Pinched hysteresis behavior in a PID-controlled resistor
A current-controlled grounded resistor that exhibits a frequency-dependent pinched hysteresis loop is described. A mathematical model describing this behavior is derived and validated numerically, which has the form of a Proportional Integral-Derivative (PID) controller. The proposed topology is bui...
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Series: | Engineering Science and Technology, an International Journal |
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doaj-55053d37c39d419186ef45aafee2ffd42020-11-24T22:15:04ZengElsevierEngineering Science and Technology, an International Journal2215-09862018-06-01213297301Pinched hysteresis behavior in a PID-controlled resistorM.A. Carrasco-Aguilar0C. Sánchez-López1V.H. Carbajal-Gómez2Department of Electronics, Autonomous University of Tlaxcala Clzda, Apizaquito S/N, km. 1.5, Apizaco, Tlaxcala 90300, MexicoCorresponding author.; Department of Electronics, Autonomous University of Tlaxcala Clzda, Apizaquito S/N, km. 1.5, Apizaco, Tlaxcala 90300, MexicoDepartment of Electronics, Autonomous University of Tlaxcala Clzda, Apizaquito S/N, km. 1.5, Apizaco, Tlaxcala 90300, MexicoA current-controlled grounded resistor that exhibits a frequency-dependent pinched hysteresis loop is described. A mathematical model describing this behavior is derived and validated numerically, which has the form of a Proportional Integral-Derivative (PID) controller. The proposed topology is build by using AD844 commercially available active device configured as second-generation current conveyor and experimental tests are compared with numerical simulations, showing a good agreement among them. Moreover, the proposed PID-controlled resistor can be reconfigured in order to be used in future applications such as programmable analog circuits. Keyword: Pinched hysteresis, Current conveyors, Nonlinear resistor, Proportional-Integral-Derivative Controllerhttp://www.sciencedirect.com/science/article/pii/S2215098618302313 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
M.A. Carrasco-Aguilar C. Sánchez-López V.H. Carbajal-Gómez |
spellingShingle |
M.A. Carrasco-Aguilar C. Sánchez-López V.H. Carbajal-Gómez Pinched hysteresis behavior in a PID-controlled resistor Engineering Science and Technology, an International Journal |
author_facet |
M.A. Carrasco-Aguilar C. Sánchez-López V.H. Carbajal-Gómez |
author_sort |
M.A. Carrasco-Aguilar |
title |
Pinched hysteresis behavior in a PID-controlled resistor |
title_short |
Pinched hysteresis behavior in a PID-controlled resistor |
title_full |
Pinched hysteresis behavior in a PID-controlled resistor |
title_fullStr |
Pinched hysteresis behavior in a PID-controlled resistor |
title_full_unstemmed |
Pinched hysteresis behavior in a PID-controlled resistor |
title_sort |
pinched hysteresis behavior in a pid-controlled resistor |
publisher |
Elsevier |
series |
Engineering Science and Technology, an International Journal |
issn |
2215-0986 |
publishDate |
2018-06-01 |
description |
A current-controlled grounded resistor that exhibits a frequency-dependent pinched hysteresis loop is described. A mathematical model describing this behavior is derived and validated numerically, which has the form of a Proportional Integral-Derivative (PID) controller. The proposed topology is build by using AD844 commercially available active device configured as second-generation current conveyor and experimental tests are compared with numerical simulations, showing a good agreement among them. Moreover, the proposed PID-controlled resistor can be reconfigured in order to be used in future applications such as programmable analog circuits. Keyword: Pinched hysteresis, Current conveyors, Nonlinear resistor, Proportional-Integral-Derivative Controller |
url |
http://www.sciencedirect.com/science/article/pii/S2215098618302313 |
work_keys_str_mv |
AT macarrascoaguilar pinchedhysteresisbehaviorinapidcontrolledresistor AT csanchezlopez pinchedhysteresisbehaviorinapidcontrolledresistor AT vhcarbajalgomez pinchedhysteresisbehaviorinapidcontrolledresistor |
_version_ |
1725796240328753152 |