Back to Research papers
Research paper index

On the Observability and Controllability of Leaky-ReLU Networks

Liangjie Sun, Wai-Ki Ching, Shun-ichi Azuma, Tatsuya Akutsu

arXiv:2608.09059Published August 10, 20260 citations
  • eess.SY

Abstract

This paper studies minimum-node observability and controllability of Leaky rectified linear unit (Leaky-ReLU) networks under degree constraints. The objective is to characterize how many state nodes must be measured or directly actuated to determine the initial state from a finite output sequence or to steer the network between arbitrary states within a finite horizon. For observability, a graph-theoretic analysis yields a class-wide upper bound on the minimum number of observation nodes. We construct a family of networks attaining this bound, thereby determining the exact worst-case minimum number of observation nodes. We also construct networks that are observable from a single node over a finite horizon, establishing the exact best-case value of one. By establishing an observability--controllability duality under the corresponding degree constraints, we obtain analogous exact best- and worst-case results for the minimum number of control nodes. A comparison with ReLU networks shows how replacing the zero negative slope with a nonzero slope changes the observation-node requirement. More generally, the observability arguments require only injectivity of the activation function, whereas the controllability results extend to bijective activation functions.

Read the original paper

This page indexes public paper metadata. The manuscript remains with its original publisher and authors.