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    Item type:Publication,
    Simple Techniques for Designing Passive Power Filter System to Reduced Harmonic Resonance and Improve Power Quality of Electrical Systems with Servo Drive
    (2020-11-24)
    Boonseng, C.
    ;
    Boosseng, R.
    ;
    Kularbphettong, K.
    The proliferation of servo drives (SD) in the industry has led to serious concerns about harmonic resonance and power quality in electrical distribution systems. This paper reported the resonance conditions of electrical systems with motor control using a small servo drive for use in CNC machines. When a large number of servo drives are combined, it results in harmonic resonance occur in the system. Resulting in the destruction of electrical equipment such as power supply, computer, CNC, or servo drive close to each other, etc. The cost of purchasing the above electrical equipment to replace the damaged ones in each month is very high. A simple passive power filter system (PPFs) design is recommended to reduced harmonic resonance. PPFs are applied to the system and the actual installation which is satisfactory and can greatly reduce the damage of electrical equipment. Finally, the factories can save money each month.
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    Item type:Publication,
    UPS System Design with Appropriate PPFs to Prevent Harmonic Resonance and Power Quality Improvements for MRI Scan Equipment
    (2020-11-24)
    Boonseng, C.
    ;
    Ratanasrimetha, T.
    ;
    Boonseng, R.
    ;
    Kularbphettong, K.
    Magnetic Resonance Imaging (MRI) has become an essential diagnostic tool as it is a noninvasive method for diagnosing individuals of almost all ages. Using magnetic fields, MRI can produce images of the spine, brain, and other parts of the human body. This can eliminate the surgical difficulty to diagnose. In most MRI operations, it is used in conjunction with UPS to enable continuous operation and prevent power outages and system failures. In most MRI operations, it is used in conjunction with UPS to enable continuous operation and prevent power outages and system failures. MRI work at full output will generate a lot of harmonics and cause resonance at the output of the UPS to overheat and cause the UPS to reach trip. Solving this problem by using passive power filter system (PPFs) which is effective can solve this problem.
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    Item type:Publication,
    Planning, Design and Installation of a Hybrid Power Filter to Power Quality Improvement for Grid-Connected Renewable Energy Systems
    (2020-11-24)
    Boonseng, C.
    ;
    Boosseng, R.
    ;
    Kularbphettong, K.
    This paper is a preliminary basis in the design, planning, and implementation of hybrid power filter systems (HPFs) for application in grid-connected solar rooftop at industrial plants beginning the planning and designing of a 260 kWp solar rooftop according to the factory roof size. Calculate total returns by using the PV system design software program to find the total kWh received per year. As the power system in this factory has a load that is sensitive to power quality and harmonics, it is necessary to design a harmonic protection system by choosing the HPFs to reduced and control the harmonics. Noise filters should be used to prevent high-frequency signals from entering the electrical system. In addition, lightning protection devices are also designed by using the bus bar to connect the system to the ground. All actions have been carried out in accordance with the designed plan and able to perform as intended.
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    Item type:Publication,
    Failure Analysis and Investigation of Electrical Insulation of 10 MVA Oil-Type Transformers Damaged due to Direct Lightning Strikes
    (2020-11-24)
    Boonseng, C.
    ;
    Kammaroeng, D.
    ;
    Kularbphettong, K.
    Failures in distribution transformers are associated with high property damage, high business interruption losses and large insurance deductibles. Professional independent inspection and protection design, taken on an ongoing basis, can go a long way towards reducing failures and eliminating unnecessary repair costs. This paper presents the study of the effects of lightning on electrical insulation, damage, and components in and components in 10MVA, 24/6.6kV oil-type transformers. Beginning to investigate and diagnose the cause of the transformer explosion by measuring electrical parameters to confirm which parts have been damaged. The result of the measurement shows that there is a fault in the HV coil. The investigation method focuses on the damage and solutions to prevent the problem from occurring again. Finally, a lightning protection design is necessary.
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    Item type:Publication,
    Comparison of Harmonic Solutions to Power Quality improvement for Grid-Connected Solar Rooftop Applications in Industrial Plants
    (2020-07-01)
    Boonseng, C.
    ;
    Kularbphettong, K.
    ;
    Boonseng, R.
    The solar rooftop installation is currently grown in Thailand, when many solar inverters are connected to the grid. It impacts existing electrical systems such as the harmonic resonance occur and malfunction of sensitive equipment. In addition, electrical circuit breakers, contactors, fuses, and power capacitors are damaged, which can affect electrical quality in the system. The impact of solar rooftop installation on the reliability and security of existing power grids must be urgently analyzed. This paper examines and selects methods to reduce the harmonic effects caused by the increase in solar inverter installation in existing power systems. The main objective of the study is to reduce distortion and harmonic resonance problems in the system, as well as to select suitable methods for solving problems. Practically, it is ensured that the passive power filter system (PPFs), active power filter system (APFs) and hybrid power filter system (HPFs) are the best solution applied for grid-connected system. A method for selecting a suitable solution for solving problems in each plant was proposed. A comparison of the solutions to all three methods has been analyzed for maximum benefit. Guidelines, procedures, and operational requirements can be applied in industrial plants.
