55
Conclusions
Energy crisis, ever-increasing oil prices, and climate changes due to the greenhouse
gas emission have increased people’s attention toward effective, efficient, sustainable, and pollution-free renewable energy systems where wind energy could be the
promising source of alternative energy. Since wind power is widely available and
not confined to the banks of fast-flowing streams, the development of wind power
will play a vital role in meeting the global energy demand while safeguarding the
environment. Simply optimizing the renewable wind energy is clarified in this chapter by a mathematical model which summarizes that the nonlinear power characteristics of wind energy require simple techniques to extract maximum power from the
air. Here, the simplicity of the system increases with maximum power point tracking (MPPT) techniques; thus it is clarified by mathematical modeling of MPPT
techniques which indeed would be an innovative technology to meet the global
energy demand. Simply the utilization of wind energy power system will be a great
relief for the current finite level of fossil fuel and a means for the reduction of greenhouse gas emission. Thus, the presented simulation study of global wind energy
clearly depicts that the proposed abundant wind energy can be an interesting source
of renewable energy to meet the global energy demand which is also very much
environmentally friendly.
Acknowledgements This research was supported by Green Globe Technology under the grant
RD-02017-07 for building a better environment. Any findings, predictions, and conclusions
described in this chapter are solely performed by the author. The author confirms that there is no
conflict of interest for publishing this chapter in a suitable journal or book.
References
1. Binayak Bhandari, Shiva Raj Poudel, Kyung-Tae Lee, Sung-Hoon Ahn. “Mathematical modeling of hybrid renewable energy system: A review on small hydro-solar-wind power generation”, International Journal of Precision Engineering and Manufacturing-Green Technology,
2014.
2. Youcef Saidi, Abdelkader Mezouar, Yahia Miloud, Mohammed Amine Benmahdjoub. “A
robust control strategy for three phase voltage t source PWM rectifier connected to a PMSG
wind energy conversion system”, 2018 International Conference on Electrical Sciences and
Technologies in Maghreb (CISTEM), 2018.
3. Abdullah Asuhaimi B. Mohd Zin, Mahmoud Pesaran H. A, Azhar B. Khairuddin, Leila
Jahanshaloo, Omid Shariatu, An overview on doubly fed induction generators’ controls
and contributions to wind-based electricity generation, Renewable and Sustainable Energy
Rreviews, vol. 27, 2013, pp. 692-708.
4. Farhad Ilahi Bakhsh, Dheeraj Kumar Khatod. “A new synchronous generator-based wind
energy conversion system feeding an isolated load through variable frequency transformer”,
Renewable Energy.
5. Huang Ligang, Wang Xiangdong, Yan Kang. “Optimal speed tracking for double fed wind
generator via switching control”, The 27th Chinese Control and Decision Conference (2015
CCDC), 2015.
References
Conclusions
Energy crisis, ever-increasing oil prices, and climate changes due to the greenhouse
gas emission have increased people’s attention toward effective, efficient, sustainable, and pollution-free renewable energy systems where wind energy could be the
promising source of alternative energy. Since wind power is widely available and
not confined to the banks of fast-flowing streams, the development of wind power
will play a vital role in meeting the global energy demand while safeguarding the
environment. Simply optimizing the renewable wind energy is clarified in this chapter by a mathematical model which summarizes that the nonlinear power characteristics of wind energy require simple techniques to extract maximum power from the
air. Here, the simplicity of the system increases with maximum power point tracking (MPPT) techniques; thus it is clarified by mathematical modeling of MPPT
techniques which indeed would be an innovative technology to meet the global
energy demand. Simply the utilization of wind energy power system will be a great
relief for the current finite level of fossil fuel and a means for the reduction of greenhouse gas emission. Thus, the presented simulation study of global wind energy
clearly depicts that the proposed abundant wind energy can be an interesting source
of renewable energy to meet the global energy demand which is also very much
environmentally friendly.
Acknowledgements This research was supported by Green Globe Technology under the grant
RD-02017-07 for building a better environment. Any findings, predictions, and conclusions
described in this chapter are solely performed by the author. The author confirms that there is no
conflict of interest for publishing this chapter in a suitable journal or book.
References
1. Binayak Bhandari, Shiva Raj Poudel, Kyung-Tae Lee, Sung-Hoon Ahn. “Mathematical modeling of hybrid renewable energy system: A review on small hydro-solar-wind power generation”, International Journal of Precision Engineering and Manufacturing-Green Technology,
2014.
2. Youcef Saidi, Abdelkader Mezouar, Yahia Miloud, Mohammed Amine Benmahdjoub. “A
robust control strategy for three phase voltage t source PWM rectifier connected to a PMSG
wind energy conversion system”, 2018 International Conference on Electrical Sciences and
Technologies in Maghreb (CISTEM), 2018.
3. Abdullah Asuhaimi B. Mohd Zin, Mahmoud Pesaran H. A, Azhar B. Khairuddin, Leila
Jahanshaloo, Omid Shariatu, An overview on doubly fed induction generators’ controls
and contributions to wind-based electricity generation, Renewable and Sustainable Energy
Rreviews, vol. 27, 2013, pp. 692-708.
4. Farhad Ilahi Bakhsh, Dheeraj Kumar Khatod. “A new synchronous generator-based wind
energy conversion system feeding an isolated load through variable frequency transformer”,
Renewable Energy.
5. Huang Ligang, Wang Xiangdong, Yan Kang. “Optimal speed tracking for double fed wind
generator via switching control”, The 27th Chinese Control and Decision Conference (2015
CCDC), 2015.
References
