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2026 Liu DC Microgrid Sensor Spoofing

Mengxiang Liu, Xin Zhang

2026ensensor spoofingcyber defencemicrogridsdistributed energyhierarchical controlcyber-physical systems

Abstract

Language:

In parallel to the cyber attack that manipulates the reference points of distributed energy resources (DERs) by maliciously accessing the remote monitoring and control system, the vulnerability of voltage/current sensors to electromagnetic interference (EMI) in the physical domain has been widely discussed. Existing research efforts against sensor spoofing attacks can be classified into physical prevention and cyber detection/mitigation. These defence methods each have strengths and weaknesses in balancing cost, security, and performance in a single DER, yet systematic research on their multi-layer efficient coordination across DERs remains limited. Towards this end, this paper proposes a hierarchical framework to detect and mitigate sensor spoofing attacks in networked DC microgrids (NMGs) via multi-layer cyber-physical coordination. It requires only to deploy physical prevention technologies at critical points, i.e., the local points of common coupling (PCC) of MGs, such that cyber detection/mitigation algorithms can be adopted based on the secured sensor readings to counter sensor spoofing attacks in DERs. The framework employs an MG-DER coordinated proactive detection scheme to strategically trigger parameter perturbations, under which the intelligent sensor spoofing attacks can be effectively disclosed. Afterwards, mitigation schemes based on MG-DER coordination are activated to recursively and accurately estimate sensor biases. Experiments on a cyber-physical DC NMG testbed confirm the framework’s effectiveness across diverse attack scenarios.

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Cite This Work

@article{bf95de76-128e-4f24-9d27-14f4530d9d5e,
  title={2026 Liu DC Microgrid Sensor Spoofing},
  author={Mengxiang Liu and Xin Zhang},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - 2026 Liu DC Microgrid Sensor Spoofing
AU  - Mengxiang Liu
AU  - Xin Zhang
PY  - 2026
LA  - en
ER  -

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