TY - JOUR
T1 - CHARACTERISTIC ANALYSIS OF FRACTIONAL-ORDER RLC CIRCUIT BASED ON THE CAPUTO-FABRIZIO DEFINITION
AU - Liao, Xiaozhong
AU - Yu, Donghui
AU - Lin, Da
AU - Ran, Manjie
AU - Xia, Jinhui
N1 - Publisher Copyright:
© 2022 World Scientific Publishing Company.
PY - 2022/6/1
Y1 - 2022/6/1
N2 - The Caputo-Fabrizio (C-F) definition, which solves the singularity problem in the Caputo definition, has been preliminarily applied in the field of circuit system modeling. However, the complex characteristics of the C-F definition-based circuit systems are still understudied. Therefore, this paper proposes a C-F definition-based fractional-order RLC (CF-FORLC) circuit model and analyzes its basic characteristics. First, the effects of different component orders on the performance parameters including the impedance, quality factor, and bandwidth are analyzed, which gives insights into the design of CF-FORLC. Then, the analytical solutions and the frequency-domain characteristics of CF-FORLC with different capacitance and inductance orders under arbitrary input are derived. Finally, the data of actual circuits are fitted to obtain the parameters of the CF-FORLC model, and the orders of the C-F definition-based capacitors and inductors are estimated. The results of the comparative experiments show that the proposed modeling scheme can improve the consistency of the dynamic performance of the model with that of the actual circuit. In addition, the proposed CF-FORLC model shows higher accuracy and flexibility with more adjustable parameters.
AB - The Caputo-Fabrizio (C-F) definition, which solves the singularity problem in the Caputo definition, has been preliminarily applied in the field of circuit system modeling. However, the complex characteristics of the C-F definition-based circuit systems are still understudied. Therefore, this paper proposes a C-F definition-based fractional-order RLC (CF-FORLC) circuit model and analyzes its basic characteristics. First, the effects of different component orders on the performance parameters including the impedance, quality factor, and bandwidth are analyzed, which gives insights into the design of CF-FORLC. Then, the analytical solutions and the frequency-domain characteristics of CF-FORLC with different capacitance and inductance orders under arbitrary input are derived. Finally, the data of actual circuits are fitted to obtain the parameters of the CF-FORLC model, and the orders of the C-F definition-based capacitors and inductors are estimated. The results of the comparative experiments show that the proposed modeling scheme can improve the consistency of the dynamic performance of the model with that of the actual circuit. In addition, the proposed CF-FORLC model shows higher accuracy and flexibility with more adjustable parameters.
KW - Caputo-Fabrizio Fractional Derivative
KW - Fractional-order RLC Circuit
KW - Impedance Analysis
KW - System Analytical Solution
UR - http://www.scopus.com/inward/record.url?scp=85129822151&partnerID=8YFLogxK
U2 - 10.1142/S0218348X22500785
DO - 10.1142/S0218348X22500785
M3 - Article
AN - SCOPUS:85129822151
SN - 0218-348X
VL - 30
JO - Fractals
JF - Fractals
IS - 4
M1 - 2250078
ER -