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Optimal Control of an Electromechanical Energy Harvester

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arxiv 2501.07735 v1 pith:MO6VRWQA submitted 2025-01-13 cond-mat.stat-mech

Optimal Control of an Electromechanical Energy Harvester

classification cond-mat.stat-mech
keywords controloptimalharvesterstochasticsystemaverageenergyfunction
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Many techniques originally developed in the context of deterministic control theory have been recently applied to the quest for optimal protocols in stochastic processes. Given a system subject to environmental fluctuations, one may ask what is the best way to change in time its controllable parameters in order to maximize, on average, a certain reward function, while steering the system between two pre-assigned states. In this work we study the problem of optimal control for a wide class of stochastic systems, inspired by a model of energy harvester. The stochastic noise in this system is due to the mechanical vibrations, while the reward function is the average power extracted from them. We consider the case in which the electrical resistance of the harvester can be changed in time, and we exploit the tools of control theory to work out optimal solutions in a perturbative regime, close to the stationary state. Our results show that it is possible to design protocols that perform better than any possible solution with constant resistance.

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