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1

Chavan, Gayatri, and Sridhar S. "Speed Control of Dual Induction Motor Using Five Leg Inverter." E3S Web of Conferences 184 (2020): 01065. http://dx.doi.org/10.1051/e3sconf/202018401065.

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Over the past decade, research efforts have been made to decrease the number of power electronic devices needed in multi-motor drive systems in order to condense the overall complication and cost of the drive. This paper proposes speed control for a dual three-phase induction motor system driven by five-leg voltage source inverter (FL-VSI) which is used in industrial manufacturing processes. Industrial applications frequently need a number of variable speed electric drives. This technique uses five-leg inverter instead of using conventional two three phase inverters. In the majority of cases,
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2

Geetha, K., C. Preethy, and P. Thenmozhi. "Simulation Model of Solar Induction Motor Drive System Using SVPWM Technique." Bonfring International Journal of Power Systems and Integrated Circuits 7, no. 1 (2017): 01–06. http://dx.doi.org/10.9756/bijpsic.8312.

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3

Baroogh, Farshid Abdolahnejad, Milad Gheydi, and Payam Farhadi. "Induction Motor Drive based on Efficiency Optimisation andDrive Loss Minimization in Real-Time Control of Linkage Flux of Drive Reference." International Journal of Advances in Applied Sciences 6, no. 3 (2017): 244. http://dx.doi.org/10.11591/ijaas.v6.i3.pp244-257.

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Induction motor drives are commonly used for applications with vast variations in mechanical load for torques under nominal values. HVAC loads are among these loads. The most ideal scheme for induction motor drive design should include drive loss reduction, or efficiency improvement, proportional to load torque such that optimal performance of drive is not affected. In this paper, using analytical methods, an accurate model is proposed for induction motor drive design. This model allows us to utilize real control and classical control theory for better performance of drive control system. The
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4

Kiran, B. Madhu, and B. V. Sanker Ram. "Seven Level Inverter Fault Mitigation Using Redundant Cell for Induction Motor Drive." International Journal of Applied Power Engineering 7, no. 3 (2018): 284–98. https://doi.org/10.11591/ijape.v7.i3.pp284-298.

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Faults that might occur in inverter driven induction motor drives. In this paper, seven-level multi level inverter was taken up for testing of mitigation using redundant cell and the results were compared with five-level inverter to exhibit the performance of mitigation policy. This paper presents analysis of inverter feeding an induction motor drive when switch open and short fault occurs. When the fault occurs, the redundant cell activates and thus the drive system operates. In this paper, the function for redundant cell was explained with the results of drive system simulated in Matlab/Simu
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5

Aleck, W. Leedy, Grider Tanner, and Priddy Rebekah. "A Simulink / MATLAB Model of a Three-Phase Sinusoidal PWM Inverter Driven Induction Motor." International Journal of Soft Computing and Engineering (IJSCE) 9, no. 4 (2019): 25–30. https://doi.org/10.35940/ijsce.C3289.119419.

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A three-phase voltage source inverter driven induction motor dynamic model developed using Simulink / MATLAB is presented. The presented model is derived from the d-q motor model. A modular approach is used in the construction of the motor-drive system model. The model presented is useful for studying both the steady-state and transient behavior of the motor drive system. The developed model enables the user to access all parameters of interest. Modifications can be made to the system model in order for it to be used with other motor drive system topologies. The model has benefits for use by u
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6

Bashudeb, Chandra Ghosh, and Ershad Ali Md. "Performance Analysis of a PWM Current Controlled Five Phase Induction Motor Drive for Disturbances and Faulty Condition." Journal of Power Electronics and Devices 5, no. 3 (2019): 32–41. https://doi.org/10.5281/zenodo.3528904.

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Multiphase induction motors are recently used in applications like electric vehicles, high power drives with increased degree of freedom and energy conversion systems where reliability is a great concern. Recently, availability of fast switching devices and controlling digital processors has focused interest on the use of multiphase induction motor drives. In this paper, a five phase induction motor has been considered for study the drive performance. The mutually perpendicular stationary reference frame model of the motor is considered for simulation study. For field orientation control law i
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7

Kozakevych, Ihor, and Kyrylo Budnikov. "Predictive control of induction motor drive." E3S Web of Conferences 280 (2021): 05006. http://dx.doi.org/10.1051/e3sconf/202128005006.

