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2024 | OriginalPaper | Buchkapitel

A Combined DG Integration-Network Reconfiguration-Based Method for Network Loss Minimization and Voltage Profile Improvement

verfasst von : Deepak Porwal, Manoj Fozdar (SMIEEE), Rajive Tiwari

Erschienen in: Flexible Electronics for Electric Vehicles

Verlag: Springer Nature Singapore

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Abstract

Distribution system operators (DSOs) are opting network reconfiguration as a simple and cost-effective way of reducing network losses and avoiding the islanding effect occurring due to line outages. The continuously increasing integration of distributed generators has posed Volt-VAr optimization as major concern. This paper focuses on optimal network losses and bus voltage enhancement by network reconfiguration in DG-embedded system. The voltage stability indices are used to accommodate the DG at appropriate location. This practice is performed in MATLAB and validated on IEEE 33-bus distribution system. The proposed study finds the reduced network losses, improved supply reliability, and better voltage profile.

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Literatur
5.
Zurück zum Zitat Atwa YM, El-Saadany EF, Salama MMA et al (2010) Optimal renewable resources mix for distribution system energy loss minimization. IEEE Trans Power Syst 25(1):360–370CrossRef Atwa YM, El-Saadany EF, Salama MMA et al (2010) Optimal renewable resources mix for distribution system energy loss minimization. IEEE Trans Power Syst 25(1):360–370CrossRef
6.
Zurück zum Zitat Akorede MF, Hizam H, Aris I, et al (2011) Effective method for optimal allocation of distributed generation units in meshed electric power systems. IET Gener, Trans Distrib 5(2):276–287 Akorede MF, Hizam H, Aris I, et al (2011) Effective method for optimal allocation of distributed generation units in meshed electric power systems. IET Gener, Trans Distrib 5(2):276–287
7.
Zurück zum Zitat Abu-Mouti FS, El-Hawary ME (2011) Optimal distributed generation allocation and sizing in distribution systems via artificial bee colony algorithm. IEEE Trans Power Deliv 26(4):2090–2101CrossRef Abu-Mouti FS, El-Hawary ME (2011) Optimal distributed generation allocation and sizing in distribution systems via artificial bee colony algorithm. IEEE Trans Power Deliv 26(4):2090–2101CrossRef
8.
Zurück zum Zitat Kuri B, Redfern M, Li F (2004) Optimization of rating and positioning of dispersed generation with minimum network disruption. Proc. IEEE power engineering society general meeting, Denver, USA, June, pp 2074–2078 Kuri B, Redfern M, Li F (2004) Optimization of rating and positioning of dispersed generation with minimum network disruption. Proc. IEEE power engineering society general meeting, Denver, USA, June, pp 2074–2078
9.
Zurück zum Zitat El-Khaltam W, Bhattacharya K, Hegazy Y et al (2004) Optimal investment planning for distributed generation in a competitive electricity market. IEEE Trans Power Syst 19(3):1674–1684CrossRef El-Khaltam W, Bhattacharya K, Hegazy Y et al (2004) Optimal investment planning for distributed generation in a competitive electricity market. IEEE Trans Power Syst 19(3):1674–1684CrossRef
10.
Zurück zum Zitat Vatani M, Alkaran D, Sanjari M, Gharehpetian G B (2015) Multiple distributed generation units allocation in distribution network for loss reduction based on a combination of analytical and genetic algorithm methods. IET Gener, Transm Distrib 10. https://doi.org/10.1049/iet-gtd.2015.0041 Vatani M, Alkaran D, Sanjari M, Gharehpetian G B (2015) Multiple distributed generation units allocation in distribution network for loss reduction based on a combination of analytical and genetic algorithm methods. IET Gener, Transm Distrib 10. https://​doi.​org/​10.​1049/​iet-gtd.​2015.​0041
11.
Zurück zum Zitat Lee T, Hu S, Chan Y (2013) D-STATCOM With Positive-sequence admittance and negative-sequence conductance to mitigate voltage fluctuations in high-level penetration of distributed-generation systems. IEEE Trans Industr Electron 60(4):1417–1428CrossRef Lee T, Hu S, Chan Y (2013) D-STATCOM With Positive-sequence admittance and negative-sequence conductance to mitigate voltage fluctuations in high-level penetration of distributed-generation systems. IEEE Trans Industr Electron 60(4):1417–1428CrossRef
