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Harmonic Filtering Techniques

January 22, 2010 by admin · Leave a Comment
Filed under: Camcorders 
Electrotek Ltd. asked:


The reductions? Of the distortions? N arm? Tion of a system can be achieved with filters arm? Nicos centralized or localized. The filters include centralized units autom? Characteristics of the filtered corrections? N Power Factor? Ay filters arm? Nicos assets. The filtraci? Located n can be accomplished by applying the filters of impulsi? No filters active in the arm? Nico generated load. A comparison? N of m? Filtraci all? N arm? Nicos follows. For prop? Requirements of this art? Generators *** arm? Nicos be? N considered the individual variable speed drives (VSD) of the configuration of 6 pulses at low voltage systems? N. The arm? Nicos are created by the VSD 5tos, 7mos, 11mos, d? Cimotercero etc. The quantity m? S current big arm? Nica be produced? A 5th arm? Nico, followed by the 7th arm? Nico, then arm the 11th? Nico and as? forth. The arm? Nicos flow, low impedance devices. Many of the arm filters? Nicos used in the circuits are connected in parallel with the inductor capacitor to create a low impedance. These types of filters are considered passive devices. Low impedance devices draw power arm? Tion from all sources connected to the system (in regard to the arm? Technical aspects of export? N) and? Companies outside the plant (considered the arm? Imported nicos). Then remove the current arm? Tion as heat. The disipaci? N heat of the note should not be considered a p? Loss caused by the arm filters? Nicos while the waste heat there? and at frequencies in the system unusable. This heat is dissipated by the filter arm? Nico rather than export? Na grid for general use which is dissipating? by other devices with low impedance. An alternative to passive devices are active devices. Cancel arm? Nicos produced? Ndolo at 180 degrees? Ngulo phase of the arm? Technicians that are created by? s.Centralized of? of VSD? filters that arm? nicos est? connected with the bus? s main system and design for the reduction ados? n arm? nica wide of the plant. Filters arm? Nicos is located? Connected as close to the source of the arm? Technical as possible and provided t? Picamente arm as a filter? Nico generator for each arm? Nico. Each type of filter arm? Described nico m? S below: A)? ? ? ? ? ? ? Auto units? Characteristics of the filtered corrections? N Power Factor? A (FAPFCU). Type: passive voice, Centralized. Requires desconexi? N dedicated. Absorbs arm? Technical aspects of export? Ny of import? Of all sources connected with the distribution? N. ? t filter is classified? picamente to maintain a factor of energy? a target of 100% for all charges combined. Generally used for applications where there is a lot? s.? of? of VSD? The filter consists of several circuits of the capacitor and inductor (steps) that are on / off. switched to the side of a regulator electr? nico Power factor a. M? S is the load? function, m? s stage filter be? lit by the governor. Each stage of the filter is a template for creating low impedance t? Picamente arm just below the 5th? Nico. The filter absorb? most 5tos arm? technicians that are generated by the? s of? of VSD? and dissipate? as heat. The filter arm tempered the 5th? Nico too? N absorb? 7th, 11th, d? Cimotercero, arm? Nicos etc, but the m? S is the high frequency arm? Nica minus the filter absorb?. The frequencies of adaptation? Nm? Such as multiple 5tas, 7th, 11mas, etc. are used where reductions are required? N arm? Nica severe, for example where interference telephone limited mandate to low amount of actual arm? nico which is exported to the grid for general use even at frequencies m? s high. Resonance arm? Nica is a possibility if the capacitors without filters arm? Nicos est? N installed. However, the capacitors without filters arm? Technicians should not be installed in environments contaminated arm? Nicos fail because they can land? Fico. This filter is effective for use as a generator of energy? A principal can be avoided. Extensions of the plant can be added to accommodate m? S stage filter. B)? ? ? ? ? ? ? Drive the filters. Type: Liabilities located, but you can too? N used to feed the number? s of? of VSD? function? a while normally. Does not require desconexi? N dedicated. Absorbs arm? Technical aspects of export? Of the connected load and the negligible amount of arm? Technicians from other sources. These filters are standard on the input terminals of each VSD or the load side of the grinder of the MCC, as? are classified based on the amount of load connected VSD. This type of filter is m? S frequently used when there is a small amount of a present? s of? of VSD?. This t? Cnica de? using a l? nea series reactor and a parallel connected circuit of the inductor capacitor tempered in the 5th arm? nico to create a low impedance. The combination? Series alinea of the reactor and the circuit passive inductor capacitor eliminates virtually editions arm? Tions of the resonance and concerns? N import arm? Nicos of VSDs or other sources not connected to the side of the Load the filter impulsi? n. L? Line reactor is used to increase the source impedance of the inductor makes the condenser circulates extremely efficient in absorci? The disipaci