A Novel Algorithm for Four Phase (Multi-phase) Source Side Load Balancing and Power Factor Correction



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nterntonl Journl of Reent Trens n Engneerng, Vol, No. 3, My 009 A Novel Algorth for Four hse (Mult-phse Soure Se Lo Blnng n ower Ftor Correton Frst A. Zkr Husn, Seon B. R. K. Sngh n Thr C. S. N. Twr 3 Deprtent of Eletrl & Eletrons Engneerng, Ntonl nsttute of Tehnology, Hrpur (H., n El: zhusn@yhoo.o Deprtent of Eletrl Engneerng, MNNT, Allh, (U., n El: rksngh@nnt..n 3 S Meorl nsttute of Tehnology, Bht Mhgon, Kush (U. n El: sntwr@rffl.o Astrt Due to the potentl enefts resultng fro the use of ore thn the onventonl three phses n trnssson, soe nterest hs lso grown n the re of ult-phse (phse orer ore thn three hnes n reent yers. Mult-phse los prtulrly n the for of nverter fe nuton otor rves sute to hgh power n spelze ppltons, re reevng growng ttenton n the lterture. Ths ult-phse soure for suh rve pplton y e erve fro trnsforer onneton (3- phse to 4-phse or y DC lnk 4-phse nverters. These soures wll fe the prole of unlne, hron storton n poor power ftor operton. n vew of these evelopents, ths pper els wth the supply se lo lnng n power ftor orreton n suh lo ruts. The propose openston shee uses the shunt urrent soure openston whose nstntneous vlues re eterne y the nstntneous syetrl oponent theory. An el openstor n ple of physl relzton of the openstor hs een propose n for of urrent ontrolle voltge soure nverter. The openston shees evelope n the pper re teste for ther vlty on 4-phse (4-wre & 5-wre ruts through extensve sultons for unlne long n phse outges. The sulton results of the openston theory n the el openstor verfy the propose openston etho. nex Ters Copenstor, Lo lnng, Mult-phse, ower ftor orreton. NTRODUCTON Although ult-phse nuton otor rves hve een roun for ore thn 3 ees, t s the lst fve yers or so tht hve seen treenous nrese n the volue of reserh relte to these rve systes ue to ther severl nherent enefts [-0] suh s reue torque pulston, hron ontent n urrent per phse wthout nresng the voltge per phse, hgher rellty n nrese power n the se fre s opre to ther three-phse ounterprt. Mult-phse nverter fe nuton otor rves (espelly 4-phse Footnote: JJCE09-EE_R_50 o, Zkr Husn. EEED, NT Hrpur, (H., n, Mole: 9-9887939 359 n 6-phse hve een foun to e qute prosng for hgh power rtngs n other spelze ppltons. The use of suh ult rves n eves y e sujete to phse outges, unlne s well s nonlner long slr to ther three-phse ounter prts. Suh ontons y le to vrety of unesrle effets on the supply syste suh s tonl losses n onnetng lnes n nterfng eves, oslltory torques n hnes, nrese rpple n retfers, lfuntonng n senstve equpents, hron n exessve neutrl urrents et. t s therefore esre to hve the lne power syste operton wth nu lower orer hrons even n the presene of suh opertons. A urrent lterture survey revels tht nuer of ethos hve een evolve for the openston of hrons n unlnes [-8] for the onventonl three phse systes. The jortes of the ethos re se on the nstntneous retve power theory [-6], theory of syetrl oponents [4-7], n referene fre theory [-4]. Utlzng these theoretl onepts, tehnques hve een evelope for lnng three phse lo [4-5], power ftor orreton [5-6]oltge regulton [-7] n eetng other ojetves. Ths pper resses the prole of lnng of n unlne 4-phse (ultphse lo n power ftor orreton on supply se extenng the well estlshe pproh [7] for 3-phsephse syste. Followng the pproh, the expressons of openston urrent for 4-phse (4-wre & 5-wre lo ruts hve een erve. The propose openston ethos hve een verfe y extensve sulton stues. The sulte results estlsh the vlty of the propose shee.. COMENSATON SYSTEM An el voltge soure s ssue to e onnete to n rtrry lo Z L, rwng unlne urrent fro the soure. To ke the soure urrents lne, n externl ontrolle urrent soure s propose to e onnete to the lo s shown n Fg.. Let t e lle 009 ACADEMY UBLSHER

nterntonl Journl of Reent Trens n Engneerng, Vol, No. 3, My 009 the openstor syste. elly t ust e ple of kng the soure urrent lne t esre power ftor. The pont of onneton of openstor to power syste s lle pont of oon onneton (CC. The propose openston shee n e pple to ether four-phse four-wre or four-phse fve-wre power syste. n four-phse four-wre str onnete lo, the oon pont of the lo n s solte fro N, the oon pont of soure where s n four-phse fve-wre syste, the neutrl pont s fore y onnetng the noes n n N n s lso onnete to the / openstor t ts oon pont n s shown n Fg.. Ths hs the vntge tht the openstor urrents,, n re urrents n nepenent ruts, n eh phse of the openstor n supply urrents nepenent of the other three phses whh perts to openste los ontnng zero sequene urrents. The shunt onneton of ontroller llows openstng hrons, retve power n syetres of soure urrents, use y non-lner n/or poor power ftor los. The expresson for openstor urrent wll e erve on the ss of nstntneous syetrl oponent nlyss of the lo urrent. N v s v s v s v s s s s s CC l l l l Lo Z L Lo Z L Lo Z L Lo Z L n' el urrent openstor Fg. Copenston shee for 4-phse str onnete lo.. NSTANTANEOUS SYMMETRCAL COMONENTS THEORY Aorng to Wgner et l [9], n unlne four phsors (urrents or voltges of four-phse syste n e resolve nto the four oponent systes of lne phsors (Fg. known s: The zero sequene syste (zero phse fferenes; Frst- (postve sequene syste (four phsors re sple 90 eg. reltve to eh other. The seon-sequene syste (two phsors re sple 80 eg. reltve to eh other, eh representng two phses, onsttutng two -phse zero sequenes n opposton; Thr-(negtve sequene systes (sequene n the opposte sense of rotton to tht of the frst- n sequene syste Let the four sequenes represente y ens of susrpts 0,,,3 n the orgnl unlne four-phse urrent phsors,,, wth phse sequene. The postve sequene oponents of lne fourphse urrents,,, hve orgnl phse sequene lke the orgnl unlne four-phse urrents. The other three sets of oponents re s shown n Fg.. 0 0 0 0 ( Zero sequene syste ( Frst-(ostve sequene syste ( Seon sequene syste ( Thr-(negtve sequene syste Fg. Syetrl Coponents of Four-hse Syste As the orgnl unlne four-phse phsors re resolve nto four oponents, the oponents when they re e yel the orgnl phsors. Therefore A. Four-phse opertor To express phsors lgerlly, let the four-phse oplex opertor e efne s, jπ / exp 0 j 0.. Any operton wth ths opertor wll result n shft y 90 0 s shown n the Fg. 3. 3 3 3 3 3 3 3 0 0 0 0 3 3 Fg. 3 hsor gr of the vrous powers of opertor Soe of the propertes of opertor re surzes n ( ( 360 009 ACADEMY UBLSHER