12.
Zurück zum Zitat Zeinalzadeh A, Estebsari A, Bahmanyar A (2019) Simultaneous optimal placement and sizing of DSTATCOM and parallel capacitors in distribution networks using multi-objective PSO. IEEE Milan Power Tech 2019:1–6 Zeinalzadeh A, Estebsari A, Bahmanyar A (2019) Simultaneous optimal placement and sizing of DSTATCOM and parallel capacitors in distribution networks using multi-objective PSO. IEEE Milan Power Tech 2019:1–6
13.
Zurück zum Zitat Ranamuka D, Agalgaonkar AP, Muttaqi KM (2019) Innovative Volt/VAr control philosophy for future distribution systems embedded with voltage-regulating devices and distributed renewable energy resources. IEEE Syst J 13(3):3153–3164CrossRef Ranamuka D, Agalgaonkar AP, Muttaqi KM (2019) Innovative Volt/VAr control philosophy for future distribution systems embedded with voltage-regulating devices and distributed renewable energy resources. IEEE Syst J 13(3):3153–3164CrossRef
15.
Zurück zum Zitat Liu Y, Li J, Wu L (2019) Coordinated optimal network reconfiguration and voltage regulator/DER control for unbalanced distribution systems. IEEE Trans Smart Grid 10(3):2912–2922CrossRef Liu Y, Li J, Wu L (2019) Coordinated optimal network reconfiguration and voltage regulator/DER control for unbalanced distribution systems. IEEE Trans Smart Grid 10(3):2912–2922CrossRef
16.
Zurück zum Zitat Aziz T, Mhaskar UP, Saha TK, Mithulananthan N (2013) An index for STATCOM placement to facilitate grid integration of DER. IEEE Trans Sustain Energy 4(2):451–460CrossRef Aziz T, Mhaskar UP, Saha TK, Mithulananthan N (2013) An index for STATCOM placement to facilitate grid integration of DER. IEEE Trans Sustain Energy 4(2):451–460CrossRef
17.
Zurück zum Zitat Muttaqi KM, Le ADT, Negnevitsky M, Ledwich G (2015) A coordinated voltage control approach for coordination of OLTC, voltage regulator, and dg to regulate voltage in a distribution feeder. IEEE Trans Ind Appl 51(2):1239–1248 Muttaqi KM, Le ADT, Negnevitsky M, Ledwich G (2015) A coordinated voltage control approach for coordination of OLTC, voltage regulator, and dg to regulate voltage in a distribution feeder. IEEE Trans Ind Appl 51(2):1239–1248
18.
Zurück zum Zitat Bokhari A et al (2016) Combined effect of CVR and DG penetration in the voltage profile of low-voltage secondary distribution networks. IEEE Trans Power Delivery 31(1):286–293CrossRef Bokhari A et al (2016) Combined effect of CVR and DG penetration in the voltage profile of low-voltage secondary distribution networks. IEEE Trans Power Delivery 31(1):286–293CrossRef
19.
Zurück zum Zitat Schmitt KEK, Canha LN, Antunes MdA, P. R. Pereira, “A smart local voltage regulator methodology for dynamic integration between volt-var control and distributed energy resources,” 2018 IEEE PES Transmission & Distribution Conference and Exhibition - Latin America (T&D-LA), 2018, pp. 1–5. Schmitt KEK, Canha LN, Antunes MdA, P. R. Pereira, “A smart local voltage regulator methodology for dynamic integration between volt-var control and distributed energy resources,” 2018 IEEE PES Transmission & Distribution Conference and Exhibition - Latin America (T&D-LA), 2018, pp. 1–5.
20.
Zurück zum Zitat Kelly N, Dehghanpour K, Nehrir H (2018) Loss Minimization for distributed PV integration using particle swarm optimization with volt-var control. IEEE Power & Energy Soc Gen Meet (PESGM) 2018:1–5 Kelly N, Dehghanpour K, Nehrir H (2018) Loss Minimization for distributed PV integration using particle swarm optimization with volt-var control. IEEE Power & Energy Soc Gen Meet (PESGM) 2018:1–5
21.
Zurück zum Zitat Singhal A, Ajjarapu V, Fuller J, Hansen J (2019) Real-time local volt/var control under external disturbances with high PV penetration. IEEE Trans Smart Grid 10(4):3849–3859CrossRef Singhal A, Ajjarapu V, Fuller J, Hansen J (2019) Real-time local volt/var control under external disturbances with high PV penetration. IEEE Trans Smart Grid 10(4):3849–3859CrossRef
23.
