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2024 | OriginalPaper | Buchkapitel

Load Shedding Technique for Maintaining Voltage Stability

verfasst von : Prashant Kumar Sharma, Akash Sharma, Rajive Tiwari

Erschienen in: Flexible Electronics for Electric Vehicles

Verlag: Springer Nature Singapore

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Abstract

Recently, energy and power industries have under-went considerable changes, because of intervention of DG’s in the existing conventional system, the operational, management, and control of the power system is becoming ever so more complicated and tedious along with several challenges. The earlier distribution structure has under-went huge modification in the past few years as power systems are no more regulated by a single hand. The involvement of variable large and small private players has complicated the situation further. The system operator is facing more challenges as now the flow of power in both the directions, i.e., from generator end to consumer end and vice versa. The spatially Distributed Generation (DG) has provisioned facility of clean energy and reduction of emissions safe guarding environment and has considerably improved the efficiency and performance of power system. However, inclusion and integration of DGs in the conventional power system have side effects towards reliability of the system. The introduction of DGs gives rise to poor power quality, faulty operation of protection systems or devices, and may even lead to voltage sag or swell, all of which are undesirable effects of penetration of DGs.

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Literatur
1.
Zurück zum Zitat El-Zonkoly M (2011) Optimal placement of multi-distributed generation units including different load models using particle swarm optimization. IET Gener Transm Distrib 5(7):760–771CrossRef El-Zonkoly M (2011) Optimal placement of multi-distributed generation units including different load models using particle swarm optimization. IET Gener Transm Distrib 5(7):760–771CrossRef
2.
Zurück zum Zitat Shekari T, Aminifar F, Sanaye-Pasand M (2016) An analytical adaptive load shedding scheme against severe combinational disturbances. IEEE Trans Power Syst 31(5):4135–4143CrossRef Shekari T, Aminifar F, Sanaye-Pasand M (2016) An analytical adaptive load shedding scheme against severe combinational disturbances. IEEE Trans Power Syst 31(5):4135–4143CrossRef
3.
Zurück zum Zitat Ching-Tzong S, Lee C (2003) Network reconfiguration of distribution systems using improved mixed-integer hybrid differential evolution. IEEE Trans Power Del 18(3):1022–1027CrossRef Ching-Tzong S, Lee C (2003) Network reconfiguration of distribution systems using improved mixed-integer hybrid differential evolution. IEEE Trans Power Del 18(3):1022–1027CrossRef
4.
Zurück zum Zitat Masood N, Shazon MH, Deeba SR (2021) A frequency and voltage stability based load shedding technique for low inertia power system. IEEE J 9(3):78947–78961 Masood N, Shazon MH, Deeba SR (2021) A frequency and voltage stability based load shedding technique for low inertia power system. IEEE J 9(3):78947–78961
5.
Zurück zum Zitat Mahdad B, Srairi K (2019) Adaptive differential search algorithm for optimal location of distributed generation in the presence of SVC for power loss reduction in distribution system. Eng Sci Technol, Int J 19(3):1266–1282 Mahdad B, Srairi K (2019) Adaptive differential search algorithm for optimal location of distributed generation in the presence of SVC for power loss reduction in distribution system. Eng Sci Technol, Int J 19(3):1266–1282
6.
Zurück zum Zitat Manson S, Zweigle G, Yedidi V (2014) An adaptive under- frequency load-shedding system. IEEE Trans Ind Appl 50(3):1659–1667CrossRef Manson S, Zweigle G, Yedidi V (2014) An adaptive under- frequency load-shedding system. IEEE Trans Ind Appl 50(3):1659–1667CrossRef
7.