nterntonl Journl of Reent Trens n Engneerng, Vol, No. 3, My 009 0 90 0 j.0 0 80 j 0.0 ( 3 0 70 0 j.0 3 0 B. Trnsforton The syetrl oponents,, 3, 0 of four-phse syste efne ove y e represente n trx for y (3. 0 3 (3 3 3 The nverse reltonshp of equton (3 n e wrtten s 0 3 (/ 4 (4 3 3 Wth the onventonl rotton of urrent vetors n ounter-lokwse reton, the nstntneous vlue of the urrents n e eterne n n e expresse s follows. 0 3 (/ 4 (5 3 3 lese note tht the fferene etween (4 n (5 of phsor urrent n nstntneous urrent, the trnsfore urrents 0,, & 3 re the nstntneous syetrl oponents of phse urrents. Mthetlly, t n e seen tht nstntneous vetors n 3 re oplex onjugte to eh other n 0 s rel quntty, f nstntneous soure urrents re lne. The neutrl urrent wll e non-zero f n nstntneous urrent phsors re unlne n s lso equl to. 4 o The nstntneous syetrl oponentv 0 & v 3 of phse voltge v n e wrtten s n ter of s v v v v v 0 3 (/ 4 3 v 3 v v v V. CALCULATON OF COMENSATOR CURRENTS The prnple of openston s se on the ft tht t s possle to opute, the openstor urrent for syste n rel te shown n Fg. suh tht the soure urrent (whh s su of the lo urrent n the openstor urrent s lne n hs the esre phse ngle. Ths openstor urrent s lulte on the ss of nstntneous syetrl oponent nlyss of the lo urrent. An explt relton for the referene urrent wll e erve n ths seton y pplyng ult-phse nstntneous power syetrl oponent trnsforton. A openste soure s gong to hve lne supply urrents n therefore ts zero sequene oponents wll e zero. Tht s, s s s s 0 (7 The lne phse urrents t esre power ftor ngle φ n e trnslte wth the help of (5 & (6 nto yet nother equton (8 3 3 { vs vs vs vs} { s s s s} φ (8 The nstntneous power n 4-phse 5-wre syste s gven y v v v v (9 s s s s s s s s lvg jπ / Solvng (8, y tkng e we otn φ / ( A B (0 Where A vs j vs, B s j s Tkng tngent on oth ses of (0, the followng relton s otne. vss vss ξ ( vss vss Where, ξ tn(φ / Equton ( n e splfe n equton ( n e erve. vs vsξ s s vs v ( s Also (9 n e splfe to erve (3 s vs s vs lvg / (3 Eployng the ft (Fg. ( thts s, s, s n solvng (3 n ( together, the soure urrents re otne n s gven n (3. (6 36 009 ACADEMY UBLSHER

nterntonl Journl of Reent Trens n Engneerng, Vol, No. 3, My 009 vs vsξ vs vsξ s, ± lvg ( s, ± (4 v ( lvg s v s v s v s t s possle to wrte fro Fg p l p s p ( p,, (5 Usng (4 n (5, equton (6 s otne for genertng openstor urrent vs vsξ l l vg ( vs vs v s vsξ l l vg ( vs vs (6 vs vs ξ l l vg ( v s vs vs vs ξ l l vg ( vs vs Wth the vent of hgh spee DS proessor oputtonl spee hs reue sustntlly hene, relton for the openstor gven y (6 n e opute onlne n therefore ontrolle urrent soure n e relze s openstor for lo lnng. V. SMULATON RESULTS The propose openston shee for four-phse syste hs een verfe y sulton. n ths seton, the sulton results wll e presente n susse. A. Four-phse fve wre syste The syste shown n Fg. hs the followng speftons. The voltges v s (,, n penes Z (,, re gven n (7 n (8respetvely. v s 35.6sn(00π t * π / (7 Where * 0,,, 3 orrespons to phse,, respetvely Z 5 j0, Z 0 j0, Z 0 j0, Z 05 j05 (8 n the sulton results, the syste works wth unlne lo for one yle (0.0 se n runs for nother fve yle (0.0 se wth the propose openstor. t n e seen fro Fg. 4( n Fg. 4( tht the soure urrents ( s p ( p,, n lo urrents ( l p ( p,, re equl n unlne when openstor s off. At the te 0.0 se., the openstor s turne on the soure urrents eoe perfetly lne s shown n Fg. 4(. n orer to openste unlne lo urrents, the nstntneous openstor urrents ( p ( p,, eoe unlne orngly s shown n Fg. 4 (. Fg. 4. 