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The work is devoted to the study of the possibilities of using the predictive torque control system instead of the currently widely used direct torque control system. Aspects of using the system of direct torque control of an induction motor are considered and it is found that its significant disadvantage is the variable frequency of semiconductor switches. As a further development of the direct torque control system, a predictive torque control system is analyzed, which contains blocks for estimating unmeasured state variables, as well as predicting the state of a dynamic system when applying
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8

Gorantla, Satyanarayana, and Goli Ravi Kumar. "Harmonic Elimination Using STATCOM for SEIG Fed Induction Motor Load." International Journal of Power Electronics and Drive Systems (IJPEDS) 8, no. 3 (2017): 1026. http://dx.doi.org/10.11591/ijpeds.v8.i3.pp1026-1034.

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Non-linear loads connected to distribution system induce harmonics in to source components and the presence of harmonics in source components affects the performance of other sensitive loads connected at the same point. Induction motor load for drive system should be operated with variable frequency and variable voltage for its speed control. To vary the voltage and frequency, induction motor is fed from an inverter. This total drive set-up constitutes non-linear load type and will be the source of harmonics. This paper depicts the suppression of harmonics with STATCOM in distribution system w
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9

Janiga, Srinivasrao, Sarfaraz Nawaz Syed, Suresh Kumar Tummala, and Srinivasa Varma Pinni. "Speed Control of an Induction Motor Fed by an Inverter Using dSPACE Controller." E3S Web of Conferences 87 (2019): 01002. http://dx.doi.org/10.1051/e3sconf/20198701002.

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This paper presents the design and implementation of Inverter system for driving three phase Induction motor using DSPACE DS1104 controller with the controlling objective space vector pulse width modulation (SVPWM) technique. AC motor drives are commonly used over DC motor drives because of their more advantages. Induction motor is the most commonly used AC motor drive for various industrial and domestic applications. The project will be commenced by a basic understanding of SVPWM inverter, components used in the design and study the mathematical equations of the Induction motor. The performan
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10

Glazyrin, Alexander S., Ivan A. Nabunskiy, Semen S. Popov, et al. "Analytical model of dynamic system "long cable - submersible induction motor with fixed rotor" in polar coordinate system." Bulletin of the Tomsk Polytechnic University Geo Assets Engineering 334, no. 12 (2023): 220–33. http://dx.doi.org/10.18799/24131830/2023/12/4519.

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Relevance. The stock of oil wells in the Russian Federation, where production is carried out with the help of electric centrifugal pumps or electric-driven vane pumps, is expanding every year. This trend will continue for at least a couple of decades. In its turn, the number of wells with readily available oil products in the commissioned stock is decreasing. This leads to the need to improve production quality and reduce energy consumption to maintain profitability and production volumes. This can be achieved by implementing vector energy-efficient control systems for submersible motors based
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11

Hunaish, Ahmed S., Fadhil R. Tahir, and Hamzah A. Abbood. "Hyperchaos from DTC Induction Motor Drive System." IFAC-PapersOnLine 54, no. 17 (2021): 81–86. http://dx.doi.org/10.1016/j.ifacol.2021.11.029.

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12

Voytenko, Volodymyr, Volodymyr Vodichev, and Alexander Kalinin. "MTPA STRATEGY FOR THE ELECTRIC VEHICLE DRIVE." ELECTRICAL AND COMPUTER SYSTEMS 37, no. 113 (2023): 33–42. http://dx.doi.org/10.15276/eltecs.37.113.2023.04.

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Abstract. When the vehicle is moving, the driving torque that the traction motor should develop can be very large. Therefore, to prevent over loading of the traction motor by current, it is necessary to limit the current in the stator winding to the nominal value. In this regard, it is necessary to develop a system of vector control of the stator current of an induction motor, in which, at the nominal value of the stator current, the induction motor will develop the largest possible electromagnetic moment. Today, the problem of obtaining the maximum electromagnetic moment per unit current stat
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13

Elbarbary, Zakaria, Mohammad Fazle Azeem, and Haitham Z. Azazi. "Adaptive Fuzzy-Based IRFOC of Speed Sensorless Six-Phase Induction Motor Drive System." Journal of Circuits, Systems and Computers 29, no. 04 (2019): 2050062. http://dx.doi.org/10.1142/s0218126620500620.

