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Online since: June 2022
Authors: Olufunke Balogun, Peter Anuoluwapo Gbadega
Optimal Control Strategy for Energy Management of PV-Diesel-Battery Hybrid Power System of a Stand-Alone Micro-Grid
Peter Anuoluwapo, Gbadega1,a* and Olufunke Abolaji, Balogun2,b
1,a *Discipline of Electrical, Electronic & Computer Engineering, School of Engineering,
Howard College Campus, University of KwaZulu-Natal, King George V Avenue, Durban, 4041, South Africa.
2,b *Discipline of Electrical & Electronic Engineering, School of Engineering, Obafemi Awolowo University Ile-Ife, Osun State, Nigeria.
Control of micro-grids poses significant challenges that need to be addressed through advanced control techniques.
Jørgensen, "Hierarchical model-based predictive control of a power plant portfolio," Control Engineering Practice, vol. 19, no. 10, pp. 1126-1136, 2011
Balogun, "Active and Reactive Power Droop Controller Design for Reliable and Optimal Control of Renewable-Based Micro-Grid," in Advanced Engineering Forum, 2021, vol. 41: Trans Tech Publ, pp. 111-136
Li, "Optimal Energy Management Strategy for an Islanded Microgrid with Hybrid Energy Storage," Journal of Electrical Engineering & Technology, vol. 16, no. 3, pp. 1313-1325, 2021
Control of micro-grids poses significant challenges that need to be addressed through advanced control techniques.
Jørgensen, "Hierarchical model-based predictive control of a power plant portfolio," Control Engineering Practice, vol. 19, no. 10, pp. 1126-1136, 2011
Balogun, "Active and Reactive Power Droop Controller Design for Reliable and Optimal Control of Renewable-Based Micro-Grid," in Advanced Engineering Forum, 2021, vol. 41: Trans Tech Publ, pp. 111-136
Li, "Optimal Energy Management Strategy for an Islanded Microgrid with Hybrid Energy Storage," Journal of Electrical Engineering & Technology, vol. 16, no. 3, pp. 1313-1325, 2021
Online since: December 2012
Authors: Erick Petta Marinho, Alberto Sakata, Erika Fernanda Prados, Gilmar Ferreira Batalha
Superplastic forming of advanced metallic materials – Methods and applications, Woodhead Publishing Limited Cambridge. (2011) 3-30
Mukherjee, Superplastic forming: An analytical approach, Materials Science Engineering, V.
Al-Seif, Compression Testing of Superplastic Lead–Tin Eutectic Alloy at Room Temperature, The Arabian Journal for Science and Engineering, Vol. 30, N. 2B, (2005). pp 177- 188 [16] G.
Conf. on Superplasticity in Advanced Materials, Orlando, USA, Materials Science Forum, v. 357-9, pp. 219-4; ISSN 02555476. 2001 ISBN 0878498745 [18]J.
Curtis, Simulating superplastic forming, Computer Methods In Applied Mechanics and Engineering, v. 195, p. 6580–6603, 2006, [19] M.
Mukherjee, Superplastic forming: An analytical approach, Materials Science Engineering, V.
Al-Seif, Compression Testing of Superplastic Lead–Tin Eutectic Alloy at Room Temperature, The Arabian Journal for Science and Engineering, Vol. 30, N. 2B, (2005). pp 177- 188 [16] G.
Conf. on Superplasticity in Advanced Materials, Orlando, USA, Materials Science Forum, v. 357-9, pp. 219-4; ISSN 02555476. 2001 ISBN 0878498745 [18]J.
Curtis, Simulating superplastic forming, Computer Methods In Applied Mechanics and Engineering, v. 195, p. 6580–6603, 2006, [19] M.
Online since: May 2011
Authors: Zhi Yu Xiao, Mei Yuan Ke
Warm Flow Compaction to Form Cross-shaped Parts with Threaded Holes
Meiyuan Ke1, a, Zhiyu Xiao2, b
1Department of Mechanical & Electrical Engineering, Shunde Polytechnic, Foshan, Guangdong, 528333, China
2School of Mechanical & Automotive Engineering, South China University of Technology, Guangzhou, Guangdong, 510640, China
ajdkemy@sdpt.com.cn, bzhyxiao@scut.edu.cn
Keywords: Powder metallurgy, Warm flow compaction, Threaded hole, Cross-shaped Part.
Petzoldt: The 1997 European Conference on Advances in Structural PM Component Production[C].
Donald: Advances in Powder Metallurgy and Particulate Materials-2000, Part 6[C].
Materials Science Forum, 2004, p. 471 [6] G.
Petzoldt: The 1997 European Conference on Advances in Structural PM Component Production[C].
Donald: Advances in Powder Metallurgy and Particulate Materials-2000, Part 6[C].
Materials Science Forum, 2004, p. 471 [6] G.
