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- W4385385384 abstract "Electricity infrastructure is the arrangement made by a human being with the use of available resources to generate power, transfer it from one place to another, conversion and dispense electrical power at various locations. The parameters and ratings of individual national, state, and regional grids are diverse, but they follow the same ideology and protocol for the functioning of important infrastructure. The amount of electricity produced by green energy sources is increasing day by day in contrast to major electricity being generated by conventional sources. Apart from the local generation and utilization, the majority of electricity generated by the centralized plant is transported using large power transformers and complex transmission infrastructure. Power transformer stands in electricity infrastructure to safely and consistently transport energy to consumers over a long distance. Investment in dedicated transformer infrastructure is essential to tackle some unforeseen situations of weather, storms, and internal failure of the system as well as to recover the flexibility of the grid. However, the conditions of existing transformers are unpleasant due to the aging effect and overloading stress. Thus, flexible power transformers are the need for a future smarter grid to deal with the mixture of conventional and bidirectional power flow from renewable energy sources. Moreover, the advanced control, monitoring, and stand-alone protection of such transformers increase the efficiency of the entire power/smart grid. This chapter deals with the role of large power transformers in electrical infrastructure with possible interconnections and operations. The advanced technology development, design aspect, testing of a transformer, voltage regulation by OLTC, fault analysis with DGA, and condition monitoring are discussed in this chapter. Moreover, a smart/flexible transformer is facilitated with the adoption of the change in voltage and variation in impedance in the event of a malfunction of the power grid. They are self-controllable with the use of smart sensors and can change the load pattern as well as monitor their operation with the use of artificial intelligence and IoT techniques." @default.
- W4385385384 created "2023-07-30" @default.
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- W4385385384 date "2023-01-01" @default.
- W4385385384 modified "2023-09-27" @default.
- W4385385384 title "Transformer Infrastructure for Power Grid" @default.
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- W4385385384 doi "https://doi.org/10.1007/978-981-99-3870-4_1" @default.
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