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In recent times, instead of three-phase induction motors (IM), multi-phase motors have been used in several applications, due to numerous advantages that they offer. Elimination of mechanical position or speed sensors allures for adjustable speed drives of IM. It leads to cost reduction, lesser maintenance and increased reliability of the motor drive. To eliminate the speed sensor, the rotor speed is estimated from measured stator currents and voltages at motor terminals. This paper proposes a scheme based on speed estimation method using Model Reference Adaptive System (MRAS) in conjunction w
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14

Pravin, G. Dhawale, and D. Gaurkhede Sushil. "Matrix Converter for Induction Motor Drive." International Journal of Engineering and Advanced Technology (IJEAT) 9, no. 3 (2020): 602–6. https://doi.org/10.35940/ijeat.C5239.029320.

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This paper presents the comparison of performance between matrix converter and conventional DC-link converter fed induction motor drive system. It is noted that conventional converter required two stages for power conversion whereas matrix converter required single stage. The output current from conventional converter contains odd harmonic component which produces additional losses in drive causes de-rating and torque pulsation of motor. This unhealthy operation of drive is reduced by matrix converter which has the unique feature of producing pure sinusoidal output current waveform with minimu
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15

Kiran, B. Madhu, and B. V. Sanker Ram. "Seven Level Inverter Fault Mitigation Using Redundant Cell for Induction Motor Drive." International Journal of Applied Power Engineering (IJAPE) 7, no. 3 (2018): 284. http://dx.doi.org/10.11591/ijape.v7.i3.pp284-298.

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<span lang="EN-US">Fault identification is as much important as prior knowledge to mitigate the faults that might occur in inverter driven induction motor drives. In this paper, seven-level multi level inverter was taken up for testing of mitigation using redundant cell and the results were compared with five-level inverter to exhibit the performance of mitigation policy. This paper presents analysis of inverter feeding an induction motor drive when switch open and short fault occurs. When the fault occurs, the redundant cell activates and thus the drive system operates. In this paper, t
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16

Pugachev, Alexander. "Induction Motor Traction Drive with Slipping Protection." Applied Mechanics and Materials 792 (September 2015): 101–6. http://dx.doi.org/10.4028/www.scientific.net/amm.792.101.

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The advantages and shortcomings of three-level voltage source inverters to be applied on locomotive traction electric drives are highlighted in relation to two-level ones. To protect wheels from slipping on rails, the control system is designed. The control system with protection from slipping uses system of direct torque control as the subordinated contour to produce control signals on voltage source inverter. The topology and principles of operation of both protections from slipping and direct torque control of traction induction motor with three-level voltage source inverters are described.
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17

Khelif, Amine Mohamed, Azeddine Bendiabdellah, and Bilal Djamal Eddine Cherif. "Short-circuit fault diagnosis of the DC-Link capacitor and its impact on an electrical drive system." International Journal of Electrical and Computer Engineering (IJECE) 10, no. 3 (2020): 2807. http://dx.doi.org/10.11591/ijece.v10i3.pp2807-2814.

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The reliability of a motor control based on a variable speed drive is an important issue for industrial applications. Most of these machines are inverter based induction motors and are used in specific and complex industrial installations. Unlike the induction motor, the feeding part is very delicate and sensitive to faults. In order to improve system performance, it is therefore very important for a researcher to know the impact of a fault on the whole of his drive system. This paper discusses the short-circuit fault of the DC-link capacitor of an inverter fed induction motor. The simulation
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18

Mohamed, Amine Khelif, Bendiabdellah Azeddine, and Djamal Eddine Cherif Bilal. "Short-circuit fault diagnosis of the DC-Link capacitor and its impact on an electrical drive system." International Journal of Electrical and Computer Engineering (IJECE) 10, no. 3 (2020): 2807–14. https://doi.org/10.11591/ijece.v10i3.pp2807-2814.

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The reliability of a motor control based on a variable speed drive is an important issue for industrial applications. Most of these machines are inverter based induction motors and are used in specific and complex industrial installations. Unlike the induction motor, the feeding part is very delicate and sensitive to faults. In order to improve system performance, it is therefore very important for a researcher to know the impact of a fault on the whole of his drive system. This paper discusses the short-circuit fault of the DC-link capacitor of an inverter fed induction motor. The simulation
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19

Kamar, Syamsul, Meiyanne Lestari, Hilda Luthfiyah, Okghi Adam Qowiy, Eko Syamsuddin Hasrito, and Sofwan Hidayat. "Determination analysis of main dimensions of induction motors for railway propulsion system." Bulletin of Electrical Engineering and Informatics 14, no. 3 (2025): 1727–34. https://doi.org/10.11591/eei.v14i3.8554.

