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Showing posts with label Apfc. Show all posts
Showing posts with label Apfc. Show all posts

Friday, 22 January 2016

power factor correction

power factor correction


What is Power Factor Correction?

POWER FACTOR is the ratio between the useful (true) power (kW) to the total (apparent) power (kVA) consumed by an item of a.c. electrical equipment or a complete electrical installation. It is a measure of how efficiently electrical power is converted into useful work output. The ideal power factor is unity, or one. Anything less than one means that extra power is required to achieve the actual task at hand.

A poor power factor is usually the result of a significant phase difference between the voltage and current at the load terminals, or it can be due to a high harmonic content or a distorted current waveform. A poor power factor is generally the result of an inductive load such as an induction motor, a power transformer, a ballast in a luminaire, a welding set or an induction furnace. A distorted current waveform can be the result of a rectifier, an inverter, a variable speed drive, a switched mode power supply, discharge lighting or other electronic loads.

Why improving Power Factor is important

The Power Factor Correction of electrical loads is a problem common to all industrial and commercial users. Every user which utilizes electrical power to obtain work in various forms continuously asks the mains to supply a certain quantity of active power together with reactive power.

The most common of these on modern systems is the inductive load. Typical examples includes transformer, fluorescent lighting, AC induction motors, Arc/induction, furnaces etc. which draw not, only active power (KW) from the supply, but also inductive reactive power (KVAr). Common characteristics of these inductive loads is that they utilize a winding to produce an electromagnetic field which allows the motor or transformer to function and requires certain amount of electrical power in order to maintain the field. Therefore Active Power (KW) actually performs the work whereas Reactive Power (KVAr) sustains the electro-magnetic field.

his reactive power though is necessary for the equipment to operate correctly but could be interpreted as an undesirable burden on the power supply /Distribution companies. They in turn offer benefits or incentive to consumers to maintain higher power factor near to unity. Most industrial and commercial users are billed in KVAH units therefore higher the power factor lower the KVAH units and KVA demand thereby bringing in direct savings to consumers maintaining higher power factor. Some distribution companies offer discount on KWH billing depending on power factor values. Both way round customer benefits.

Why is it important to control Power Factor using right method?


Many consumers are not aware that Power Factor Correction system if not designed as per load characteristics, can itself result and become a cause for major operational problem in the network. Some of the issues can be :

  • Enhanced harmonic distortion.
  • Increased losses due to over or under compensation because of mismatch in load variation and response time of Power Factor Correction System.
  • Increased switching transients due to more no. of steps switched through Contactors.
  • Operational problems in capacitor bank and other network loads due to harmonic resonance.
  • Lot of power quality issues in network becomes visible after installation of inadequate PFC System
The above issues may not directly suggest that PF system is responsible but the fact of the matter is that wrongly designed Power Factor Correction system is one of the major cause of operational problems in electrical network.

With experience of last more than 20 years and with installation base of more than 20000 systems all over India and abroad offer their expertise in designing, supplying and installation of high quality Intelligent Power Factor Correction and Harmonic Filtration systems. These systems are designed on the basis of Power Quality Studies and analysis using advanced simulation tools. Further information is also collected from customer or project consultant. Some of these are :

  • Characteristics and switching time / variation frequency of major loads in the network along with the Rating of Main Transformer and major load feeders where compensation is possible.
  • Identifying balanced and unbalanced load condition in network.
  • Type and amplitude of harmonic distortion with individual harmonic content.

With above what we achieve for customer is a perfect and most optimized Power Factor Control. This results in enhancing power quality of network thus bringing savings to customer along with minimizing lot of operational problems. 




Monday, 18 January 2016

Hybrid System For Power Factor Correction And Active Harmonic Filtration System



Hybrid - Activcomp(PF Control) & Active Harmonic Filtration System

Hybrid Power conditioning system is a combination of Dynamic Activcomp Thyristor based Power Factor Correction System and IGBT fired Active Harmonic Filtration System offers most viable and economical solution for both Power Factor Compensation and Harmonic Mitigation. The designs offered by us are installed for compensation and Harmonic compliance of main transformer or at major load feeders. Though there are standard ratings but any design can be offered as per customer load characteristics and level of harmonic distortion.For more click below:

This is the best hybrid system we have ever produced.for power factor with harmonic filtration this is the most advanced and best solution.
go to our website for exploring ranges of product or contact  us for more details hurry.
Call us :(+91)-955 580 1801
Dont think twice about this. give us a enquiry and chance you will get better performance by us.

