Introduces a multiport network framework for nonlinear stacked intelligent metasurfaces with closed-form linear analysis, fixed-point nonlinear evaluation, adjoint gradients, and O(QK^3) complexity under stage isolation, validated in a 28 GHz near-field localization case study showing improved error
Two-dimensional direction-of-arrival estimation using stacked intelligent metasurfaces,
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Necessary and sufficient conditions for controllability of generic reconfigurable EM devices are derived as a function of geometry and mutual coupling between elements.
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Stacked Intelligent Metasurfaces (SIM) in the Nonlinear Regime: A Multiport Network Model Approach
Introduces a multiport network framework for nonlinear stacked intelligent metasurfaces with closed-form linear analysis, fixed-point nonlinear evaluation, adjoint gradients, and O(QK^3) complexity under stage isolation, validated in a 28 GHz near-field localization case study showing improved error
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Necessary and sufficient conditions for controllability of generic reconfigurable EM devices are derived as a function of geometry and mutual coupling between elements.