Download Wide area power system monitoring and control by Hassan Bevrani PDF

By Hassan Bevrani

Power method tracking and keep watch over (PSMC) is turning into more and more major within the layout, making plans, and operation of contemporary electrical energy platforms. in line with the prevailing problem of integrating complicated metering, computation, communique, and regulate into applicable degrees of PSMC, Power method tracking and Control provides a finished assessment of the fundamental rules and key applied sciences for the tracking, safeguard, and regulate of latest wide-area energy platforms. a number of topical matters are addressed, together with renewable strength assets, shrewdpermanent grids, wide-area stabilizing, coordinated voltage rules, and attitude oscillation damping—as good because the benefits of phasor dimension devices (PMUs) and worldwide positioning structures (GPS) time sign. End-of-chapter difficulties and suggestions, besides case reviews, upload intensity and readability to all subject matters. well timed and demanding, Power approach tracking and Control is a useful source for addressing the myriad of severe technical engineering concerns in sleek electrical strength procedure layout and operation.

• Provides an up-to-date and finished reference for researcher and engineers engaged on wide-area energy method tracking and keep an eye on (PSMC)

• Links basic techniques of PSMC, complex metering and regulate theory/techniques, and useful engineering considerations

• Covers PSMC challenge figuring out, layout, useful points, and well timed subject matters reminiscent of smart/microgrid keep an eye on and coordinated voltage rules and attitude oscillation damping

• Incorporates authors’ reviews educating and studying in a variety of foreign locales together with Japan, Thailand, Singapore, Malaysia, Iran, and Australia

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Extra resources for Wide area power system monitoring and control

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M. Anderson and A. A. Fouad, Power System Control and Stability, The Iowa State Univ. Press, Ames, IA, 1977. 10. I. J. Peez-Arriaga, G. C. Verghese, and F. C. Schweppe, Selective modal analysis with application to electric power systems, PART 1: Heuristic introduction, IEEE Trans. , 101(9), 3117–3125, 1982. 11. D. J. Trudnowski, Estimation electromechanical mode shape from synchrophasor measurements, IEEE Trans. , 23(3), 1188–1195, 2008. 12. C. Li, M. Watanabe, Y. Mitani, and B. Monchusi, Participation weight estimation in power oscillation mode based on synchronized phasor measurements and auto-spectrum analysis, IEEJ Trans.

11) 16 OSCILLATION DYNAMICS ANALYSIS BASED ON PHASOR MEASUREMENTS where W = exp( j2π/N) and m, n = 0, 1, . . , N 1. The procedure for filtering is to hold the Fourier transform X[m] of time series data x[n] corresponding to the frequencies of dominant modes and eliminate X[m] corresponding to the frequencies of other modes. 11). Note that this filter keeps the amplitude and the phase of extracted oscillations. The following steps summarize the procedure of the identification of the wide-area mode using a fast Fourier transform (FFT)-based filter, which provides a flexible determination method for the pass band.

A. R. Messina, Inter-area Oscillations in Power Systems: A Nonlinear and Nonstationary Perspective, Springer, 2009. 4. A. G. Phadke, Synchronized phasor measurements in power systems, IEEE Comput. Appl. Power, 6(2), 10–15, 1993. 5. J. Hauer, D. Trudnowski, G. Rogers, B. Mittelstadt, W. Litzenberger, and J. Johnson, Keeping an eye on power system dynamics, IEEE Comput. Appl. Power, 10(4), 50–54, 1997. 6. C. Rehtanz and D. Westermann, Wide area measurement and control system for increasing transmission capacity in deregulated energy markets, In: Proceedings of the 14th Power Systems Computation Conference, 2002.

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