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Induction motors are used in industrial production processes. As for its use as a traction motor, it requires special design and manufacture. The type of induction motor that is widely chosen as a traction motor for railways is a squirrel-cage three-phase induction motor. The main consideration for the selection or design of an induction motor as a railway traction motor is the torque requirement to drive the train. Other parameters that are considered in the selection of an induction motor as a traction motor include available spaces for installation. This research is using a three-phase, 2,3
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20

Kamar, Syamsul, Meiyanne Lestari, Respatya Teguh Soewono, et al. "Performance analysis of three-phase induction motor for railway propulsion system." International Journal of Power Electronics and Drive Systems (IJPEDS) 14, no. 3 (2023): 1433. http://dx.doi.org/10.11591/ijpeds.v14.i3.pp1433-1441.

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A three-phase induction motor absorbs the most electric power among other electrical loads. Therefore, three-phase induction motors are the primary electric motors used in industrial applications thanks to their simple construction and easy operation, as well as low cost and low maintenance costs. Efficiency is a critical parameter that characterizes an induction motor as a traction motor. The traction motor is defined as the engine's effectiveness in converting electrical power at its input into mechanical energy by rotating torque on its axis. One way to analyze the efficiency is to use test
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21

Syamsul, Kamar, Lestari Meiyanne, Teguh Soewono Respatya, et al. "Performance analysis of three-phase induction motor for railway propulsion system." International Journal of Power Electronics and Drive Systems 14, no. 3 (2023): 1433~1441. https://doi.org/10.11591/ijpeds.v14.i3.pp1433-1441.

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A three-phase induction motor absorbs the most electric power among other electrical loads. Therefore, three-phase induction motors are the primary electric motors used in industrial applications thanks to their simple construction and easy operation, as well as low cost and low maintenance costs. Efficiency is a critical parameter that characterizes an induction motor as a traction motor. The traction motor is defined as the engine's effectiveness in converting electrical power at its input into mechanical energy by rotating torque on its axis. One way to analyze the efficiency is to use
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22

Beltrão de Rossiter Corrêa, Maurício, Cursino Brandão Jacobina, Antônio Marcus Nogueira Lima, and Edison Roberto Cabral da Silva. "Motor Drive System For Single-phase Induction Motors - An Evaluation." Eletrônica de Potência 8, no. 2 (2003): 79–88. http://dx.doi.org/10.18618/rep.2003.2.079088.

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23

Mekala, N., T. Jayabharathi, T. Rajkumar, and M. Priya darshini. "FAULT ANALYSIS OF INDUCTION MOTOR USING LABVIEW." International Journal of Engineering Applied Sciences and Technology 7, no. 8 (2022): 146–50. http://dx.doi.org/10.33564/ijeast.2022.v07i08.017.

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In recent days induction motors are commonly used an industrial application due to the simple construction and robust cost. In this work three phase induction motor is used for monitoring the mechanical faults under various load conditions. The mechanical fault includes the bearing faults; there are two kinds of fault conditions are monitored with healthy and faulty bearing at different load conditions. The Lab VIEW and DAC system is used for monitoring the real time signals like line current and vibrations present in the healthy and faulty bearing conditions at different frequency levels of 3
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Sengamalai, Usha, T. M. Thamizh Thentral, Palanisamy Ramasamy, et al. "Mitigation of Circulating Bearing Current in Induction Motor Drive Using Modified ANN Based MRAS for Traction Application." Mathematics 10, no. 8 (2022): 1220. http://dx.doi.org/10.3390/math10081220.

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Induction motors are popularly used in various applications because of the proposed modest construction, substantiated process, and limited size of specific power. The traditional AC traction drives are experimentally analyzed. There is a high circulating current due to the high Common-Mode Voltage (CMV). The high Circulating Bearing Current (CBC) is a major problem in conventional two-level voltage source inverter fed parallel-connected sensor-based induction motors for traction applications. A sensorless method is well known for shrinking costs and enhancing the reliability of an induction m
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25

Beleiu, Horia Gheorghe, Virgil Maier, Sorin Gheorghe Pavel, Iulian Birou, Constantin Sorin Pică, and Pompei Cosmin Dărab. "Harmonics Consequences on Drive Systems with Induction Motor." Applied Sciences 10, no. 4 (2020): 1528. http://dx.doi.org/10.3390/app10041528.

