English

On Supercapacitors Time-Domain Spectroscopy. C/R Characteristic Slope

Chemical Physics 2024-02-14 v2 Applied Physics

Abstract

A novel time-domain technique for supercapacitor characterization is developed, modeled numerically, and experimentally tested on a number of commercial supercapacitors. The method involves momentarily shorting a supercapacitor for a brief duration, denoted as τ\tau, and measuring first Idt\int Idt and second I2dt\int I^2dt moments of current along with the potential before and after shorting. The effective C(τ)C(\tau) and R(τ)R(\tau) are then obtained from charge preservation and energy dissipation invariants. A linear behavior in [R(τ),C(τ)][R(\tau),C(\tau)] parametric plot is observed by several orders of τ\tau. This gives a C/RC/R characteristic slope: how much ΔC\Delta C we can ``gain'' if we are ready to ``lose'' ΔR\Delta R in internal resistance. The C/RC/R characteristic slope characterizes possible energy and power properties of the device in terms of materials and technology used, this is a measure of supercapacitor perfection. The technique has been proven with experimental measurements and then validated through computer modeling, analytic analysis, and impedance spectroscopy on a number of circuit types: transmission line, binary tree, etc., a new n-tree element (nTE) is introduced. The approach offers an alternative to low-frequency impedance spectroscopy and methods outlined in the IEC 62391 standard. It provides valuable insights into the performance and characteristics of supercapacitors.

Keywords

Cite

@article{arxiv.2401.06409,
  title  = {On Supercapacitors Time-Domain Spectroscopy. C/R Characteristic Slope},
  author = {Dmitry Valentinovich Agafonov and Arina Romanovna Kuznetsova and Mikhail Evgenievich Kompan and Vladislav Gennadievich Malyshkin},
  journal= {arXiv preprint arXiv:2401.06409},
  year   = {2024}
}

Comments

The technique from arXiv:1908.02559 was extended to obtain R({\tau}). A generalization from [Re Z({\omega}),Im Z({\omega})] to [R({\tau}),C({\tau})] is the main concept of Time Domain Spectroscopy

R2 v1 2026-06-28T14:14:59.397Z