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Analysis of Diyala Power Network for the Distributed Feeders Between Iraq and Iran: 132 kV Baquba-Sarbilzahab


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DOI: https://doi.org/10.15866/iree.v14i5.17122

Abstract


The quality of the delivered electrical power and the efficiency of power supply systems are the responsible of control centers without changing or adding new lines. This paper represents the process of developing the performance of the power transmission system (132 kV) network in Diyala province/ Iraq. The most important developments in the network are focused on reducing the losses of real and reactive power, and reducing the power flow of transmission lines that loaded with electrical loads higher than its rated limits, and control on buses voltages in the network so that its value does not pass accepted values. In this paper, MATLAB Simulink software and the POWERWORLD software have been used for the analysis of the power system network allocated to study. The results of the model of the power system show the accomplishment and the fulfillment of the proposed SVC and TCSC on the set of objectives mentioned above to be developed in the power transmission system (132 kV) network of Diyala/Iraq. This paper focuses on the distribution FEEDER, Distribution Automation System, controlling and monitoring the distribution system and the FEEDERS. Currently, the supervisory and data acquisition (SCADA) system is mainly used at generation and transmission side (high voltage side) in TNB. The SCADA analyzes data from the electrical equipment at the substation, in TNB SCADA; it has no information about the electrical parameters directly from the distribution side. The purpose of this paper is to operate, monitor, activate and de-activate the feeder in order to operate with the help of Remote Terminal Unit (RTU) and control by programmable logic control (PLC) and simulation of this paper has been done by using Cx-one (Cx-supervisor and cx-programmer) program for implementation.
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Keywords


Cx-one; SCADA; PLC; Distribution Feeder

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References


D. A. M. Montaña, D. F. C. Rodriguez, D. Ivan Clavijo Rey and G. Ramos, Hardware and Software Integration as a Realist SCADA Environment to Test Protective Relaying Control, in IEEE Transactions on Industry Applications, vol. 54, no. 2, pp. 1208-1217, March-April 2018.
https://doi.org/10.1109/tia.2017.2780051

Sossan, Fabrizio, et al. Achieving the dispatchability of distribution feeders through prosumers data driven forecasting and model predictive control of electrochemical storage. IEEE Transactions on Sustainable Energy, 2016, 7.4: 1762-1777.‏
https://doi.org/10.1109/tste.2016.2600103

Ding, Fei; Mather, Barry; Gotseff, Peter. Technologies to increase PV hosting capacity in distribution feeders. In: IEEE Power and Energy Society General Meeting (PESGM). IEEE, 2016. p. 1-5.‏
https://doi.org/10.1109/pesgm.2016.7741575

Ramírez-Rosado, Ignacio J., and José Antonio Domínguez-Navarro. New multiobjective tabu search algorithm for fuzzy optimal planning of power distribution systems. IEEE Transactions on Power systems 21.1 (2006): 224-233.‏
https://doi.org/10.1109/tpwrs.2005.860946

Schneider, K. P., et al. Analytic considerations and design basis for the IEEE distribution test feeders. IEEE Transactions on Power Systems 33.3 (2017): 3181-3188.‏

Syahputra, Ramadoni. Distribution network optimization based on genetic algorithm. Journal of Electrical Technology UMY, 2017, 1.1: 1-9.‏.‏

Abdelaziz, Morad. Distribution network reconfiguration using a genetic algorithm with varying population size. Electric Power Systems Research, 2017, 142: 9-11.‏
https://doi.org/10.1016/j.epsr.2016.08.026

Ameli, Amir, et al. A dynamic method for feeder reconfiguration and capacitor switching in smart distribution systems. International Journal of Electrical Power & Energy Systems, 2017, 85: 200-211.‏
https://doi.org/10.1016/j.ijepes.2016.09.008

P. Basak, S. Chowdhury, S.H. nee Dey, and S.P. Chowdhury, A literature review on integration of distributed energy resources in the perspective of control, protection and stability of microgrid, Renewable and Sustainable Energy Reviews, pp. 5545-5556, 2016.
https://doi.org/10.1016/j.rser.2012.05.043

G. A. Salman, H. I. Hussein, and M. S. Hasan, Enhancement The Dynamic Stability of The Iraq's Power Station Using PID Controller Optimized by FA and PSO Based on Different Objective Functions, Elektrotehniski Vestnik-Electrochemical Review, pp. 42-48 (2018).