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In the case of adjustable drives systems with an induction motor (IM), a harmonic regime is manifested, whose knowledge and analysis are always necessary. However, most studies are focused on specific drive systems, the results of these works being valid only for drive systems of the same type. The objective of the present paper was to determine the harmonics consequences not only on the technical characteristics of the IM but also on the power supply as well as on the mechanical drive system. Thus, by initiating a methodology for estimating the consequences of each voltage harmonic separately
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26

Chuprina, Nikolay, Sergey Sedykh, Aleksandr Pugachev, and Vladimir Maklakov. "SIMULATION OF AC ELECTRIC DRIVE WITH SPACE-VECTOR MODULATION ALGORITHMS." Automation and modeling in design and management, no. 1 (March 17, 2022): 80–88. http://dx.doi.org/10.30987/2658-6436-2022-1-80-88.

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The relevance of investigation of induction motor electric drives with frequency converters having voltage source inverter with space-vector modulation is shown. The brief survey of researches of such matter is carried out. The aim of this article is to develop mathematical and computer model of frequency converter with space-vector modulation algorithms by means of Matlab Simulink, this model has to be implemented into the Matlab models of AC electric drives with induction and synchronous motors. To achieve such an aim, it needs to introduce techniques of electric drive theory, numerical tech
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Simon Fekadeamlak Gebremariam and Tebeje Tesfaw Wondie. "Comparative analysis of electric motor drives employed for propulsion purpose of Battery Electric Vehicle (BEV) systems." International Journal of Science and Research Archive 10, no. 2 (2023): 1097–112. http://dx.doi.org/10.30574/ijsra.2023.10.2.1074.

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This paper presents an analysis of electric motor drives for the propulsion system of a battery electric vehicle (BEV). It offers a comprehensive review and mathematical analysis of both AC and DC motor drives commonly used in electric vehicle (EV) applications. Various types of electric motor drives have been utilized for EV propulsion, and among them, the Permanent Magnet Synchronous Motor (PMSM) drive stands out as the optimal choice. The PMSM drive demonstrates superior performance and numerous advantages, including a robust structure, high efficiency, compact size, reduced maintenance cos
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Evstaf’ev, Andrey, and Alexander Pugachev. "Modeling of energy-efficient direct torque control system for traction induction motor." E3S Web of Conferences 383 (2023): 01013. http://dx.doi.org/10.1051/e3sconf/202338301013.

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A brief analysis of existing control systems for traction electric drives with induction motors has been carried out, as a result of which it has been established that vector control and direct torque control systems are the most promising. The comparative characteristic of these control systems according to different parameters of electric drive quality has shown that in energy-saving algorithms it is appropriate to use the systems of direct torque control. The work aims to simulate the electric drive with a direct torque control system, which provides the reduction of power losses in an asyn
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Raj P R, Neethu, and Vasanthi V. "Performance Analysis of Photovoltaic Induction Motor Drive for Agriculture Purpose." International Journal of Power Electronics and Drive Systems (IJPEDS) 7, no. 4 (2016): 1252. http://dx.doi.org/10.11591/ijpeds.v7.i4.pp1252-1260.

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<p>This paper presents water pumping system using renewable source (solar) without the use of chemical storage batteries. In this converter-inverter circuit is used to drive Induction motor. The Converter used here is Two Inductor boost converter (TIBC), which consists of a resonant tank, voltage doubler rectifier and a snubber circuit. TIBC is designed to drive the three phase induction motor from PV energy. TIBC converter is also known as current fed multi resonant converter having high voltage gain and low input current ripple. Converter switches are controlled through hysteresis cont
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P.E., Dr Aleck W. Leedy,, Tanner Grider, and Rebekah Priddy. "A Simulink / MATLAB Model of a Three-Phase Sinusoidal PWM Inverter Driven Induction Motor." International Journal of Soft Computing and Engineering 9, no. 4 (2019): 25–30. http://dx.doi.org/10.35940/ijsce.c3289.119419.

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A three-phase voltage source inverter driven induction motor dynamic model developed using Simulink / MATLAB is presented. The presented model is derived from the d-q motor model. A modular approach is used in the construction of the motor-drive system model. The model presented is useful for studying both the steady-state and transient behavior of the motor drive system. The developed model enables the user to access all parameters of interest. Modifications can be made to the system model in order for it to be used with other motor drive system topologies. The model has benefits for use by u
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31

Martand Pratap, Et al. "Analysis of Induction Motor Drive Systems." International Journal on Recent and Innovation Trends in Computing and Communication 11, no. 7 (2023): 439–45. http://dx.doi.org/10.17762/ijritcc.v11i7.10059.

