June is bold and vulnerable. Sean is lustful and brutish. ‘I’ is a dreamer and sensual. Surreal fantasy and bitter realism are mixed to combat domestic violence and hypocrisy in modern India with allegorical suggestiveness. An epic journey is undertaken by three airy superheroes inside the protagonist June’s womb to save her female embryo to nullify an intrigue of forced abortion. Can they save it? Who is the biological father of the embryo?
She is free in her wildness, she is a wanderess, a drop of free water. She knows nothing of borders and cares nothing for rules or customs. ‘Time’ for her isn’t something to fight against. Her life flows clean, with passion, like fresh water. - Roman Payne
June is bold and vulnerable. Sean is lustful and brutish. ‘I’ is a dreamer and sensual. Surreal fantasy and bitter realism are mixed to combat domestic violence and hypocrisy in modern India with allegorical suggestiveness. An epic journey is undertaken by three airy superheroes inside the protagonist June’s womb to save her female embryo to nullify an intrigue of forced abortion. Can they save it? Who is the biological father of the embryo?
This book aims to systematically review and design different intelligent control algorithms for the small-signal stability assessment of HPS. With the growing consciousness of global warming and the fast depletion of natural power generation resources, the existing power system is on the verge of transitions to a “hybrid power system (HPS)” integrated with distributed energy resources. The recent results and requirements for the developments of intelligent control algorithms have motivated the authors to introduce this book for extensively analyzing the performance of HPS against unknown/uncertain disturbances. This book introduces fractional-order resilient control methodologies for arresting small-signal instability of HPS. The prospective investigation has been performed on the MATLAB platform. This book is helpful for undergraduate, postgraduate students, and research scholars working in power system stability, control applications, and soft computing in particular.
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