Salyani, Pouya, Javad Salehi, and Farhad Samadi Gazijahani. Chance constrained simultaneous optimization of substations, feeders, renewable and non-renewable distributed generations in distribution network. Electric Power Systems Research 158 (2018): 56-69.‏
https://doi.org/10.1016/j.epsr.2017.12.032

D. L. Goodwin, and I. Kuprov, Modified Newton-Raphson GRAPE methods for optimal control of spin systems, The Journal of chemical physics, pp. 204107, 2016.
https://doi.org/10.1063/1.4949534

M. S. Khan, A. Nazir, and W. Nazeer, Iterative method for solving nonlinear functions with convergence of order four, Sci. Int.(Lahore), 2016, pp. 77-81.

P. Jokar, N. Arianpoo, and V.C.M. Leung, A survey on security issues in smart grids, Security and Communication Networks, pp. 262-273.
https://doi.org/10.1002/sec.559

H. I. Hussein, G.A. Salman, and M.S. Hasan, Phase Measurement Units based FACT's Devices for the Improvement of Power Systems Networks Controllability, International Journal of Electrical & Computer Engineering (2088-8708), (2018).
https://doi.org/10.11591/ijece.v8i2.pp888-899

Matej Cenký, Jozef Bendík, Žaneta Eleschová Advanced methods for computation of electrical parameters for overhead transmission lines Journal of Electrical Engineering, pp. 143-147, 2017.
https://doi.org/10.1515/jee-2017-0020

Pinault, Lauren, et al. Risk estimates of mortality attributed to low concentrations of ambient fine particulate matter in the Canadian community health survey cohort. Environmental Health, 2016, 15.1: 18.‏
https://doi.org/10.1186/s12940-016-0111-6

G. A. Salman, Implementation SVC and TCSC to Improvement the Efficacy of Diyala Electric Network (132 kV), American Journal of Engineering Research (AJER), pp. 163-170, (2017).

J. J. Goeman, L1 penalized estimation in the Cox proportional hazards model, Biometrical journal, pp. 70-84 (2010).

Nazeer, Waqas, et al. Generalized Newton Raphson's method free from second derivative. J. Nonlinear Sci. Appl. 9 (2016), 2823, 2016, 2831.‏
https://doi.org/10.22436/jnsa.009.05.77

Tah, Avisha; Das, Debapriya. Novel analytical method for the placement and sizing of distributed generation unit on distribution networks with and without considering P and PQV buses. International Journal of Electrical Power & Energy Systems, 2016, 78: 401-413.‏
https://doi.org/10.1016/j.ijepes.2015.12.009

Zidar, Matija, et al. Review of energy storage allocation in power distribution networks: applications, methods and future research. IET Generation, Transmission & Distribution, 2016, 10.3: 645-652.‏
https://doi.org/10.1049/iet-gtd.2015.0447

Hedayati, M., Bashi, S., Mariun, N., Hizam, H., A Short Review of Different Optimal H∞ Robust FACTS Controller Designs, (2018) International Journal on Engineering Applications (IREA), 6 (6), pp. 187-195.
https://doi.org/10.15866/irea.v6i6.16996

Rami Reddy, B., Sujatha, P., Siva Reddy, Y., Interline Power Flow Controller (IPFC) to Improve the Voltage Stability and Contingency Analysis in Power System, (2016) International Review of Electrical Engineering (IREE), 11 (1), pp. 109-115.
https://doi.org/10.15866/iree.v11i1.6790

Jafari, H., Mahmoudi, M., Ahmadkhani, F., A Complementary SVC-Based Controller Design for Damping Both Local and Inter-Area Oscillating Modes Using NSGA-II Algorithm, (2016) International Review of Electrical Engineering (IREE), 11 (1), pp. 69-77.
https://doi.org/10.15866/iree.v11i1.7607

Kanchanaharuthai, A., Boonyaprapasorn, A., A Backstepping-Like Approach to Coordinated Excitation and STATCOM Control for Power Systems, (2016) International Review of Automatic Control (IREACO), 9 (2), pp. 64-71.
https://doi.org/10.15866/ireaco.v9i2.8405


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