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Optimal Portfolio of Distinct Frequency Response Services in Low-Inertia Systems

Luis Badesa, Fei Teng, Goran Štrbac

2020IEEE Transactions on Power Systems118 citationsDOIOpen Access PDF

Abstract

A reduced level of system inertia due to renewable integration increases the need for cost-effective provision of ancillary services, such as Frequency Response (FR). In this paper a closed-form solution to the differential equation describing frequency dynamics is proposed, which allows to obtain frequency-security algebraic constraints to be implemented in optimization routines. This is done while considering any finite number of FR services with distinguished characteristics, such as different delivery times and activation delays. The problem defined by these frequency-security constraints can be formulated as a Mixed-Integer Second-Order Cone Program (MISOCP), which can be efficiently handled by off-the-shelf conic optimization solvers. This paper also takes into account the uncertainty in inertia contribution from the demand side by formulating the frequency-security conditions as chance constraints, for which an exact convex reformulation is provided. Finally, case studies highlighting the effectiveness of this frequency-secured formulation are presented.

Topics & Concepts

InertiaMathematical optimizationConic sectionFrequency responseComputer scienceConic optimizationOptimization problemConvex optimizationDemand responseControl theory (sociology)Regular polygonMathematicsEngineeringConvex combinationArtificial intelligenceElectricityControl (management)PhysicsGeometryElectrical engineeringClassical mechanicsSmart Grid Energy ManagementElectric Power System OptimizationProbabilistic and Robust Engineering Design