J-H, Kim Y, Lee J-B (2021) Ultra-high step-up interleaved converter with low voltage stress. IEEE Access 9:37167–37178CrossRefMATH Seo S-W, Ryu J-H, Kim Y, Lee J-B (2021) Ultra-high step-up interleaved converter with low voltage stress. IEEE Access 9:37167–37178CrossRefMATH
27.
Zurück zum Zitat Li H, Du H, Zeng Y, Qiu Z, Jiang X, Chen Z (2022) A modified interleaved capacitor clamped DC–DC converter with non-resonant soft switching. IEEE Trans Power Electron 37(10):12221–12236CrossRef Li H, Du H, Zeng Y, Qiu Z, Jiang X, Chen Z (2022) A modified interleaved capacitor clamped DC–DC converter with non-resonant soft switching. IEEE Trans Power Electron 37(10):12221–12236CrossRef
28.
Zurück zum Zitat Reddy DVS, Thangavel S (2022) A non-isolated high step up interleaved boost converter with coupled inductors. Int J Circuit Theory Appl 75:1–18MATH Reddy DVS, Thangavel S (2022) A non-isolated high step up interleaved boost converter with coupled inductors. Int J Circuit Theory Appl 75:1–18MATH
29.
Zurück zum Zitat Rahimi R, Habibi S, Ferdowsi M, Shamsi P (2022) A three-winding coupled inductor-based interleaved high-voltage gain DC–DC converter for photovoltaic systems. IEEE Trans Power Electron 37(1):990–1002CrossRef Rahimi R, Habibi S, Ferdowsi M, Shamsi P (2022) A three-winding coupled inductor-based interleaved high-voltage gain DC–DC converter for photovoltaic systems. IEEE Trans Power Electron 37(1):990–1002CrossRef
30.
Zurück zum Zitat Vaghela MA, M, A. Mulla, (2021) A new non-isolated interleaved high step-up gain DC-DC converter with reduced voltage stress on switching devices. Int J Electron 75:1–27CrossRef Vaghela MA, M, A. Mulla, (2021) A new non-isolated interleaved high step-up gain DC-DC converter with reduced voltage stress on switching devices. Int J Electron 75:1–27CrossRef
31.
Zurück zum Zitat Kurdkandi NV, Nouri T (2020) Analysis of an efficient interleaved ultra-large gain DC–DC converter for DC microgrid applications. IET Power Electron 13(10):2008–2018CrossRefMATH Kurdkandi NV, Nouri T (2020) Analysis of an efficient interleaved ultra-large gain DC–DC converter for DC microgrid applications. IET Power Electron 13(10):2008–2018CrossRefMATH
32.
Zurück zum Zitat Vafa M, Ershadi MH, Khodadadi H, Baharizadeh M (2021) An interleaved high step-up DC–DC converter with low voltage stress. Iran J Sci Technol Trans Electr Eng 45:573–584CrossRef Vafa M, Ershadi MH, Khodadadi H, Baharizadeh M (2021) An interleaved high step-up DC–DC converter with low voltage stress. Iran J Sci Technol Trans Electr Eng 45:573–584CrossRef
33.
Zurück zum Zitat Rezvanyvardom M, Mirzaei A, Rahimi S (2019) New interleaved fully soft switched pulse width modulation boost converter with one auxiliary switch. IET Power Electron 12(5):1053–1060CrossRef Rezvanyvardom M, Mirzaei A, Rahimi S (2019) New interleaved fully soft switched pulse width modulation boost converter with one auxiliary switch. IET Power Electron 12(5):1053–1060CrossRef
34.
Zurück zum Zitat Akhlaghi B, Farzanehfard H (2020) Efficient ZVT cell for interleaved DC-DC converters. IET Power Electron 13(10):1925–1933CrossRefMATH Akhlaghi B, Farzanehfard H (2020) Efficient ZVT cell for interleaved DC-DC converters. IET Power Electron 13(10):1925–1933CrossRefMATH
35.
Zurück zum Zitat Lei H, Hao R, You X, Li F (2020) Nonisolated high step-up soft-switching DC–DC converter with interleaving and dickson switched-capacitor techniques. IEEE J Emerg Sel Top Power Electron 8(3):2007–2021CrossRefMATH Lei H, Hao R, You X, Li F (2020) Nonisolated high step-up soft-switching DC–DC converter with interleaving and dickson switched-capacitor techniques. IEEE J Emerg Sel Top Power Electron 8(3):2007–2021CrossRefMATH
36.
Zurück zum Zitat Gupta A, Ayyanar R, Chakraborty S (2021) Soft-switching mechanism for a high-gain, interleaved hybrid Boost converter. IEEE J Emerg Sel Top Ind Electron 2(4):420–430CrossRef Gupta A, Ayyanar R, Chakraborty S (2021) Soft-switching mechanism for a high-gain, interleaved hybrid Boost converter. IEEE J Emerg Sel Top Ind Electron 2(4):420–430CrossRef
Metadaten
Titel
An efficient interleaved Boost DC–DC converter with high-voltage gain based on switched capacitor
verfasst von
Leila Ahmadi
Alireza Siadatan
Ebrahim Afjei
Shahram Javadi
Publikationsdatum
13.06.2024
Verlag
Springer Berlin Heidelberg
Erschienen in
Electrical Engineering / Ausgabe 1/2025
Print ISSN: 0948-7921
Elektronische ISSN: 1432-0487
DOI
https://doi.org/10.1007/s00202-024-02413-9