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In industry, the induction machine, particularly the cage rotor type, is most typically employed for variable speed applications. Adjustable speed drives use back-to-back AC to DC and DC to AC conversion to alter the speed. This conversion procedure introduces harmonics and reduces power factor at the supply end. It is now more important than ever to design and build a three-phase induction motor drive with higher power quality. A full report on the converter topologies is used for Power Factor Correction at the input side to eliminate harmonics and enhance power factor at the supply side. So
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DUMITRU, Ana-Maria Marilema, Emil CAZACU, and Lucian PETRESCU. "QUALITATIVE STUDY ON THE IMPACT OF ELECTRICAL ENERGY QUALITY PARAMETERS ON THE OPERATION OF ASYNCHRONOUS MOTORS." ACTUALITĂŢI ŞI PERSPECTIVE ÎN DOMENIUL MAŞINILOR ELECTRICE (ELECTRIC MACHINES, MATERIALS AND DRIVES - PRESENT AND TRENDS) 2022, no. 1 (2023): 1–13. http://dx.doi.org/10.36801/apme.2022.1.3.

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One of the most common requirements in modern industrial applications is to minimize the costs associated with the operation, maintenance and possible repairs of the component systems. In industrial processes, induction motors are the most commonly used electromechanical converters in electrical drive systems. The extensive development of power electronics, as well as the relatively low manufacturing cost of asynchronous motors has determined a very high incidence of the presence of induction motor drive systems in industrial systems. The use of semiconductor devices to control the drive param
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Soe, Sandar Aung, and Naing Htun Thet. "Speed Control System of Induction Motor by using Direct Torque Control Method used in Escalator." International Journal of Trend in Scientific Research and Development 3, no. 5 (2019): 2250–53. https://doi.org/10.5281/zenodo.3591272.

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Escalator is useful and act in the important part to carry passengers to the targeted floors of building. Every escalator must be driven by its own motor and this motor speed must be controled. To drive escalator with a constant speed, direct torque control technique is used to drive three phase squirrel cage induction motor. In this paper, the development of speed control system for three phase squirrel cage induction motor using a direct torque control method is presented and simulation for proposed system is done with the help of MATLAB SIMULINK. Soe Sandar Aung | Thet Naing Htun "Spee
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Harish, S. P., S. Sridhar, Omsekhar Indela, Kumaran G. Kodeeswara, and P. Parthiban. "Analysis of Five Leg Voltage Source Inverter Fed Dual Motor Drive System." E3S Web of Conferences 309 (2021): 01142. http://dx.doi.org/10.1051/e3sconf/202130901142.

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With the advent of electric vehicle multi-machine drives are attaining overwhelming responses from the researchers and industries in recent years, as compared to their counterpart of single machine drive. In this regard, the industries are looking for multi motor control with single inverter system with precise speed control. The solution of aforesaid problem lies with multi-leg inverter fed dual induction motor drives that are capable for high power ratings and other specific applications. Any faults in the system leads to the failure of the operation of the entire drive system. Hence conditi
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Muhammad Zikri Hamim, Suriana Salimin, and Afarulrazi Abu Bakar. "Analysis of Variable Frequency Drive for Induction Motor using Matlab Software." Journal of Advanced Research in Applied Mechanics 116, no. 1 (2024): 117–29. http://dx.doi.org/10.37934/aram.116.1.117129.

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Induction motors have become essential part in motor-driven machinery industries. However, the inability to regulate the speed of the load can present significant challenges in terms of machinery maintenance and energy consumption. This paper simulates and proposes a solution for the induction motor speed control which implements an inverter consisting of a Variable Frequency Drive (VFD) system using Matlab software. The aim is to analyze the impact of adding a VFD circuit to a three-phase motor system in terms of its starting current and speed. A VFD is highly beneficial for electric motors a
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Glinka, Tadeusz, Barbara Kulesz, and Mieczysław Jakubiec. "MOTORS FOR TRAM DRIVES." TRANSPORT 20, no. 2 (2005): 73–77. http://dx.doi.org/10.3846/16484142.2005.9637999.

