1. Các đề tài nghiên cứu khoa học đã tham gia:
TT
Tên đề tài nghiên cứu/Lĩnh vực ứng dụng
Năm hoàn thành
Đề tài cấp (NN, Bộ, ngành, trường)
Trách nhiệm tham gia trong đề tài
01
Nghiên cứu thuật toán điều khiển ổn định cầu trục có giao tiếp với máy tính
2010
Cấp bộ
Chủ nhiệm đề tài
02
Thiết kế bộ nghịch lưu 1 pha có chất lượng điện áp tốt.
2009
Cấp trường
03
Điều khiển và giám sát tốc độ động cơ DC sử dụng công cụ PID trong PLC S7 200
2008
2. Các công trình khoa học (bài báo khoa học, báo cáo hội nghị khoa học, sách chuyên khảo…) đã công bố: (tên công trình, năm công bố, nơi công bố)
A. Báo tạp chí khoa học chuyên ngành
[1] L. Wang and D.-N. Truong, “Dynamic stability improvement of four parallel-operated PMSG-based offshore wind turbine generators fed to a power system using a STATCOM,” IEEE Transactions on Power Delivery, vol. 28, no. 1, pp. 111-119, Jan. 2013. [SCI, IF(avg) = 1.353], ISSN 0885-8977
[2] L. Wang and D.-N. Truong, “Stability enhancement of DFIG-based offshore wind farm fed to a multi-machine system using a STATCOM,” IEEE Transactions on Power Systems. vol. 28, no. 3, pp. 2882-2889, Aug. 2013. [SCI, IF(avg) = 2.678], ISSN 0885-8950
[3] L. Wang and D.-N. Truong, “Stability enhancement of a power system with a PMSG-based and a DFIG-based offshore wind farms using an SVC with an adaptive-network-based fuzzy inference system,” IEEE Transactions on Industrial Electronics, vol. 60, no. 7, pp. 2799-2807, Jul. 2013. [SCI, IF(avg) = 5.16], ISSN 0278-0046
[4] L. Wang and D.-N. Truong, “Comparative stability enhancement of PMSG-based offshore wind farm fed to an SG-based power system using an SSSC and an SVeC,” IEEE Transactions on Power Systems, vol. 28, no. 2, pp. 1336-1344, May 2013. [SCI, IF(avg) = 2.678], ISSN 0885-8950
[5] D.-N. Truong and V.-T. Ngo, “Study of the dynamic stability enhancement of PMG-based wind turbine generator fed to power grid using an SVC,” Journal of Science & Technology, vol. 101, pp. 82-86, 2014. ISSN 0866-708X
[6] D.-N. Truong and V.-T. Ngo, “Designed Damping Controller for SSSC to Improve Stability of a Hybrid Offshore Wind Farms Considering Time Delay” International Journal of Electrical Power and Energy Systems, [IF(avg) = 2.694], ISSN: 0142-0615. [Accepted 24, September 2014]
[7] D.-N. Truong, V.-H. Pham, V.-T. Bui, and D.-L. Ho, “Application of an SVC to Enhance the Stability of DFIG-based Wind Turbine Generator Fed to Power Grid,” Journal of Technical Education Science, Hochiminh City University of Technology and Education, no. 29, 2014, pp. 44-48.
[8] D.-N. Truong, Van Phuong Ta and Nguyen Vu Quynh, “Hybrid pi plus fuzzy logic damping controller to improve the dynamic stability of dfig-based wind turbine generators,” Journal of Science & Technology, Volume 52, Number 4D, 2014.
[9] Mi Sa- Nguyen Thi, D.-N. Truong and Nguyen Vu Quynh, “Stability enhancement of the integration of wind and solar energy fed to sg-based power system,” Journal of Science & Technology, Volume 52, Number 4D, 2014.
[10] D.-N. Truong, D.-L. Ho and V.-T. Ngo, “Stability Improvement of a PMSG-based Offshore Wind Farm Using a Static Synchronous Series Compensator” Automation Today, No. 13, 8/2015.
B. Báo hội thảo quốc tế
[1] L. Wang and D.-N. Truong, “Stability improvement of a hybrid DFIG-based and PMSG-based offshore wind farm fed to an SG-based power system using a STATCOM,” in Proc. International Conference on Smart Grid and Clean Energy Technologies, 26-28 October 2012, Hong Kong, China.
[2] D.-N. Truong and L. Wang, “Power system stability enhancement with an integrated offshore wind farm and marine-current farm using a STATCOM,” in Proc. IEEE Asia Pacific Conference on Circuits and Systems, 2-5 December 2012, Kaohsiung, Taiwan.
[3] L. Wang and D.-N. Truong, “Stability improvement of a DFIG-based offshore wind farm fed to a multi-machine power system using a static VAR compensator,” in Proc. IEEE IAS Annual Meeting, 7-11 October 2012, Las Vegas, NV, USA.
[4] D.-N. Truong and L. Wang, “Application of a static synchronous series compensator to improve stability of an SG-based power system with an offshore wind farm,” in Proc. IEEE PES General Meeting, 22-26 July 2012, San Diego, CA, USA.
[5] L. Wang and D.-N. Truong, “Application of a SVeC and a SSSC on damping improvement of a SG-based power system with a PMSG-based offshore wind farm,” in Proc. IEEE PES General Meeting, 22-26 July 2012, San Diego, CA, USA.
[6] D.-N. Truong and L. Wang, "Dynamic Stability Enhancement of a Single-Machine Infinite-Bus System Using a Series Vectorial Compensator," in Proc. 22th IEEE International Symposium on Industrial Electronics, 28-31 May 2013, Taipei, Taiwan.
[7] L. Wang and D.-N. Truong, “Stability improvement of an integration of an offshore wind farm and a marine-current farm using a static VAR compensator” in Proc. IEEE PES General Meeting, 27-31 July 2014, National Harbor, MD, USA.
[8] D.-N. Truong, K.-A. Nguyen and M.-S. Nguyen Thi, “Studied Voltage Stability in Isolated Hybrid Diesel and Wind Generator in Phu Qui Island by Increasing the Penetration Level of Wind Power,” in Proc. The 2nd International Conference on Green Technology and Sustainable Development 2014 (GTSD’14), 30 October 2014, Hochiminh City, Vietnam.
[9] D.-N. Truong, V.-P. Ta and M.-T. Luu, “Hybrid PI plus Fuzzy Logic Damping Controller to Improve the Dynamic Stability of DFIG-based Wind Turbine Generator,” in Proc. The 2nd International Conference on Green Technology and Sustainable Development 2014 (GTSD’14), 30 October 2014, Hochiminh City, Vietnam.
[10] Van-Tri Bui, Dinh-Nhon Truong, Dac-Loc Ho, and Van-Hiep Pham, “Stability Improvement of a Grid Connected Wind Generators: A Case Study,” in Proc. International Symposium on Electrical and Electronics Engineering – ISEE2015, 30th October 2015, Hochiminh City, Vietnam.
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