Affiliation:
1. Chulachomklao Royal Military Academy
2. Nacres Co., Ltd
3. King Mongkut’s University of Technology North Bangkok
4. Sirindhorn International Institute of Technology, Thammasat University
Abstract
Abstract
Sugarcane is an important agricultural commodity in economics that has been harmed by the invasion of sugarcane borer. Establishing a biological pest control strategy for sugarcane using their natural enemies can both protect agricultural products from pest invasion and the environment from chemical toxicity. In this regard, feedback control emerges as a practical and feasible approach to effectively implement the biological control strategy for managing the sugarcane borer. In this work, the terminal synergetic controller was designed to develop the control strategy containing multiple inputs. The controller design was conducted based on the pest-parasitoid model. In the design procedure, the auxiliary system was employed to compensate for the input saturation effects. The control ecosystem stability was conducted through the Lyapunov stability theorem. To confirm the capability and performance of the proposed strategy, the simulation results show that the proposed strategy has the capability to regulate pest population densities at the desired level, akin to the conventional sliding mode control strategy. However, what sets it apart is that the terminal synergetic controller provides the preferable characteristics for controlling the sugarcane borer population which are the finite-time convergence of the control system, and the absence of chattering phenomena in the control inputs.
Publisher
Research Square Platform LLC
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