Tammaruckwattana, Sirichai
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Preferred name
Tammaruckwattana, Sirichai
Alternative Name
Tammaruckwattana, S.
Main Affiliation
Email
sirichai.ta@kmitl.ac.th
7 results
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Item type:Publication, Experimental Verification of Wind Power Generation System Using Diode Bridge Rectifier Circuit with Wind Turbine Simulator(2022-01-01); ;Reangkittakarn, Sitthaphat; Ohyama, Kazuhiro– This paper presents Wind Power Generation System using Diode Bridge Rectifier (WPGS-DBR method). Experimental results have been obtained by Wind Turbine Simulator (WTS). The WTS emulates wind turbine behavior using a servo motor as a drive system. Mechanical torque references used to drive the motor are calculated using wind turbine data such as wing blade, wind velocity, and wind turbine rotation speed. DBR method has three-mode control for three ranges of wind speed: low, medium, and high, respectively. In low and medium mode, the control system adjusts the armature current of a generator and DC link voltage with a Vector-Controlled Inverter (VCI) to control wind turbine speed. In high mode, the control system modulates the pitch angle of the wind turbine using a pitch angle control system for controlling wind turbine rotational speed. The DBR simplifies the maintenance of WPGS while improving reliability. In addition, the DBR method costs less compared with the WPGS using a PWM converter. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Emulation Technique for Wind Turbines Using Servo Motor and Induction Motor(2024-01-01); ;Taecharoenwiriyakun, Suriya; This paper proposes the emulation technique for wind turbines using two types of motor, servo motor, and induction motor. The focus is on simulating the work process of wind turbines at multi-wind velocity to test the capacity and efficiency of generating three-phase electricity. The wind turbine emulator was created by using a program and mechanical parts. The goal of this emulator is to check the efficiency of wind turbine blades at different wind speeds and to test the accuracy of the simulation method by using a different motor. The first emulator uses a 400-Watt synchronous generator from a wind turbine connected to a 400-Watt servo motor controlled by a servo amplifier. The second emulator uses a 400-Watt synchronous generator from a similar wind turbine connected to a 400-watt induction motor installed with an encoder controlled by an inverter. Motor torque is calculated by using mathematic equations from the LabVIEW program, and the data of the wind turbine blade is simulated by using the ANSYS program. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Low Wind Speed Wind Turbine Blade Design for Thailand(2020-01-01); ;Saengsuwan, NoppakoonRenewable energy is a reason why this study has been chosen. In this paper focused on an analysis of the characteristics of the wind when the wind turbine blade is encountered using a commercial fluid dynamics solver such as Fluent by selecting the impact angle of 5, -5, 10, 15, 20, -10, -15 and -20 degrees. Aerodynamic characteristics such as lift coefficient, drag coefficient, lift to drag ratio has been evaluated in this study. Fluent simulation results will be compared with the result of the milling airfoil tested in wind tunnel. Our goal is to a construction of wind turbine in low wind speed country like Thailand. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Wind Turbine Emulator for Wind Power Generation System(2022-05-01); ;Ruengkittrakarn, S.This paper proposes the wind turbine emulator for wind power generation systems. The focus is on simulation of the operation of wind turbines at different wind speeds to test the capacity and efficiency of generating three-phase electricity. The wind turbine emulator consists of a simulation program and a mechanical part. To simulate the power generation system of wind turbines, researchers use a 400-watt permanent magnet synchronous generator wind turbine connected to a 400-watt servo motor with a built-in absolute encoder and controlled by a servo driver. The motor's torque is controlled by data from mathematical equations in the MATLAB model. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Low wind speed wind turbine blade design for Thailand(2020-08-31); ;Saengsuwan, NoppakoonRenewable energy is a reason why this study has been chosen. In this paper focused on an analysis of the characteristics of the wind when the wind turbine blade is encountered using a commercial fluid dynamics solver such as Fluent by selecting the impact angle of 5, -5, 10, 15, 20, -10, -15 and -20 degrees. Aerodynamic characteristics such as lift coefficient, drag coefficient, lift to drag ratio has been evaluated in this study. Fluent simulation results will be compared with the result of the milling airfoil tested in wind tunnel. Our goal is to a construction of wind turbine in low wind speed country like Thailand. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Wind Tunnel Model for Natural Wind Velocity(2020-10-25) ;Taecharoenwiriyakun, Suriya; At the present time, the demand for energy in Thailand is increasing rapidly. Therefore, improving production efficiency is important in solving energy problems. According to the Alternative Energy and Alternative Energy Development Plan 2015-2036 in Thailand, the objectivity for wind power generation has increased dramatically. For this reason, the research team had the idea to create a wind tunnel with adjustable wind speed to mimic local wind speed in Thailand to be used in designing and analyzing wind turbine blade designs to suit various wind speeds. This can increase the efficiency of the production of energy even more. Wind speed adjustment or the pressure, lift and rotation speed measured can be done by a computer. By applying the PID control theory, it can precisely control the wind speed. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Commutation Methods of AC-AC Converter for Wind Power Generation System(2022-01-01); ;Kawpukdee, P.; ;Gullayanono, R.In this paper, the AC-AC converters using 2-step current commutation, 4-step current commutation, 2-step voltage commutation, 4-steps voltage commutation, and 3-steps voltage-current commutation will be used for a power converter system are proposed. The system is simulated and calculated with MATLAB/Simulink. This paper discusses each method, its difference, and its power loss.