4-phse 5-wre supply syste wth n wthout openstor The nstntneous powers (soure & lo powers n neutrl urrents (soure & lo neutrl urrents re plotte n Fg. 5. t n e seen fro Fg. 5( tht efore openston, tht s, when openstor s swthe off, soure power ( s n lo power ( l re equl n gntue n oslltng n nture ue to unlne n lo urrents. But fter openston when openstor s turne on the oslltng oponent of power n soure ttns stey stte vlue s n e seen fro Fg. 5 ( whle lo power s oslltng n nture s shown n Fg. 5 (. The power evelope n the openstor ( urng ts presene s lso foun unlne n shown n Fg. 5(. Moreover, the soure neutrl urrent ( ttns zero vlue when the openstor s turne on n n e seen fro Fg. 5( s t lnes the soure urrents. t n thus e nferre tht the su of the nstntneous openstor urrents s equl to lo neutrl urrent (. l n Fg. 5 Vrton of power n neutrl urrent for 4-phse 5-wre supply syste s N 009 ACADEMY UBLSHER 36

nterntonl Journl of Reent Trens n Engneerng, Vol, No. 3, My 009 The vrton of o-phsors-voltge n urrents shows unty power ftor operton wth openstor s t s event fro Fg. 6 t n e seen fro (8 tht penes re unlne n hve retve eleents, ut the urrents re not only lne ut lso operte t unty power ftor wth openstor Fg. 8 Vrton of power n neutrl urrent for the phse outge (, of lo for 4-phse 5-wre supply syste Fg. 6. (-( (:0 Sle soure voltges (sol lne, soure urrents (she lne lo urrents (hr sol lne 5-wre supply syste B. Lo openston for phse outges As stte erler tht vntge of ultphse los lke otor s n ts plty to operte wth phse outges. The otor opertes wth egre perforne n soure sees n unlne operton n therefore other los onnete to suh soure get ffete. The propose openstor hs lso een teste wth vrous onton of phse outges n t hs een foun tht t works stsftorly even wth two phses open (wth phse outges (, n 4- phse soure. The results re shown n Fg.7 to Fg. 9. Fg. 7 Vrton of lo urrents, soure urrents n openstor urrents when two phse (, re out (fro lo se fro 4-phse 5-wre syste. Fg. 9.(- ( (:0 Sle soure voltges (sol lne, soure urrents (she lne, lo urrents (hr sol lne n (e openstor urrents for phse outges (, 4-phse 5wre supply syste t n e oserve fro Fg. 7( n Fg. 8 ( tht the soure urrents n power re lne when openstor s on. The voltge n urrent wvefors t unty power ftor re portrye n Fg. 9. V. CONCLUSON resent pper onerns wth novel lgorth for lo lnng n power ftor orreton on soure se for 4-phse (ultphse lo rut n the event of lner unlne long n phse outges hve een propose. The propose shee hs een verfe y sultons usng MATLAB. t s foun tht unty power ftor operton of the soure s possle. A etle stuy on soure voltges, lo urrents, soure urrents, neutrl urrents n openstor urrents hs lso een e urng non-openstng n openstng pero. The vrtons of the lo, soure n openstor powers re lso nlyze. The sultons hve onfre unty power ftor operton of the soure n ll ses s evene y the voltge n urrent wvefors. t hs een shown tht unty power ftor operton of the soure s possle. An nterestng spet tht hs een oserve n the sulton stuy s tht 4-phse (ult-phse syste equppe wth ult-phse openstor n work wth 009 ACADEMY UBLSHER 363

