Active Electrical Distribution Network. Группа авторов
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Название: Active Electrical Distribution Network

Автор: Группа авторов

Издательство: John Wiley & Sons Limited

Жанр: Физика

Серия:

isbn: 9781119599579

isbn:

СКАЧАТЬ of relays, circuit breakers, etc.

       Types of relays that were installed at the time of installation by keeping the one-directional state of distribution systems required to be changed due to the bidirectional operating scenario

       Increased MVA capacity of the conductors

      All these issues strongly recommend urgent alteration in the present structure to cope with newly installed technologies.

      3.3.1.10 Stability of the System

      3.3.2 Economic Problems

      3.3.2.1 Inadequacy of the Traditional Distribution System Structure to Cope with the Day-by-Day Enhancement of the Load Requirement

      The available structure was designed to supply a load that was much less than the ever-increasing load the power system is bearing nowadays. Structure analysts and power system engineers work hard to investigate the means to make the available system compatible to sustain this continuously growing demand. Network modification, renewal at certain sectors, or insertion of distributed generation to make it more flexible are some of the remedies that have been incorporated in the system to make it compatible to sustain the enhanced burden of the ever increasing load.

      3.3.2.2 Economic Operation of the System

      3.3.3 Environmental Problems

      3.3.3.1 Deterioration of the Grid with the Course of Time

       Preventive maintenance

       Replacement of degrading units

       Annual renewal planning

       Implementation of the latest technologies to improve the performance

       Annual performance audit

      Apart from these, many other strategies have been found to be implemented by network operators to improve the system performance and enhance the revenue.

      3.3.3.2 Impact of Worsened Climatic Conditions

      3.4 Conclusion

      The effective operation of an active distribution network requires regulation and control, load forecast, its analysis and execution of adaptive technologies for resilient system operation, grid security monitoring and parameter optimization monitoring, etc. All these operations require advanced data management methods like energy management systems, SCADA, etc. However, to obtain the maximum output from those technologies, all the technical, economic, and environmental issues faced by distribution systems will be well researched, discussed, analyzed, and evaluated. It is also essential to improve performance and quality of power delivery by a distribution network to consumers. The state-of- the-art method of addressing these issues has been presented in this chapter, highlighting the major concerns for a distribution system that offers the best way to adopt installation of new technologies and resources in its territory.

      References

      1 [1] B. Khan, H.H. Alhelou, and F. Mebrahtu, “A holistic analysis of distribution system reliability assessment methods with conventional and renewable energy sources,” AIMS Energy, vol. 7, no. 4, pp. 413–429, 2019.

      2 [2] Y. Kifle, B. Khan, and P. Singh, “Assessment and enhancement of distribution system reliability by renewable energy sources and energy storage,” Journal of Green Engineering, vol. 8, no. 3 (2), pp. 219–262, July 2018.

      3 [3] B. Khan and P. Singh, “Optimal power flow techniques under characterization of conventional and renewable energy sources: A comprehensive analysis,” Journal of Engineering, vol. 2017, Article ID 9539506, 16 pages, 2017.

      4 [4] T.F. Agajie, B. Khan, H.H. Alhelou, and O.P. Mahela, “Optimal expansion planning of distribution system using grid-based multi-objective harmony search algorithm,” Computers & Electrical Engineering, vol. 87, 106823, 2020.

      5 [5] Y. Kifle, B. Khan, and J. Singh, “Designing and modeling grid connected photovoltaic system: (Case study: EEU building at Hawassa city),” International Journal of Convergence Computing, vol. 3, no. 1, pp. 20–34, 2018.

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