ny? Arm of the stream? Tion as heat. This filter is very effective in supplying the reduction? N arm? Nica severe. Versions m? S advanced circuit capacitor and inductor can be switched on and off when the VSD is switched on and off, which prevents energy factor? A principal when the VSD is not? running. Provide this type of filter? the corrections? n Power Factor? but if a circuit inductor capacitor is of great size "or there is an increased risk factor of bringing energy? loads in a low, particularly with the source of voltage pulses. Filters correctly classified as impulsi? N provide? N the reduction? N arm? Nica and still excellent? Maintain an energy factor? A siding down load VSD least 75% for voltage source drives. At loads less than 50% of the energy factor? Be? To m? S certainly possible with the main source of voltage pulses if resolved? IEEE 519 that targets secondary load of 100% required. The energy factor? A principal should not be a concern? N drives with current source to any speed. The filters of the impulsi? N are convenient to use the generator provided are classified correctly for the loads. Extensions of the plant can be accommodated by adding a filter of impulsi? N VSD for each aggregate. C)? ? ? ? ? ? ? Arm? Nico Active Filters. Type: Active, or may be centrally applied near each VSD. Requires desconexi? N dedicated. Create arm? Nicos arm to compensate? Nicos of import? Ny of export? N. ? his is new technology a. These filters are classified t? Picamente based on cu? Nt current arm? Electronic filter can occur, usually in increments of 50 amp Amps. Once the amount of current arm? Tion of the cancellation? N determining the proper amperage the active filter can be chosen. Essentially, the filter consists of a VSD with an electronic regulator? Nico special inject current arm? Electronic ignition system 180 out of phase with the arm? Electromechanical system or the impulsi? N. This leads to an effect of cancellation? Of the arm? Nicos. For example, if? s of? of VSD? creates 100 amps current 5th arm? nico active filter and produce 75 amps of current 5th arm? nica, the amount of the 5th power arm? nica exported to the grid for general use to be? 25 Amps.The a regulatory measure? the amount of arm? technicians that are created by? s of? of VSD? and inject? both the arm? nico which cancels the rear of the current power system is capable of producing, or until there is no current left arm? nico cancel. When the amount of load? s of? of VSD? is small is an advantage to some corrections? n Power Factor? available at low loads, however this should be considered an advantage because the negligible corrections? n Power Factor? a non est? available when the active filter produces high amounts of current arm? nica that happen? normally charges an m? ximas when corrections? n Power Factor? to require more a. Resonance arm? Electronic edition is not? N with this type of filter. Some filters are not suitable for active use of the generator because the capacitors are fixed and will there be? as? a factor of energy? a principal under lightly loaded conditions. The active filters with variable capacitors are suitable for use as the generator edition? N Main Power factor? May be prevented. Extensions of the plant can be accommodated by adding m? Filter modules m? S assets. Comparison? N filter: 1)? ? ? ? ? ? ? Reduction? N arm? Tance of export? N:? The reductions? N arm? Tance of export? No one can reach appropriate to all types of filters and locations.2)? ? ? ? ? ? ? Reduction? N arm? Feeders in nica? installing filters on each VSD presents the situation? ideal because the arm? nicos treated at the source of the problem, as? most of the arm? nicos created by? s of? of VSD? will prevent the circulation? n in the rest of the distribution? n. The results arm? Technical excellence of the reduction? N be? N obtained using the active filters and passive filters of impulsi? N filters in each VSD.Centralized cut? N only arm? Technical point of connection? N the arm? nico filter out the source for general use. The distortions? N arm? Nica feeders in each VSD not be? reduced.3)? ? ? ? ? ? ? L? Reduction nea? N of p? Loss: The? Reduction last? N of l? P nea? Loss in the system is? available when a combination? n de m? all is used. FAPFCU can design ar factor in maintaining energy? To 100%. The results of a factor of 100% of energy? To the KVA m? S demand and low amperage m? S low point in the system Automatic drive? tica est? connected as? with the meter for general use. A m amperage? S low mean p? Heat loss m? S low wire, breakers, transformers and so on. The filters of the impulsi? N again reduce the amperage of the point of connection? N point gauge for general use, but the factor of energy? Can not be corrected to 100% through? S of the speed range if the whole? s of? of VSD? can operate at low speeds and loads. ? for l? nea? of optimum filters impulsi? of reductions? n of p? and an automatic loss? tion filter must be used. The filter of impulsi? N reduces the amperage of the motor to the meter for general use, after the end sa autom? Ticos filtered unit work correcting the energy factor? Am? S away for a 100% reduction? N ? optimum and as? l? nea? optimum reduced the amperage of the p? loss

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