A novel low-cost solution for mitigating the loss of power supply probability in grid-tied Solar PV systems during daytime grid-outage scenario

Hiranmay Samanta, ANKUR BHATTACHARJEE, Tuhin Kumar Barui, Chayan Bandyopadhyay, Konika Das Bhattacharya, Samarjit Sengupta, Hiranmay Saha

Abstract


In this paper, a novel method has been proposed and implemented to mitigate the loss of power from grid-connected solar PV systems during the grid outage condition. This loss during daytime grid outages usually occurs because of the built-in islanding feature of the commercially available grid-tied inverters. Unlike other existing grid outage mitigation methods such as; using the expensive hybrid inverters and other battery backup inverters, the proposed method introduces a battery-less topology which can avoid the significant cost of battery pack itself and associated auxiliary control circuits, its operation and maintenance. An optimized low capacity (around 5% of grid-tied inverter rating) DC-AC interface system in the form of a stand-alone inverter has been introduced to provide the reference AC bus for keeping the grid-tied solar inverter operational even during the daytime grid outage. The interface system is energized from a solar PV-powered DC bus instead of the commonly used high-capacity battery backup. The method also ensures the maximum available energy extraction from a grid-connected solar PV Plant without renovating the existing grid-tied solar inverters. The experimental validation has been done by a practical 2kWp grid-tied inverter and a 200VA stand-alone inverter interfaced solar PV system operation and control under sunny and cloudy day scenario. The proposed low-cost grid outage mitigation method is a generalized one and hence can be very useful for scalable grid-connected solar PV power plants also.

Keywords


Grid outage; Energy outage mitigation; Scheduling of inverters; Demand management

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References


H.O.R. Howlader, M.M. Sediqi, A.M. Ibrahimi and T. Senjyu, “Optimal thermal unit commitment for solving duck curve problem by introducing csp, psh and demand response,” IEEE Access, vol. 6, pp. 4384-44, Jan. 2018.

K.A. Kumar, M.P. Selvan and K. Rajapandiyan, “Dynamic grid support system for mitigation of impact of high penetration solar PV into grid,” presented at 2017 7th International Conference on Power Systems (ICPS), pp. 646–52, Dec. 2018.

N.B.G. Brinkel, M.K. Gerritsma, T.A. AlSkaif, I. Lampropoulos, A.M. van Voorden, H.A. Fidder and W.G.J.H.M.van Sark, “Impact of rapid PV fluctuations on power quality in the low-voltage grid and mitigation strategies using electric vehicles,” International Journal of Electrical Power & Energy Systems, vol. 118, 105741, Jun. 2020.

H.C. Gils, S. Bothor, M. Genoese and K.K. Cao, “Future security of power supply in Germany—The role of stochastic power plant outages and intermittent generation,” International Journal of Energy Research, 42(5), pp. 1894-1913, Jan. 2018.

R. Torabi, A. Gomes and F. Morgado-Dias, “The Duck Curve Characteristic and Storage Requirements for Greening the Island of Porto Santo,” 2018 Energy and Sustainability for Small Developing Economies (ES2DE), vol. 1, pp. 13-20, Jul .2018.

S.S. Ahmad, F.S. Al-Ismail, A.A. Almehizia and M. Khalid, “Model Predictive Control Approach for Optimal Power Dispatch and Duck Curve Handling Under High Photovoltaic Power Penetration,” IEEE Access, vol. 8, pp. 186840–50, Oct. 2020.

D. Patel, A.K. Goswami and S.K. Singh, “Voltage sag mitigation in an Indian distribution system using dynamic voltage restorer,” International Journal of Electrical Power & Energy Systems, vol. 71, pp. 231-241, Oct. 2015.

S. Liu, H. Deng and S. Guo, “Analyses and Discussions of the Blackout in Indian Power Grid,” Energy Science and Technology, vol. 6, pp. 61-6, Jan. 2013.

Y. Xue and S. Xiao. “Generalized congestion of power systems: insights from the massive blackouts in India,” Journal of Modern Power Systems and Clean Energy, vol. 1(2), pp. 91-100, Sep. 2013.

