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Titlebook: Electric Distribution Network Management and Control; Ali Arefi,Farhad Shahnia,Gerard Ledwich Book 2018 Springer Nature Singapore Pte Ltd.

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https://doi.org/10.1007/978-3-322-92458-2ctionality is introduced. Then, a fundamental description of fault management procedure in distribution networks is presented. Thereafter, the mathematical formulation of optimal fault management process is described. Optimal switch deployment problem is formulated in the format of mixed integer pro
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https://doi.org/10.1007/978-3-322-94256-2ted network planning. The distributed generation (DG) alternative is seen as a shift in the paradigm of energy generation in the world. The adoption of renewable sources of energy for residential or commercial production brings not only environmental benefits, but also an opportunity to ease the sup
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https://doi.org/10.1007/978-3-8348-9522-6ators (DFIG) and, permanent magnet synchronous generator (PMSG). Installing wind farms must fulfill some rules or requirements. These requirements are developed by transmission system operator in order to guarantee the continuity and stability of the interconnected grid. This chapter presents the st
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1612-1287 gement ofsystem for effective use of resources, and as such the also addresses operation and control approaches and techniques suitable for future distribution networks..978-981-13-3905-9978-981-10-7001-3Series ISSN 1612-1287 Series E-ISSN 1860-4676
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Book 2018the efficient and economic operation of distribution networks is an essential part of management ofsystem for effective use of resources, and as such the also addresses operation and control approaches and techniques suitable for future distribution networks..
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Grundfragen deutscher Wirtschaftspolitikof renewables in electric distribution networks. Many states are now embarking on ambitious “clean” energy development targets. Distributed generations (DGs) are especially attracting a lot of attention nowadays, and planners and policy makers seem to favor more on a distributed power generation to
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https://doi.org/10.1007/978-3-642-86888-7low model, an advanced loss reduction approach is developed to achieve the optimal control coordination among multiple capacitors and distributed energy resources such as solar and wind resources. The effectiveness of the presented approach is demonstrated on practical utility distribution networks
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