Zurück zum Zitat Reddy SC, Prasad PVN, Laxmi AJ (2012) Power quality and reliability improvement of distribution system by optimal number, location and size of DGs using Particle Swarm Optimization. In: 2012 IEEE 7th international conference on industrial and information systems (ICIIS), pp 1–6 Reddy SC, Prasad PVN, Laxmi AJ (2012) Power quality and reliability improvement of distribution system by optimal number, location and size of DGs using Particle Swarm Optimization. In: 2012 IEEE 7th international conference on industrial and information systems (ICIIS), pp 1–6
28.
Zurück zum Zitat Ye J, Wang FZ (2009) A refined plant growth simulation algorithm for distribution network reconfiguration. In: 2009 IEEE international conference on intelligent computing and intelligent systems. pp 357–361 Ye J, Wang FZ (2009) A refined plant growth simulation algorithm for distribution network reconfiguration. In: 2009 IEEE international conference on intelligent computing and intelligent systems. pp 357–361
29.
Zurück zum Zitat Sathish Kumar K, Jayabarathi T (2011) Power system reconfiguration and loss minimization for distribution systems using bacterial foraging optimization algorithm. Electr Power Energy Syst 36:13–17 Sathish Kumar K, Jayabarathi T (2011) Power system reconfiguration and loss minimization for distribution systems using bacterial foraging optimization algorithm. Electr Power Energy Syst 36:13–17
30.
Zurück zum Zitat Zhu IZ (2002) Optimal reconfiguration of electrical distribution networks using the refined genetic algorithm. Elect Power Syst Res 62:37–42CrossRef Zhu IZ (2002) Optimal reconfiguration of electrical distribution networks using the refined genetic algorithm. Elect Power Syst Res 62:37–42CrossRef
31.
Zurück zum Zitat Huang YC (2002) Enhanced genetic algorithm-based fuzzy multi objective approach to distribution network reconfiguration. Proc Inst Elect Eng 149(5):615–620 Huang YC (2002) Enhanced genetic algorithm-based fuzzy multi objective approach to distribution network reconfiguration. Proc Inst Elect Eng 149(5):615–620
32.
Zurück zum Zitat Kim H, Ko Y (1993) Artificial neural network based feeder reconfiguration for loss reduction in distribution systems. IEEE Trans Power Del 8(3):1356–1367CrossRef Kim H, Ko Y (1993) Artificial neural network based feeder reconfiguration for loss reduction in distribution systems. IEEE Trans Power Del 8(3):1356–1367CrossRef
33.
Zurück zum Zitat Zhu Z (2002) Optimal reconfiguration of electrical distribution networks using the refined GA. Electr Power Syst Res 62:37–84 Zhu Z (2002) Optimal reconfiguration of electrical distribution networks using the refined GA. Electr Power Syst Res 62:37–84
34.
Zurück zum Zitat Yasin ZM, Rahman TKA (2006) Network Reconfiguration in a power distribution system under fault condition with the presence of distributed generation. In: International conference on energy and environment (ICEE), 28–30 Aug 2006 Yasin ZM, Rahman TKA (2006) Network Reconfiguration in a power distribution system under fault condition with the presence of distributed generation. In: International conference on energy and environment (ICEE), 28–30 Aug 2006
35.
Zurück zum Zitat Olamie J, Niknam T, Gharehpetian G (2008) Application of particle swarm optimization for distribution feeder reconfiguration considering distributed generators. Appl Math Comput:575–586 Olamie J, Niknam T, Gharehpetian G (2008) Application of particle swarm optimization for distribution feeder reconfiguration considering distributed generators. Appl Math Comput:575–586
36.
Zurück zum Zitat Dahalan WM, Mokhlis H, Bakar A, Halim A, Jamian JJ (2013) The simultaneous application of optimum network reconfiguration and distributed generation sizing using PSO for power loss reduction. Optymalizacja rekonfiguracji sieci elektroenergetycznej i rozmiarów generatorów rozproszonych w redukcji strat energetycznych - zastosowanie algorytmu PSO. 89:137–141 Dahalan WM, Mokhlis H, Bakar A, Halim A, Jamian JJ (2013) The simultaneous application of optimum network reconfiguration and distributed generation sizing using PSO for power loss reduction. Optymalizacja rekonfiguracji sieci elektroenergetycznej i rozmiarów generatorów rozproszonych w redukcji strat energetycznych - zastosowanie algorytmu PSO. 89:137–141
Metadaten
Titel
A Combined DG Integration-Network Reconfiguration-Based Method for Network Loss Minimization and Voltage Profile Improvement
verfasst von
Deepak Porwal
Manoj Fozdar (SMIEEE)
Rajive Tiwari
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-4795-9_17