Online since: February 2011
Authors: B.S. Murty, Jatin Bhatt, Sundaram Kumar
Murtyc
aDepartment of Metallurgical and Materials Engineering, V.N.I.T., Nagpur 440010, India
bBrunel Centre for Advanced Solidification Technology, Brunel University, Uxbridge, Middlesex, UK
cDepartment of Metallurgical and Materials Engineering, Indian Institute of Technology Madras, Chennai 600 036, India
ajatinbhatt@mme.vnit.ac.in, bSundaram.Kumar@brunel.ac.uk,cmurty@iitm.ac.in
* Corresponding Author.
Forum Vol. 649 (2010), p. 67 [8] J.
Forum Vol. 649 (2010), p. 67 [8] J.
Online since: April 2020
Authors: Cheng Jin, Xiao Hui Han, Ye Xu, Sen Guo
., Qingdao, P.R.China
2School of Materials Science and Engineering, Dalian Jiaotong University, Dalian, P.R.China
a13793237339@139.com, b15275210266@163.com, c1466563499@qq.com, djincheng@126.com
Keywords: Resistance Spot Welding; Indentation Depth; Finite Element Method; Electrode Strip
Abstract.
Al-Mukhtar: Advanced Engineering Forum Vol. 17 (2016), p. 31-57
Al-Mukhtar: Advanced Engineering Forum Vol. 17 (2016), p. 31-57
Online since: March 2011
Authors: He Quan Wang, Hai Bo Li, Yong Cai Wang, Yong Liu, Hai Wang, Wen Xia Zhao, Hong Huang, Chao Lun Liang, You Jun Deng
Controlled hydrothermal synthesis of ZnO nano and microstructure materials with photocatalytic properties
Hequan Wang1,a, Haibo Li1,3, Yongcai Wang1,3, Hai Wang3, Wenxia Zhao2,b, Hong Huang2, Chaolun Liang2, Youjun Deng3, and Yong Liu3,c
1Mechanical and Electrical Engineering, Shenyang Aerospace University, Shenyang 110136, China
2Instrumental Analysis and Research center, Sun Yat-sen University, Guangzhou 510275, China
3 School of Physics and Engineering, State Key Laboratory of Optoelectronic Materials and Technologies, Sun Yat-sen University, Guangzhou 510275, China
aneuwhq@163.com, bzhaowx@mail.sysu.edu.cn, cliuyong7@mail.sysu.edu.cn
Keywords: zinc oxide; nanostructure; microstructure; photoactivity; photoluminescence
Abstract.
Forum Vol. 83-87 (1992), p. 119 [1] R.Y.
Yang: Advanced MaterialsVol. 13 (2001) P. 113 [15] C.H.
Forum Vol. 83-87 (1992), p. 119 [1] R.Y.
Yang: Advanced MaterialsVol. 13 (2001) P. 113 [15] C.H.
Online since: December 2012
Authors: Yan Li He, Wei Yan Lei, Fei Long Huang
It has universal property and uses advanced detection sensors [2, 3].
Telecommunications Forum (TELFOR), 2011 19th: 297 – 300
Environment and Transportation Engineering (RSETE), 2011 International Conference:4765 – 4769
Remote Sensing: Environment and Transportation Engineering (RSETE), 2011 International Conference : 4177 – 4180
Telecommunications Forum (TELFOR), 2011 19th: 297 – 300
Environment and Transportation Engineering (RSETE), 2011 International Conference:4765 – 4769
Remote Sensing: Environment and Transportation Engineering (RSETE), 2011 International Conference : 4177 – 4180
Online since: March 2008
Authors: C. Krempaszky, Michael Hofmann, Julia Repper, Winfried Petry, Ewald Werner
Introduction
The measurement and analysis of residual stresses have gained significant importance over the past
couple of years due to the increasing demands for improving the properties of new engineering
materials and components [1].
Furrer: Advanced Engineering Materials, 2(2000), No. 12, p. 777
Forum, 524-525 (2006), p. 211
Furrer: Advanced Engineering Materials, 2(2000), No. 12, p. 777
Forum, 524-525 (2006), p. 211
Online since: November 2011
Authors: Zhong Gan Zhu, Shen Shou Li, Xiao Ming Liu, Fang Yang
Aircraft Landing Gear of a Dynamic Research and Computer Simulation
Shen-shou Lia, Xiao-ming Liub, Zhong-gan zhuc and Fang Yangd
School of Mechatronics Engineering , University of Electronic Science and Technology, Cheng du, China
a2008lshsh911@163.com ,b lxm@ustc.edu.cn, cuestc_2010@163.com, dyangfang_86@qq.com
Keywords: Adams/Aircraft, Landing gear, Buffer, Simulation.
Introduction Mechanical system dynamics simulation technology is with the development of computer technology and rapid development of the computer aided engineering technology.
“Advanced dynamic simulations for determination of Landing gear loads”, Annual Forum Proceedings-AHS International, Vol. 2007, P1028-1036,EI:20073410771455
Introduction Mechanical system dynamics simulation technology is with the development of computer technology and rapid development of the computer aided engineering technology.
“Advanced dynamic simulations for determination of Landing gear loads”, Annual Forum Proceedings-AHS International, Vol. 2007, P1028-1036,EI:20073410771455