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1、presented by:arun kumar n.k1ox11epe01 in this presentation, a new active power filter (apf) control scheme has proposed to improve the performance of the apf. this presentation presents a new technique with instantaneous power theory (p-q theory) in order to control of apf under non- ideal mains vol
2、tage conditions. performance of the proposed scheme has been found feasible and excellent to that of the instantaneous reactive power algorithms under various non-ideal mains test scenarios. matlab/simulink power system toolbox is used to simulate the proposed system. the proposed methods performanc
3、e is compared with conventional instantaneous power (p-q) theory. the simulation results are presented and discussed showing the effectiveness of the control algorithm.introductionpower qualtity in power distribution systemssolutions to power quality problemsbasic principle of active power filtersty
4、pes of the active power filtersinstantaneous power theorythe proposed methodshunt acitve power filter3-phase 4-wire shunt acive power filter with renewable energy interface simulation resultsconclusionreference in a modern power system, increasing of loads and non-linear equipments have been demandi
5、ng the compensation of the disturbances caused for them. these nonlinear loads may cause poor power factor and high degree of harmonics.active power filter (apf) can solve problems of harmonic and reactive power simultaneously.apf have the ability to adjust the amplitude of the synthesized ac voltag
6、e of the inverters by means of pulse width modulation or by control of the dc-link voltage, thus drawing either leading or lagging reactive power from the supply.shunt apfs allow the compensation of current harmonics and unbalance, together with power factor correctionpower quality can be defined as
7、 the physical physical characteristics of the electrical supply provided under normal operating conditions that do not disturb the customers process.power quality problem exists due to change in voltage, current or frequency deviation results in a failure or in a bad operation of the equipment.power
8、 quality problems are due to natural phenomenaswitching phenomenaconnection of high power non linear loadsvoltage sagsthere are two approaches to the mitigation of power quality problems.load conditioningline conditioninga flexible and versatile solution to voltage quality problems is offered by act
9、ive power filters.shunt active power filters operate as a controllable current sourceseries active power filters operates as a controllable voltage sourceactive filter connectionload on ac supplyac supply on loadshuntcurrent harmonic filtering.reactive current compensation.current unbalance.voltage
10、flickerseriescurrent harmonic filtering.reactive current compensation.current unbalance.voltage flickervoltage unbalance voltage sag/swell.voltage unbalance.voltage distortion.voltage interruption.voltage flicker and notching.3phase uncontrolled diode bridge rectifier with resistive loadingusing the
11、 switching mode power converter to perform the harmonic current elimination. the power converter is controlled to generate a compensation current, which is equal but opposite the harmonic and reactive currents generated from the nonlinear load.a voltage source inverter having igbt switches and an en
12、ergy storage capacitor on dc bus is implemented as a shunt apf.fig. block diagram of apf1.shunt active power filters:it compensate current harmonics by injecting equal-but-opposite harmonic compensating current.it operates as a current source injecting the harmonic components generated by the load b
13、ut phase shifted by 180deg.fig. compensation characteristics of a shunt active power filter 2. series active power filters:fig. series active power filter topology it compensate current system distortion caused by non-linear loads.the high impedance imposed by the series apf is created by generating
14、 a voltage of the same frequency that the current harmonic component that needs to be eliminated.voltage unbalance is corrected by compensating the fundamental frequency negative and zero sequence voltage components of the system.3.hybrid active power filters:fig. hybrid active power filterby contro
15、lling the amplitude of the voltage fundamental component across the coupling transformer, the pf of the power distribution system can be adjusted.the control of the load power factor imposed a higher voltage across the filter capacitor.this type of configuration is very convenient for compensation o
16、f high power medium voltage non linear loadsin three-phase circuits, instantaneous currents and voltages are converted to instantaneous space vectors.three-phase currents and voltages are calculated as following equationsin three-phase conventional instantaneous power is calculated as follows:p=e.i
17、+e.iin fact, active power (p) is equal to following equation:p=ea.ia +eb.ib +ec.ic and are orthogonal coordinates.instantaneous real and imaginer powers are calculated as equationthe above equation can be written asfrom above instantaneous compensating current as and co ordinates are given below it
18、must be used when the voltages are distorted or unbalanced and sinusoidal currents are desired.in proposed method, instantaneous voltages are firs tconverted to - coordinates and then to stationary d-q coordinates. the produced d-q components of voltages are filtered and reverse converted - coordina
19、tes. these filtered - components of voltages are used in conventional instantaneous power theory. a new apf control scheme has been proposed to improve the performance of apf under non-ideal mains voltage scenarios. experimental results in a scaled-down laboratory prototype will be done and reported
20、 in future paper. apf, based on the proposed theory, give satisfactory operation even when the system phase voltages are unsymmetrical and distorted, because no distortion appears in the line currents. the apf is found effective to meet ieee 519 standard recommendations on harmonics levels in all of the non-ideal voltage conditions. the switching frequency and also switc
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