Thank You



Saturday, 16 January 2016

Power Factor Correction Systems




Power Factor Correction System




Hybrid Power conditioning system-

Hybrid Power conditioning system is a combination of Dynamic Activcomp Thyristor based Power Factor Correction System and IGBT fired Active Harmonic Filtration System offers most viable and economical solution for both Power Factor Compensation and Harmonic Mitigation. The designs offered by us are installed for compensation and Harmonic compliance of main transformer or at major load feeders. Though there are standard ratings but any design can be offered as per customer load characteristics and level of harmonic distortion.
http://www.powerqualityindia.com/pfc4.html




Active Harmonic Filter-

Active Harmonic Filter eliminate harmonic injected into the mains supply by non-linear loads. Its response time is extremely fast and is connected in parallel to the load which is to be compensated.
Active Harmonic filters use IGBT fired circuits to mitigate harmonic distortions in the load or the network of loads where they are installed. They can be separately installed on prominent individual loads generating harmonics or combined AHF unit on mains. The combination of both can also be used. It all depends on level of harmonics, type of operational issue for which it is being installed or level of compliance to standards as per utility / distribution company.
http://www.powerqualityindia.com/hf1.html


Power Quality Studies and Analysis-

NAAC ENERGY offers specialized services in the field of Power Quality Studies and Analysis.The objectives of our services can be different as per each customer specific requirements power quality requirement.

NECPL has vast experience and in the field. It has carried out more than 1200 PQ studies in last few years and offered successful solutions to many customers all over India and abroad.

Many Industrial and Commercial users from small, medium to large scale have gained immensely in terms of energy saving & improved efficiency of Network with recommendation and solutions offered by us. 
http://www.powerqualityindia.com/pqs.html



We have more details about all the solutions on our website kindly visit website:
http://www.powerqualityindia.com/

Contact us:http://www.powerqualityindia.com/contact-us.aspx

we hope you get information regarding power factor correction systems.wanna more details please comment below.

Monday, 7 December 2015

power factor correction is necessary in industries

power factor,power factor correction




power factor


POWER FACTOR is the ratio between the useful (true) power (kW) to the total (apparent) power (kVA) consumed by an item of a.c. electrical equipment or a complete electrical installation. It is a measure of how efficiently electrical power is converted into useful work output. The ideal power factor is unity, or one. Anything less than one means that extra power is required to achieve the actual task at hand. All current flow causes losses both in the supply and distribution system. A load with a power factor of 1.0 results in the most efficient loading of the supply. A load with a power factor of, say, 0.8, results in much higher losses in the supply system and a higher bill for the consumer. A comparatively small improvement in power factor can bring about a significant reduction in losses since losses are proportional to the square of the current.

Power factor correction is the term given to a technology that has been used since the turn of the 20th century to restore the power factor to as close to unity as is economically viable. This is normally achieved by the addition of capacitors to the electrical network which compensate for the reactive power demand of the inductive load and thus reduce the burden on the supply. There should be no effect on the operation of the equipment. To reduce losses in the distribution system, and to reduce the electricity bill, power factor correction, usually in the form of capacitors, is added to neutralize as much of the magnetizing current as possible. Capacitors contained in most power factor correction equipment draw current that leads the voltage, thus producing a leading power factor. If capacitors are connected to a circuit that operates at a nominally lagging power factor, the extent that the circuit lags is reduced proportionately. Typically the corrected power factor will be 0.92 to 0.95. Some power distributors offer incentives for operating with a power factor of better than 0.9, for example, and some penalize consumers with a poor power factor. There are many ways that this is metered but the net result is that in order to reduce wasted energy in the distribution system, the consumer is encouraged to apply power factor correction. Most Network Operating companies now penalize for power factors below 0.95 or 0.9.

Why improve power factor ?

 The benefits that can be achieved by applying the correct power factor correction are: Environmental benefit. Reduction of power consumption due to improved energy efficiency. Reduced power consumption means less greenhouse gas emissions and fossil fuel depletion by power stations.

 Reduction of electricity bills Extra kVA available from the existing supply Reduction of I2 R losses in transformers and distribution equipment Reduction of voltage drop in long cables. Extended equipment life – Reduced electrical burden on cables and electrical components.

what is your view about this article,please comment

for more :http://powerqualityindia.com/power-correction.html

call us@+91-9555801801

email:info@naacenergy.com




Wednesday, 2 December 2015

Automatic Power Correction System









In life line series p.f. Compensation system the power range goes from 50 kvar to 1000 kvar. They are designed for medium to large load networks. They are highly reliable, cost effective solution for maintaining high network power factor.
They are ultimate solution for compensation of unbalanced loads. The compensation is released by measuring the reactive power of the system, through 3 cts from all 3 phases. This makes it best suited even for most unbalanced loads apart from balanced loads.
Features
  • Incomer TP MCCB / ACB as per rating.
  • Micro processor based  Phasetrac range of 3 phase P.F. Controller with inbuilt Load Analyzer.
  • Inbuilt 3 Phase Energy Analyzer with DataLogger
  • Modular floor mounting system
  • Side/front louvers with Axial Flow/ Centrifugal Fan & Thermostat. Heavy Duty specially designed Capacitor Duty Contactors with high thermal current withstand capacity.
  • Measurement of A, V, PF, Cosϕ, W, VAR, VA (ΣW, ΣVA, ΣVar etc.)
  • Sense 1% of load current.
  • Automatic calculation of C/k value.
  • Program entry for targeted Cosϕ value
  • Number of capacitor steps are user definable
  • The consequent switching time between capacitor steps is adjustable from 2 to 50 sec.
  • Fuses / MCCBs for Backup protection