Zurück zum Zitat Laghari JA, Mokhlis H, Karimi M, Abu Bakar AH, Mohamad H (2015) A new under-frequency load shedding technique based on combination of fixed and random priority of loads for smart grid applications. IEEE Trans Power Syst 30(5):2507–2515 Laghari JA, Mokhlis H, Karimi M, Abu Bakar AH, Mohamad H (2015) A new under-frequency load shedding technique based on combination of fixed and random priority of loads for smart grid applications. IEEE Trans Power Syst 30(5):2507–2515
8.
Zurück zum Zitat Rugthai Charoencheep N, Sirisumrannukul S (2009) Feeder reconfiguration for loss reduction in distribution system with distributed generators by tabu search. GMSARN Int J 3(2):47–54 Rugthai Charoencheep N, Sirisumrannukul S (2009) Feeder reconfiguration for loss reduction in distribution system with distributed generators by tabu search. GMSARN Int J 3(2):47–54
9.
Zurück zum Zitat Li C, Wu Y, Sun Y, Zhang H, Liu Y, Liu Y, Terzija V (2020) Continuous under-frequency load shedding scheme for power system adaptive frequency control. IEEE Trans Power Sys 35(2):950–961CrossRef Li C, Wu Y, Sun Y, Zhang H, Liu Y, Liu Y, Terzija V (2020) Continuous under-frequency load shedding scheme for power system adaptive frequency control. IEEE Trans Power Sys 35(2):950–961CrossRef
10.
Zurück zum Zitat Moradi MH, Abedini M (2012) A combination of genetic algorithm and particle swarm optimization for optimal DG location and sizing in distribution systems. Int J Electr Power Energy Syst 34(1):66–74CrossRef Moradi MH, Abedini M (2012) A combination of genetic algorithm and particle swarm optimization for optimal DG location and sizing in distribution systems. Int J Electr Power Energy Syst 34(1):66–74CrossRef
11.
Zurück zum Zitat Yuan-Kang WU, Lee C-Y, Liu L-C, Tsai S-H (2010) Study of reconfiguration for the distribution system with distributed generator. IEEE Trans Power Delivery 25(3):110–112 Yuan-Kang WU, Lee C-Y, Liu L-C, Tsai S-H (2010) Study of reconfiguration for the distribution system with distributed generator. IEEE Trans Power Delivery 25(3):110–112
12.
Zurück zum Zitat Lalitha MP, Reddy VCV, Usha V, Reddy NS (2010) Optimal DG placement for minimum real power loss in radial distribution system using PSO. ARPN J Eng Appl Sci 5(4):30–37. Lalitha MP, Reddy VCV, Usha V, Reddy NS (2010) Optimal DG placement for minimum real power loss in radial distribution system using PSO. ARPN J Eng Appl Sci 5(4):30–37.
13.
Zurück zum Zitat Manson S, Zweigle G, Yedidi V (2014) Case study: an adaptive under-frequency load-shedding system. IEEE Trans Ind Apple 50(3):1659–1667 Manson S, Zweigle G, Yedidi V (2014) Case study: an adaptive under-frequency load-shedding system. IEEE Trans Ind Apple 50(3):1659–1667
14.
Zurück zum Zitat Tang J, Liu J, Ponci F, Monti A (2013) Adaptive load shedding based on combined frequency and voltage stability assessment using synchrophasor measurements. IEEE Trans Power Syst 28(2):2035–2047CrossRef Tang J, Liu J, Ponci F, Monti A (2013) Adaptive load shedding based on combined frequency and voltage stability assessment using synchrophasor measurements. IEEE Trans Power Syst 28(2):2035–2047CrossRef
15.
Zurück zum Zitat Mortaji H, Ow SH, Moghavvemi M, Almurib HAF (2017) Load shedding and smart-direct load control using internet of things in smart grid demand response management. IEEE Trans Ind Appl 53(6):5155–5163CrossRef Mortaji H, Ow SH, Moghavvemi M, Almurib HAF (2017) Load shedding and smart-direct load control using internet of things in smart grid demand response management. IEEE Trans Ind Appl 53(6):5155–5163CrossRef
16.
Zurück zum Zitat Wiszniewski A (2007) New criteria of voltage stability margin for the purpose of load shedding. IEEE Trans Power Del 22(3):1367–1371CrossRef Wiszniewski A (2007) New criteria of voltage stability margin for the purpose of load shedding. IEEE Trans Power Del 22(3):1367–1371CrossRef
Metadaten
Titel
Load Shedding Technique for Maintaining Voltage Stability
verfasst von
Prashant Kumar Sharma
Akash Sharma
Rajive Tiwari
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-4795-9_29