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Security-Constrained Unit Commitment Con-sidering Locational Frequency Stability in Low-Inertia Power Grids

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arxiv 2110.11498 v3 pith:DFGHQE5S submitted 2021-10-21 eess.SY cs.SY

Security-Constrained Unit Commitment Con-sidering Locational Frequency Stability in Low-Inertia Power Grids

classification eess.SY cs.SY
keywords systemrocofstabilityconstraintscostfrequencypowercommitment
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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With increasing installation of wind and solar generation, conventional synchronous generators in power systems are gradually displaced resulting in a significant reduction in system inertia. Maintaining system frequency within acceptable ranges becomes more critical for the stability of a power system. In this paper, we first study the impact of inter-area oscillations on the system rate-of-change-of-frequency (RoCoF) security; then, the limitations on locational RoCoFs accounting for G-1 contingency stability are derived. By enforcing these frequency related constraints, a location based RoCoF constrained security constrained unit commitment (LRC-SCUC) model is proposed. Furthermore, an effective piecewise linearization (PWL) technique is employed to formulate a RoCoF linearization problem and linearize the nonlinear function representing the location based RoCoF constraints in SCUC. Simulation results reveal that the inclusion of inertia-related constraints can substantially improve the system stability at the cost of higher operation cost. The results also show that deploying virtual inertia techniques not only reduces the total cost, but also improves the system market efficiency.

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