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April 25, 2026Electricity0 citationsOpen Access

Distance Protection for Power Grids with Inverter-Based Resources: Challenges, Probable Solutions and Future Research Opportunities

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GSGajanan SarodeMBMangalkumar BhatkarSPSubhadeep Paladhi

Key Points

  • The aim is to explore the challenges of integrating inverter-based resources into distance protection strategies for power grids.
  • Leveraged simulations in PSCAD 5.0 software to analyze distance protection elements.
  • Reviewed fault classification techniques and impedance calculations with variations in inverter behavior.
  • Discussed operational limitations of power swing blocking schemes due to reduced grid inertia.
  • Distance protection schemes show unreliable performance due to differing fault behaviors of inverter-based resources.
  • The simulations reveal limitations in fault classification and impedance calculations in inverter-dominated settings.
  • Challenges and potential solutions are identified, guiding future research in improving distance protection algorithms.

Abstract

The proliferation of renewable energy resources has brought numerous challenges to conventional power systems, as grid integration is predominantly achieved through inverter-interfaced technologies such as photovoltaic (PV) plants and Type-IV wind turbines. Unlike synchronous generators (SGs), inverter-based resources (IBRs) exhibit fundamentally different fault behavior by limiting fault current magnitudes, typically within 1.0–1.2 per unit. Furthermore, the phase angle and sequence composition of the injected fault current are largely dictated by the inverter control strategy rather than by the network impedance. Consequently, distance protection schemes developed under assumptions of system homogeneity, a fixed source-to-impedance ratio (SIR), high fault current contribution, and large inertia may exhibit unreliable performance in inverter-dominated power networks. In this work, the influence of IBRs on key distance protection elements, such as starting elements, fault classification techniques, and impedance calculation with or without inter-feed, is reviewed and evaluated using simulations in PSCAD 5.0 software. Further, reduced grid inertia introduces operational limitations in power swing blocking (PSB) schemes, which are discussed in this paper. This work presents an overview of IBR fault responses and critically summarizes prior work on distance protection in IBR-dominated grids, highlighting key challenges, probable solutions, and the current research status to enhance understanding for further research.

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Cite This Study

Sarode et al. (2026) studied this question.

synapsesocial.com/papers/69ec5a4488ba6daa22dabdb5https://doi.org/10.3390/electricity7020037
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