Mubashir Hayat Khan, Shamsul Aizam Zulkifli, Ronald Jackson, Elhassan Garba, Nadia Zeb,, “Decentralized Adaptive-Virtual-Impedance-Based Predictive Power for Mismatched Feeders in Islanded Microgrids,” Int. J. Renew. Energy Res., Vol.12, No.2, June 2022.

G.A. Smith, P.A. Onions and D.G. Infield, “Predicting islanding operation of grid connected PV inverters,” vol. 147(1), pp. 1-6, Jan. 2000.

K.N.E. Ku Ahmad, J. Selvaraj and N.A. Rahim, “A review of the islanding detection methods in grid-connected PV inverters,” Renewable and Sustainable Energy Reviews, vol. 21, pp. 756-766, May 2013.

J. Kaushal and P. Basak, “Power quality control based on voltage sag/swell, unbalancing, frequency, THD and power factor using artificial neural network in PV integrated AC microgrid,” Sustainable Energy, Grids and Networks, vol. 23, pp. 100365, Sep. 2020.

B.K. Santhoshi, K.M. Sundaram, S. Padmanaban, J.B. Holm-Nielsen and K.K. Prabhakaran, “Critical review of PV grid-tied inverters,” Energies, vol. 12(10), pp. 1921, May 2019.

António Manzoni, Rui Castro, “Real-Time Implementation of Energy Management for Photovoltaic/Battery/Diesel Hybrid System Based on LabVIEW,” Int. J. Renew. Energy Res., Vol.6, No.1, 2016.

R.G. Wandhare and V. Agarwal, “Reactive power capacity enhancement of a PV-grid system to increase PV penetration level in smart grid scenario,” IEEE Transactions on Smart Grid, vol. 5(4), pp. 1845 – 1854, Apr. 2014.

M.K. Mishra and V.N. Lal, “An improved methodology for reactive power management in grid integrated solar PV system with maximum power point condition,” Solar Energy, vol. 199, pp. 230-245, Mar. 2020.

L. Wu, Z. Zhao and J. Liu, “A single-stage three-phase grid-

connected photovoltaic system with modified MPPT method and reactive power compensation,” IEEE Transactions on Energy Conversion, vol. 22(4), pp. 881-886, Nov. 2007.

J.P. Roselyn, C.P. Chandran, C. Nithya, D. Devaraj, R. Venkatesan, V. Gopal and S. Madhura, “Design and implementation of fuzzy logic based modified real-reactive power control of inverter for low voltage ride through enhancement in grid connected solar PV system,” Control Engineering Practice, vol. 101, pp. 104494, Aug. 2020.

M. Sandelic, A. Sangwongwanich and F. Blaabjerg, “Reliability evaluation of PV systems with integrated battery energy storage systems: DC-coupled and AC-coupled configurations,” Electronics, vol. 8(9), pp. 1059, Sep. 2019.

N.S.S. Mohamed, A.M. Omar and A.H. Faranadia, “Assessment of AC coupling PV hybrid system in Malaysia,” presented at 2014 IEEE 5th Control and System Graduate Research Colloquium, pp. 19-24, Sep. 2014.

N. DiOrio, P. Denholm and W.B. Hobbs, “A model for evaluating the configuration and dispatch of PV plus battery power plants,” Applied Energy, vol. 262, pp. 114465, Dec. 2019.

T. Khatib, I.A. Ibrahim and A. Mohamed, “A review on sizing methodologies of photovoltaic array and storage battery in a standalone photovoltaic system,” Energy Conversion and Management, vol. 120, pp. 430-448, Jul. 2016.

I. Ranaweera and O.M. Midtgård, “Optimization of operational cost for a grid-supporting PV system with battery storage,” Renewable Energy, vol. 88, pp. 262-272, Apr. 2016.

V. Salas, W. Suponthana and R.A. Salas, “Overview of the off-grid photovoltaic diesel batteries systems with AC loads,” Applied Energy, vol. 157, pp. 195-216, Nov. 2015.

