Damping Critical Electromechanical Oscillations via Generators Redispatch Considering ZIP Load Model and Transmission Lines Resistance

سال انتشار: 1404
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 30

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شناسه ملی سند علمی:

JR_JECEI-13-2_010

تاریخ نمایه سازی: 19 تیر 1404

چکیده مقاله:

kground and Objectives: This paper proposes a novel formula to calculate the sensitivities of electromechanical modes with respect to generators active power changes. The generic ZIP load model is considered and the effect of various types of loads on the best paradigm of generators redispatch (GR) is investigated. Furthermore, transmission lines resistance are modeled in the proposed formulae; and the best GR schemes to improve the power system damping with considering and neglecting transmission lines resistance are compared.Methods: Four energy functions are defined and the quadratic eigenvalue problem is applied to construct the framework of the proposed formula. The dynamic equation of the classical model of synchronous generators along with algebraic equations of power network considering transmission lines resistance and ZIP model of power system loads are written in a systematic manner using the partial differential of the energy functions. Then, set of equations of the power system are linearized and sensitivity factors are calculated using power system model parameters and power flow variables, which can be either obtained via state estimation or measured directly by phasor measurement units.Results: The ۳۹-bus New England power system is used to calculate sensitivities. The value of Sensitivity factors in conditions of considering transmission lines resistance and neglecting ones are compared and then the best GR plan to improve critical damping is determined. If all the loads are assumed to be in constant power mode, then for two modes with and without considering transmission lines resistance, generators pairs (۹,۱) and (۵,۲) are the best redispatch plans to damp oscillations. However, If all the loads are assumed to be in constant current mode, the best generators pair without considering transmission lines resistance mode does not change, although, it changes to generators pair (۵,۱) for the mode of considering transmission lines resistance.Conclusion: Using the classical model of synchronous generators does not give information about the damping-ratio of the inter-area mode and only estimates its frequency well. Besides, considering the load model and resistance of transmission lines change the best paradigm of GR to damp oscillations.

نویسندگان

M. Setareh

Faculty of Electrical Engineering, Shahid Beheshti University, Tehran, Iran.

A. Moradi Birgani

Faculty of Electrical Engineering, Shahid Beheshti University, Tehran, Iran.

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  • M. J. Gibbard, P. Pourbeik, D. J. Vowles, Small-signal stability, ...
  • N. Hatziargyriou et al., “Definition and classification of power system ...
  • P. M. Anderson, A. A. Fouad, Power system control and ...
  • M. G. Jolfaei, A. M. Sharaf, S. M. Shariatmadar, M. ...
  • D. Wang, N. Ma, M. Wei, Y. Liu, “Parameters tuning ...
  • M. Tadj et al., “Improved chaotic Bat algorithm for optimal ...
  • A. T. Moghadam, M. Aghahadi, M. Eslami, S. Rashidi, B. ...
  • J. Zhou, D. Ke, C. Y. Chung, Y. Sun, “A ...
  • T. Prakash, V. P. Singh, S. R. Mohanty, “A synchrophasor ...
  • H. Zhao, Z. Lin, Q. Wu, S. Huang, “Model predictive ...
  • W. Gao, R. Fan, R. Huang, Q. Huang, W. Gao, ...
  • R. Huang, W. Gao, R. Fan, Q. Huang, “A guided ...
  • W. Peres, N. N. da Costa, “Comparing strategies to damp ...
  • R. Huang, W. Gao, R. Fan, Q. Huang, “Damping inter-area ...
  • N. Nikolaev, K. Dimitrov, Y. Rangelov, “A comprehensive review of ...
  • J. L. Rodriguez-Amenedo, S. A. Gomez, “Damping low-frequency oscillations in ...
  • W. Li, D. Cai, S. Wu, G. Zhang, F. Zhang, ...
  • C. Yan, W. Yao, J. Wen, J. Fang, X. Ai, ...
  • M. Basu, J. Kim, R. M. Nelms, E. Muljadi, “Coordination ...
  • M. Hojabri, U. Dersch, A. Papaemmanouil, P. Bosshart, “A comprehensive ...
  • A. D. Femine, D. Gallo, C. Landi, M. Luiso, “A ...
  • J. Giri, “Proactive management of the future grid,” IEEE Power ...
  • J. E. Condren, T. W. Gedra, “Expected-security-cost optimal power flow ...
  • T. Weckesser, H. Johannsson, J. Ostergaard, “Real-time remedial action against ...
  • R. Zárate-Miñano, F. Milano, A. J. Conejo, “An OPF methodology ...
  • L. Yazdani, M. R. Aghamohammadi, “Damping inter-area oscillation by generation ...
  • S. Mendoza-Armenta, I. Dobson, “Applying a formula for generator redispatch ...
  • T. J. M. A. Parreiras, S. Gomes, G. N. Taranto, ...
  • H. Golzari-Kolur, S. M.-T. Bathaee, T. Amraee, “A sequential generation ...
  • M. Khaji, M. R. Aghamohammadi, “Emergency transmission line switching to ...
  • M. Setareh, M. Parniani, “Sensitivity-based optimal remedial actions to damp ...
  • Y. Li, G. Geng, Q. Jiang, W. Li, X. Shi, ...
  • H. Panahi, M. Abedini, M. Sanaye-Pasand, “Enhancing situation awareness by ...
  • K. N. Hasan, R. Preece, J. V. Milanovic, “Priority ranking ...
  • M. Setareh, M. Parniani, “Sensitivity-based generators redispatch to improve electromechanical ...
  • P. W. Sauer, M. A. Pai, J. H. Chow, Power ...
  • M. Bircan, A. Durusu, B. Kekezoglu, O. Elma, U. S. ...
  • K. Veselić, Damped oscillations of linear systems: A mathematical introduction, ...
  • F. Tisseur, K. Meerbergen, “The quadratic eigenvalue problem,” SIAM Rev., ...
  • I. Hiskens, “۳۹-bus system (New England Reduced Model),” IEEE PES ...
  • نمایش کامل مراجع