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    Item type:Publication,
    Analysis of Control System to Prevent Collapse of Mixed-Source DC Microgrid for Industry
    (2020-07-01)
    Boonseng, C.
    ;
    Kularbphettong, K.
    ;
    Boonseng, R.
    This paper presents the control of power sources by lookup table controller to maintain the voltage of critical load and to prevent the collapse of a mixed-source DC microgrid which consists of grid, diesel generators, batteries and solar cells that connect to DC bus. MATLAB is used to a simulation of the microgrid system. The experiment presents the time comparison of four types of switches including magnetic contactor, relay, solid-state relay and power MOSFET which can maintain DC bus voltage in a specified range which least effects to critical load operation. Finally, applied in the data center system of a small factory which has satisfactory results.
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    Item type:Publication,
    HPFs filtering solutions for reduced the harmonic current generated by SMPS and ac drive systems
    (2020-02-01)
    Kularbphettong, K.
    ;
    Boonseng, C.
    This paper proposes a reduced 2nd, 3rd, 5th and 7th harmonic current of all power supply units and ac drives which effects of heating neutral cables and transformer. The commercial or automation building require the operation of many parallel-connected switch mode power supply and ac drive on the same bus and transformer. Such a system significantly increases the high neutral current and power quality problems on the distribution network. The existing system mainly consists of switch mode power supply and a three phase ac drive for compressor loads (common to HVAC applications). A passive power filter (PPF) and a low rating APF (Active Power Filter) at point of common coupling (PCC) are used to power quality enhancement in the distribution system. A PPF is designed to reduce the harmonics and to compensate the reactive power in the distribution system and the APF located at an upstream position near main distribution broads (MDB), it performs the compensation for harmonic current which is produced from all of drive and for remaining harmonics after the PPFs can been operation. The Hybrid Power Filter System (HPFs) is the combination of PPF and APF which mostly use for reducing harmonic currents and improving power quality of the system. Finally, using the HPFs to solve this problem, the results can reduce distortion and neutral current.
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    Item type:Publication,
    The Harmonic and Power Quality Improvement of Office Building Using Hybrid Power Filter
    (2019-10-01)
    Boonseng, C.
    ;
    Kularbphettong, K.
    This paper proposes a reduced 2nd, 3rd, 5th and 7th harmonic current of all power supply units and ac drives which effects of heating neutral cables and transformer. The commercial or automation building require the operation of many parallel-connected switch mode power supply and ac drive on the same bus and transformer. Such a system significantly increases the high neutral current and power quality problems on the distribution network. The existing system mainly consists of switch mode power supply and a three-phase ac drive for compressor loads (common to HVAC applications). A passive power filter (PPF) and a low rating APF (Active Power Filter) at point of common coupling (PCC) are used to power quality enhancement in the distribution system. A PPF is designed to reduce the harmonics and to compensate the reactive power in the distribution system and the APF located at an upstream position near main distribution broads (MDB), it performs the compensation for harmonic current which is produced from all of drive and for remaining harmonics after the PPFs can been operation. The Hybrid Power Filter System (HPFs) is the combination of PPF and APF which mostly use for reducing harmonic currents and improving power quality of the system. Finally, using the HPFs to solve this problem, the results can reduce distortion in current.
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    Item type:Publication,
    Field Experience for Passive Power Filter for Grid-Connected Solar Rooftop Applications at Industrial Plants
    (2019-10-01)
    Inwanna, W.
    ;
    Boonseng, C.
    ;
    Boonseng, R.
    ;
    Kularbphettong, K.
    This paper presents the solution of harmonic problem that caused by solar rooftop installation. The Passive Power Filter System (PPFs) is recommended for solving harmonic problem which produced from non-linear loads such as AC drive, SMPS and solar inverter. The PPFs is designed to eliminate the harmonic in the electrical system, result in the voltage and current distortion are reduced and avoid resonance problem. Moreover, it helps to compensate the reactive power and improve the power factor. The characteristic of PPFs is analyzed based on the simple calculation by the KMITL program. In practical, the PPFs is suitable for low voltage system which connected to the grid. There is high performance in solving harmonic problems in the electrical system.
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    Item type:Publication,
    An Investigation on the Selection of Filter Topologies for Passive Filter Applications by Neural Network
    (2019-10-01)
    Boonseng, C.
    ;
    Nilnimitr, N.
    ;
    Kularbphettong, K.
    This project presents an alternative way in designing 5th, 7th and 11th harmonic filters by creating a neural network program that can calculate harmonics which are generated in the system by ac or dc drives and it can verify the result using the simulation in verification program. Our program can choose the right harmonic filter and help designing harmonic filter faster, easier and more accurate by concerning the cause of other factors that exclude the formulas such as limitation of the devices in a suitable cost. It will be more and more accurate every time the users use this program. Our program will train itself after inputting new data. The more we use the program, the more accurate it will be. We created the program with easy understandable user interface to facilitate any harmonic filter designers with low experiences to have an ability as an expert harmonic filter designer because our program has a memory of an experienced designer and ability to train itself. Furthermore, our program will help supporting the development in harmonic filter designing for any kinds of future research.