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This paper compares five different motor types used in variable speed drives: a dc motor with a mechanical commutator and with electromagnetic or permanent magnets excitation, a cage induction motor, asynchronous cascade with a slip‐ring motor and a brushless motor with PM excitation. These motors are to be used for tram drive and they should all be characterised by identical external dimensions and a cooling system. Rated power and efficiency are the principal comparison criteria.
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Verma, Vimlesh. "Current sensorless vector controlled induction motor drive." IAES International Journal of Robotics and Automation (IJRA) 8, no. 1 (2019): 52. http://dx.doi.org/10.11591/ijra.v8i1.pp52-67.

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This paper presents a current sensorless vector controlled induction motor drive with only speed sensor present in the system. The same performance as that of normal vector control drives (which uses two current and one speed sensor) is achieved with the proposed current sensorless drive. Such an approach is suitable for applications, where speed sensor cannot be eliminated. Thus, elimination of current sensor results in reduction of cost, increases reliability, reduced size and noise immunity. A new current estimation algorithm is proposed in this paper. The current estimation algorithm, esti
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38

Verma, Vimlesh. "Current sensorless vector controlled induction motor drive." IAES International Journal of Robotics and Automation (IJRA) 8, no. 1 (2019): 52–67. https://doi.org/10.11591/ijra.v8i1.pp52-67.

Full text
Abstract:
This paper presents a current sensorless vector controlled induction motor drive with only speed sensor present in the system. The same performance as that of normal vector control drives (which uses two current and one speed sensor) is achieved with the proposed current sensorless drive. Such an approach is suitable for applications, where speed sensor cannot be eliminated. Thus, elimination of current sensor results in reduction of cost, increases reliability, reduced size and noise immunity. A new current estimation algorithm is proposed in this paper. The current estimation algorithm, esti
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39

Gujar, Nitin P., and Devman D. Gore. "Intelligent Grid Interfaced Solar Water Pumping System." International Journal of Multidisciplinary Research Transactions 4, no. 10 (2022): 9–25. https://doi.org/10.5281/zenodo.7216496.

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This paper deals with a single stage solar powered speed sensorless vector controlled induction motor drive for water pumping system, which is superior to conventional motor drive. The speed is estimated through estimated stator flux. The proposed system includes solar photovoltaic (PV) array, a three-phase voltage source inverter (VSI) and a motor-pump assembly. An incremental conductance (Inc.) based MPPT (Maximum Power Point Tracking) algorithm is used to harness maximum power from a PV array. The smooth starting of the motor is attained by vector control of an induction motor. The desired
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40

Zaini, Z., and Lidwina Natasha Chendra. "Monitoring for Temperature of Three Phase Induction Motor at Chemical Industry Using Internet of Things." International Journal of Application on Sciences, Technology and Engineering 1, no. 1 (2023): 140–62. http://dx.doi.org/10.24912/ijaste.v1.i1.140-162.

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Induction motor is the most motor applicable in the world. especially three phase induction motor. Furthermore 95% of induction motor are used as propulsion in industry. However, maintenance costs are large enough more than 50% of operating costs of the industry or the factory. To reduce these costs is to detect early faults in induction motors. One way to detect initial faults is to measure and analyze the temperature of the induction motor. In this research, the authors design temperature monitoring of a three-phase induction motor using the internet of things to make it easier for users to
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41

Shen, Cuifeng, and Hanhua Yang. "A High Performance of Induction Motor Drive System." Recent Advances in Electrical & Electronic Engineering (Formerly Recent Patents on Electrical & Electronic Engineering) 13, no. 8 (2020): 1129–34. http://dx.doi.org/10.2174/2352096513999200505110457.

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Background: A multi-motor synchronous drive control system is widely used in many fields, such as electric vehicle drive, paper making, and printing. Methods: On the basis of the optimized structure of ADRC, a fuzzy first-order active disturbance rejection controller was developed. Double channels compensation of extended state observer was employed to estimate and compensate the total disturbances, and an approximate linearization and deterministic system was obtained. As the parameters of ADRC are adjusted online by a fuzzy controller, the performance of the controller is effectively improve
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42

Dunaev, Mikhail P., and Dmitry N. Kazankov. "MODELING ELECTRIC DRIVE SYSTEM “FREQUENCY CONVERTER – INDUCTION MOTOR”." Proceedings of Irkutsk State Technical University 21, no. 7 (2017): 102–8. http://dx.doi.org/10.21285/1814-3520-2017-7-102-108.