V.T. Tran, M.R. Islam, D. Sutanto and K.M. Muttaqi, “Mitigation of Solar PV Intermittency Using Ramp-Rate Control of Energy Buffer Unit,” IEEE Transactions on Energy Conversion, vol. 34(1), pp. 435-445, Oct. 2019.

Z. Yuan, W. Wang, H. Wang and A. Yildizbasi, “A new methodology for optimal location and sizing of battery energy storage system in distribution networks for loss reduction,” Journal of Energy Storage, vol. 29, pp. 101368, Jun. 2020.

Y. Jiang, L. Kang and Y. Liu, “A unified model to optimize configuration of battery energy storage systems with multiple types of batteries,” Energy, vol. 176, pp. 552-560, Jun. 2019.

Doaa M. Atia, Hanaa T. El-Madany, Yousry Atia, Mohamed B. Zahran, “Real-Time Implementation of Energy Management for Photovoltaic/Battery/Diesel Hybrid System Based on LabVIEW,” Int. J. Renew. Energy Res., Vol.12, No.2, June, 2022.

J. Hu, Y. Shan, Y. Xu and J.M. Guerrero, “A coordinated control of hybrid ac/dc microgrids with PV-wind-battery under variable generation and load conditions,” International Journal of Electrical Power & Energy Systems, vol. 104, pp. 583-592, Jan. 2019.

M. Bajaj and A.K. Singh, “Grid integrated renewable DG systems: A review of power quality challenges and state-of-the-art mitigation techniques,” vol. 44(1), pp. 26-69, Sep. 2019.

A. Pachanawan, S. Chuan-Udom, K. Saengprachatanarug and S. Wongpichet, “Electrical energy consumption and energy conservation of rice mills in the Northeastern of Thailand,” Engineering Journal, vol. 21(4), Jul. 2017.

S.K. Goyal, S.V. Jogdand and A.K. Agrawal, “Energy use pattern in rice milling industries—a critical appraisal,” Journal of Food Science and Technology, vol. 51, pp. 2907–2916, Jun. 2014.

S. Azimi and V. Rocher, “Energy consumption reduction in a waste water treatment plant,” Water Practice & Technology, vol. 12(1), Mar. 2017.

A. Tuladhar, H. Jin, T. Unger and K. Mauch, “Control of parallel inverters in distributed AC power systems with consideration of line impedance effect,” IEEE Transactions on Industry Applications, vol. 36(1), pp. 131-138, Jan. 2000.

M.C. Chandorkar, D.M. Divan and R. Adapa, “Control of parallel connected inverters in standalone ac supply systems,” IEEE Transactions on Industry Applications, vol. 29(1), pp. 136-143, Jan. 1993.

A. Tuladhar, H. Jin, T. Unger and K. Mauch, “Parallel operation of single phase inverter modules with no control interconnections,” presented at Proceedings of APEC 97 - Applied Power Electronics Conference, Aug. 2002.

T. Kawabata and S. Higashino, “Parallel Operation of Voltage Source Inverters,” IEEE Transactions on Industry Applications, vol. 24(2), pp. 281-287, Mar. 19

M. Parvez, M. F. M. Elias & N. A. Rahim, “Analysis of Current Harmonics Compensation and the Effect of Frequency Variation for Single-Phase Stand-Alone PV Inverters using PR Controller”, IETE Journal of Research, Aug. 2017

D. Kumar, R. Akhil Raj, Rajesh Kumar Nema & Savita Nema “A Novel Higher Level Symmetrical and Asymmetrical Multilevel Inverter for Solar Energy Environment”, IETE Journal of Research, Jun. 2020.

Patent: Saha Prof. Hiranmay, Bhattacharjee Dr. Ankur, Samanta Sri Hiranmay “Method and Device for Energy Outage Mitigation of Grid-Tied Solar Power Plant During Grid Failure (Application no.:201931000104, dated 02.01.2019)” Pub.: July, 2020




DOI (PDF): https://doi.org/10.20508/ijrer.v13i1.13350.g8665

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