Jettanasen, Chaiyan
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Preferred name
Jettanasen, Chaiyan
Alternative Name
Jettanasen, C.
Main Affiliation
Email
chaiyan.je@kmitl.ac.th
52 results
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Item type:Publication, Influence of power shielded cable and ground on distribution of common mode currents flowing in variable-speed AC motor drive systems(2010-08-02)Parasitic common mode (CM) currents unavoidably generated by power converters, in particular PWM inverters, which are widely used in variable-speed AC motor drives in many industrial applications, causes many Electromagnetic Compatibility (EMC) problems. In order to reasonably solve these problems, the understanding of behavior and the knowledge of propagation path of CM currents flowing through the system are indispensable. This paper presents an investigation on influence of power shielded cable length and its position in comparison to ground and on ground effect. These two elements are very important to make CM currents flowing to other parts of the system, especially through the motor. Measurement of the proportion of CM currents returning to CM voltage source via ground and cable shield connected at motor terminal in various configurations, in frequency domain, is carried out to illustrate which propagation path is preferred in the considered frequency range. This allows us to apply an appropriate method to restrict or eliminate CM currents in the desired frequency range. An analytical model corresponding to this experiment will be also established; its results will be compared with the measured ones. The validated model could be later used to predict proportion of CM currents distributed in the system for other configurations. © 2010 IEEE. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Coefficient comparison technique of discrete wavelet transform for discriminating between external short circuit and internal winding fault in power transformer(2012-01-01); ; ;Klomjit, J.This paper proposes a technique for detecting and identifying internal winding fault of three-phase two-winding transformer which variations of coefficients of high frequency component obtained from DWT of differential current are analyzed. The maximum coefficient details of DWT are performed as comparison indicator in order to discriminate between internal fault and external short circuit. Various cases based on Thailand electricity transmission and distribution systems are studied to verify the validity of the proposed algorithm. Results show that the proposed technique has good accuracy to detect fault and to identify its position in the considered system. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Mitigation of conducted and radiated EMI generation in high-frequency switching devices(2015-01-01) ;Sripodok, P.The purpose of this paper is to investigate the electromagnetic interference (EMI) propagation paths and how to mitigate these generated high-frequency noises in high-frequency switching devices. Both conducted and radiated EMI can be produced when the devices are in operation. This results in restriction of power electronic devices' evolution. In order to effectively reduce EMI generation or overcome EMI problems, an Electromagnetic Compatibility (EMC) regulation should be applied. The conformity to the standard will guarantee the performance and the compatibility of the electrical/electronic devices/equipments to be employed or installed in the sensitive electromagnetic environment. The EMC standard is defined in the frequency range of ISO kHz to 1 GHz: 150 kHz to 30 MHz for conducted emission measurement and 30 MHz to 1GHz for radiated emission one. A switching device connecting to tuner kit (FM radio) is herein focused as an EMI source. The generated noises will be reduced by using grounding and shielding methods. The obtained results will be compared with an EMC standard (EN55022 class B) in order to reveal the effectiveness of the applied EMI mitigation techniques. The analysis and experimental results finally show that the conducted emission can be diminished by using multi-point grounding whereas the radiated emission is effectively reduced by using single-point grounding and shielding, in particular at high frequencies. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Study of harmonics issued from electronic ballast used to reduce energy consumption in Thailand's building(2014-01-01); In 2009, the T5 fluorescent tube lamp with electronic ballast was launched by the Electricity Generating Authority of Thailand (EGAT) in order to reduce energy consumption in building. The ballast is one of major components of fluorescent lamp. The installation of T5 fluorescent lamp in building has the effect of harmonics. This paper investigated the impact of harmonics from various electronic ballasts existing commercially, and compared with conventional ballast. The obtained results show that the T5 fluorescent tube lamp functioning with electronic ballast is a promising candidate to replace the T8 fluorescent tube lamp with electromagnetic and low watt loss ballast in building. © 2014 IEEE. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Performance and electromagnetic compatibility of a photovoltaic power converter(2017-07-02); This study aims to evaluate the performance of DC-DC converter in photovoltaic system. Electromagnetic compatibility (EMC) characteristics, issues and its effect on photovoltaic power converter are performed and taken into consideration. ĆUK converter has been built in this research. The proposed filter circuit is also created and integrated in ĆUK converter in photovoltaic system, and tested in field testing. The EN 55011 standard has been applied as a reference in order to verify the performance of the proposed filter circuit in terms of Electromagnetic Interference (EMI) reduction in actual application. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, An Evaluation Study on Electric Appliance Characteristics and Load Patterns in Residential Buildings(2026-01-01) ;Thongsuk, Surakit ;Songsukthawan, Panapong; ;Sottiyaphai, ChayanutEnergy usage in residential buildings has been constantly increasing as work-from-home trends continue to maintain popularity. To improve energy efficiency, the load profile and electric appliances in households need to be established and analyzed. This study aims to evaluate the characteristics of electric appliances that are commonly used in residential buildings under various operating conditions. An experimental setup with household electric appliances was built, and power quality meters were installed to assess the patterns under various operating conditions. In addition, the usage patterns were used to construct the daily load profile and analyze the energy consumption in residential buildings. The results demonstrate that load patterns constructed from actual measurements can achieve an accurate depiction of energy usage in residential buildings. The obtained load profile can be used in load control to improve energy efficiency and the application of renewable energy in demand reduction. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Generation and storage of electrical energy from piezoelectric materials(2017-07-25) ;Songsukthawan, PanapongThe electrical energy generation and storage from piezoelectric materials are focused and discussed in this paper. This kind of materials is able to directly convert mechanical energy into electrical one, which can be later stored by utilizing energy harvesting technique/circuit. The energy conversion from ambient vibration is indeed nowadays fascinating research area. Due to the compatibility to integrate with electronics and microsystem with high voltage and supporting standalone circuit, it is the most popular electromechanical transducer materials for low power consumption applications, such as wireless and sensors. This paper focuses how to extract energy from piezoelectric materials to be stored in the energy storage device such as battery, in order to later supply electronic/electrical device/equipment. The simulation in MATLAB Simulink is presented and experimental results are also carried out in order to confirm the effectiveness of energy extraction. Consequently, this work may be practical for energy supplying of low power devices. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Fault classification in transformer using low frequency component(2017-12-13); ; ;Asfani, Dimas AntonNegara, I. Made YulistyaTransform is a vital equipment in power system that need protection system in order to provide fast and correct response when disturbance occur in system. So, this paper proposed internal and external fault classification in Transformer using algorithm based on discrete wavelet transform (DWT). Low frequency component from DWT has been used to create condition for algorithm. The proposed algorithm has been test using transmission line connected to transformer experimental setup on laboratory level. The result from proposed algorithm shown satisfactory result with 100% accuracy in both internal and external fault in transmission line connected transformer system. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Discrete wavelet transform and back-propagation neural networks algorithm for fault classification in underground cable(2011-07-26); ; ; ;Chiradeja, P.This paper proposes a new technique using discrete wavelet transform (DWT) and back-propagation neural network (BPNN) for fault classifications on underground cable. Simulations and the training process for the back-propagation neural network are performed using ATP/EMTP and MATLAB. The mother wavelet daubechies4 (db4) is employed to decompose high frequency component from these signals. Positive sequence current signals are used in fault detection decision algorithm. The variations of first scale high frequency component that detect fault are used as an input for the training pattern. Various cases studies based on Thailand electricity distribution underground systems have been investigated so that the algorithm can be implemented. The results are shown that an average accuracy values obtained from BPNN can indicate the fault classification with satisfactory accuracy, and will be very useful in the development of a power system protection scheme. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Distributed Temperature Sensing and Real Time Thermal Rating for Underground Power Cable Monitoring(2025-01-01) ;Tangtheerajaroonwong, Wiroj ;Tanapornchinpong, Phiphat ;Kiatjaroonlert, Boonsak ;Khan-Ngern, WerachetSangracha, ChanintornThis paper presents the distributed temperature sensing (DTS) technology and its application mainly on underground power cables. The main measuring principle is detecting the back-scattering light via Raman scattering that varies and depends on temperature at each point of optical fiber. In this paper, the authors present the monitoring results that the load current is applied for 50% of the rated current of the 69 kV and 115 kV transmission cables, and the DTS detects temperature increasing 0.5°C from the ambient temperature. This paper also shows real time thermal rating for calculations of conductor temperature.