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43

KUCHER, E. S., A. A. BLINOV, G. S. SIDOROV, and N. S. POPOV. "Signal-adaptive control system of induction motor drive." Elektrotekhnika, no. 5 (2022): 24–29. http://dx.doi.org/10.53891/00135860_2022_5_24.

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44

Jacobina, C. B., M. B. de Rossiter Correa, E. R. C. da Silva, and A. M. N. Lima. "Induction motor drive system for low-power applications." IEEE Transactions on Industry Applications 35, no. 1 (1999): 52–61. http://dx.doi.org/10.1109/28.740845.

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45

Chen, Chong, Guowen Hu, and Lanhong Zhang. "Neuron adaptive control of induction motor drive system." International Journal of Wireless and Mobile Computing 8, no. 1 (2015): 95. http://dx.doi.org/10.1504/ijwmc.2015.066759.

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46

TANIGUCHI, K., N. KIMURA, T. MORIZANE, Y. TAKEDA, S. MORIMOTO, and M. SANADA. "Novel PAM inverter system for induction motor drive." International Journal of Electronics 80, no. 2 (1996): 143–53. http://dx.doi.org/10.1080/002072196137354.

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47

Niazi, Muhammad Ahsan, Qaisar Hayat, Basit Khan, and Muhammad Afaq. "Speed Control of Three Phase Induction Motor using Variable Frequency Derive Control System." International Journal of Current Engineering and Technology 10, no. 01 (2021): 5–10. http://dx.doi.org/10.14741/ijcet/v.10.1.2.

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Three-phase AC induction motors play a very important role in industry due to its low price and simplicity. The induction motor is used to convert three-phase AC power into mechanical power. When the load on an induction motor increases the percentage of slip is increase, which leads to decrease the speed of induction motor while constant speed in industry is very important. This paper presents a simple converter for driving three-phase Induction motor from three-phase AC supply by using the variable frequency drive in feedback. So the speed of induction motor is controlled by variable frequen
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48

Sengamalai, Usha, Geetha Anbazhagan, T. M. Thamizh Thentral, Pradeep Vishnuram, Tahir Khurshaid, and Salah Kamel. "Three Phase Induction Motor Drive: A Systematic Review on Dynamic Modeling, Parameter Estimation, and Control Schemes." Energies 15, no. 21 (2022): 8260. http://dx.doi.org/10.3390/en15218260.

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An induction motor is generally used in industrial applications because it is reliable, robust, and low cost. Reliability is one of the essential parameters based on which the motor is selected, and the induction motor primarily comes into force. The well-founded induction motor gives good results under various operating states. To achieve this, the values of the motor are kept in mind. Dynamic simulation plays a significant part in evaluating the model’s design process to eliminate design errors in typical construction types and when testing the motor drive system. The induction motor is mode
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49

Zhang, Yong Jun, Yong Kang Zhang, and Xiao Zhan Li. "Discrete Time Sliding Mode on Model Reference Adaptive System Based Sensorless Induction Motor Drive." Applied Mechanics and Materials 229-231 (November 2012): 2233–38. http://dx.doi.org/10.4028/www.scientific.net/amm.229-231.2233.

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Sensorless induction motor drives are widely used in industry for their reliability and flexibility. It’s very important to improve the performance of speed estimation in some cases, especial at low speed of IM drives. The authors have proposed and developed a model reference adaptive system (MRAS) based on discrete time sliding mode algorithm(DTSM), which has high performance for sensorless induction motor drive in low speeds. The new algorithm obtains the identification flux using the classic MRAS, and the PI adaptive law in MRAS is replaced with the sliding mode observer which is acquired b
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50

Mohamed, K. Metwaly, Alsharef Mohammad, A. Sabiha Nehmdoh, et al. "Smart integration of drive system for induction motor applications in electric vehicles." International Journal of Power Electronics and Drive System (IJPEDS) 1, no. 1 (2021): 20–28. https://doi.org/10.11591/ijpeds.v12.i1.pp20-28.

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In this paper, a smart drive system of the induction motor (IM) is proposed and adapted for applications in electric vehicles (EVs). Objectively, the EV drive systems are robust over wide speed and torque ranges. The proposed drive system is independent of encoder (encoderless) and concerned with the torque control drive (TCD) and indirect rotor field-oriented control (IRFOC) using the sliding mode observer (SMO). This arrangement of monitoring system and control techniques are smartly integrated for the IM applications in EVs. The encoderless technique utilizes SMO to estimate the stator curr
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