Active charge and discharge of a capacitor: scaling solution and energy optimization

Fuente: arXiv
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Autori principali: Faure, S., Plata, C. A., Prados, A., Guéry-Odelin, D.
Natura: Preprint
Pubblicazione: 2025
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author Faure, S.
Plata, C. A.
Prados, A.
Guéry-Odelin, D.
author_facet Faure, S.
Plata, C. A.
Prados, A.
Guéry-Odelin, D.
contents Capacitors are ubiquitous in electronic and electrical devices. In this article, we study -- both theoretically and experimentally -- the charging and discharging of capacitors using active control of a voltage source. The energy of these processes is analyzed in terms of work and heat. We show how to approach the quasistatic regime by slowing down the charging or discharging processes. Conversely, we study the price to be paid in terms of Joule heat when we speed up these processes. Finally, we develop optimal processes that minimize energy consumption for a finite charging time. Our work combines fundamental concepts from thermodynamics, classical mechanics and electrical circuits, thus blurring the artificial frontiers at the undergraduate level between these disciplines. Also, it provides a simple example of a prominent problem in current science, the optimization of energy resources. Moreover, our study lends itself well to an experimental project in the classroom, involving computer control of a voltage source, data acquisition, and processing.
format Preprint
id arxiv_https___arxiv_org_abs_2501_12028
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Active charge and discharge of a capacitor: scaling solution and energy optimization
Faure, S.
Plata, C. A.
Prados, A.
Guéry-Odelin, D.
Physics Education
Classical Physics
Capacitors are ubiquitous in electronic and electrical devices. In this article, we study -- both theoretically and experimentally -- the charging and discharging of capacitors using active control of a voltage source. The energy of these processes is analyzed in terms of work and heat. We show how to approach the quasistatic regime by slowing down the charging or discharging processes. Conversely, we study the price to be paid in terms of Joule heat when we speed up these processes. Finally, we develop optimal processes that minimize energy consumption for a finite charging time. Our work combines fundamental concepts from thermodynamics, classical mechanics and electrical circuits, thus blurring the artificial frontiers at the undergraduate level between these disciplines. Also, it provides a simple example of a prominent problem in current science, the optimization of energy resources. Moreover, our study lends itself well to an experimental project in the classroom, involving computer control of a voltage source, data acquisition, and processing.
title Active charge and discharge of a capacitor: scaling solution and energy optimization
topic Physics Education
Classical Physics
url https://arxiv.org/abs/2501.12028