This paper deals with the stability of an event-based proportional-integral controller. In particular, necessary and sufficient conditions on the controller parameters for the existence of equilibrium points without limit cycles are given for a first-order-plus-dead-time process. Practical issues related to the controller implementation are also addressed. The presented conditions enable a simpler tuning of the controller. Simulation and experimental results are provided as illustrative examples
Fractional order calculus has been used to generalize various types of controllers, including intern...
In this paper we present simple and effective tuning formulas for PID controllers with guaranteed ph...
This study intends to present the systematic design procedure of stabilizing fractional order propor...
In this paper the design of an event-based proportional-integral (PI) control scheme for stable firs...
In this paper, a completely event-based two-degree-of-freedom proportional–integral controller is pr...
One of the issues in designing event-based proportional-integral (PI) controller using aggressive tu...
A new unified design of an event-based PID control architecture for self-regulating and integral pro...
In this paper we present a set of optimal tuning rules for fractional-order proportional-integral-de...
Abstract: PID Controller is used for tuning of three constants (P,I&D).It stabilize the system b...
In this paper, a complete event-based two-degree-of-freedom Proportional-Integral controller is pres...
The present study proposes a new design method for a proportional-integral-derivative (PID) control ...
This paper analyzes the fragility issue of fractional-order proportional-integral-derivative control...
Proportional-Integral-Derivative (PID) controllers are still extensively used in industrial systems....
Abstract-This paper derives proportional-integral (PI) control algorithms for first-order plants wit...
This paper deals with the H 8 model matching problem for fractional first-order-plus-dead-time proc...
Fractional order calculus has been used to generalize various types of controllers, including intern...
In this paper we present simple and effective tuning formulas for PID controllers with guaranteed ph...
This study intends to present the systematic design procedure of stabilizing fractional order propor...
In this paper the design of an event-based proportional-integral (PI) control scheme for stable firs...
In this paper, a completely event-based two-degree-of-freedom proportional–integral controller is pr...
One of the issues in designing event-based proportional-integral (PI) controller using aggressive tu...
A new unified design of an event-based PID control architecture for self-regulating and integral pro...
In this paper we present a set of optimal tuning rules for fractional-order proportional-integral-de...
Abstract: PID Controller is used for tuning of three constants (P,I&D).It stabilize the system b...
In this paper, a complete event-based two-degree-of-freedom Proportional-Integral controller is pres...
The present study proposes a new design method for a proportional-integral-derivative (PID) control ...
This paper analyzes the fragility issue of fractional-order proportional-integral-derivative control...
Proportional-Integral-Derivative (PID) controllers are still extensively used in industrial systems....
Abstract-This paper derives proportional-integral (PI) control algorithms for first-order plants wit...
This paper deals with the H 8 model matching problem for fractional first-order-plus-dead-time proc...
Fractional order calculus has been used to generalize various types of controllers, including intern...
In this paper we present simple and effective tuning formulas for PID controllers with guaranteed ph...
This study intends to present the systematic design procedure of stabilizing fractional order propor...