nterntonl Journl of Reent Trens n Engneerng, Vol, No. 3, My 009 phse outges s hgh s n 4-phse syste wthout ny egrton n supply syste qulty- feture ost vlule for ultphse soures n ultphse nuton otor rves. REFERENCES [] E. E. Wr, H. Hrer, "relnry nvestgton of n nverter-fe 5- phse nuton otor", ro. EEol. 6, no. 6, pp. 980-984, 969. [] E. A. Klgsh n C.M. Ong, Hgh phse orer nuton otors-rt--desrpton n theoretl onsertons, EEE AS-0, no. pp. 47-53, 983 [3] E. A. Klgsh n C.M. Ong, "Hgh phse orer nuton otors-rt--experentl results", EEE AS- 0, no., pp.54-59, 983 [4] J. R. Fu, T. A. Lpo, "Dsturne free operton of ultphse urrent regulte otor rve wth n opene phse", EEE Trns. A-30, no.5, pp.67-74, 994 [5] Y. Zho, n T.A. Lpo, "Moellng n ontrol of ultphse nuton hne wth struturl unlne", rt- -Mhne oelng n ult-ensonl urrent regulton, EEE Trns, Energy onverson, EC-, no. 3, pp. 570-577, 996. [6] H. A. Tolyt n H. Xu, "A novel ret torque ontrol (DTC etho for fve phse nuton hne ro. Apple ower Eletrons onferene & Syposu (AEC-000, Annul EEE Conf., pp.6-68, 000. [7] G. K. Sngh, "Mult-phse nuton hne rve reserh- survey, Eletr. ower Syst. Res.ol. 6, pp. 39-47, 00 [8] C. B. Jon, C. Césr e Azeveo, A. M. N. L, n L. A. Rero, "Onlne estton of the sttor resstne n lekge nutne of four-phse nuton hne rve", EEE Trns. On ower Eletronsol. 9, no., pp. 0-5, 004. [9] J. Apsley n S. Wllson, "Anlyss of ultphse nuton hne wth wnng fults", EEE Trnstons on nustry ppltonsol. 4, no.3, pp. 465-47, 006. [0] G. Q. Bo n S.Z. Jng, A oulr ult-phse pernent hne optzton for ret propulson systes EEE Vehle ower propulson Conf., Chn, pp. -5, 008 [] L. Gyugy, "Retve power generton n ontrol y thyrstor ruts," EEE Trns. On n. Appl. A-5, no.5, pp. 5-53, 979 [] H. Akg,Y. Knzw, K. Fugt n A. Ne, "Generlze theory of nstntneous retve power n ts pplton, Eletrl Engg. n Jpnol. 03, no.4, pp. 58-66, 983. [3] H. Akg, Y. Knzw n A. Ne, "nstntneous retve power openstors oprng swthng eves wthout energy storge oponents," EEE Trns. n. Appl.ol. A-0, no.3, pp. 65-630, 984. [4] H, Akg, A. Ne n S. Atosh, "Control strtegy of tve power flters usng ult voltge-soure WM onverter, EEE Trns. n. Appl. vol.a-, no.3, pp. 460-465, 986 [5] M. Z. Elsek, "Blnng of unlne los usng stt vr openstors", Eletr..ow.Syst. Res., (, pp. 37-48, 987. [6] H. Wtne, R. M. Stephn n M. Arees, "New onepts of nstntneous tve n retve powers n eletrl systes wth gener los," EEE Trns. On ower Delveryol. 8, no., pp. 697-703, 993. [7] A. Kern n G. Shroer, "A novel pproh to power ftor ontrol n lnng proles," ro., EEE, ECON, 48-433, 994 [8] Y. Suh, T.A. Lpo, Moellng n nlyss of nstntneous n retve power for WM AC/DC onverter usng generlze unlne network, EEE Trns. on ower Delvery vol., n0.3, pp. 530-540, 006. [9] M. Ares n E.H. Wtn, "New ontrol lgorths for seres n shunt three-phse four wre tve power flters," EEE Trns. ower Delveryol., 0, no. 3, pp.649-656, 995. [0] eng n J.S. L, "Generlze nstntneous retve power theory for three-phse power systes," EEE Trns. nstruentton n esureentol. 45, no., pp. 93-97, 996. [] V. Sores,. Verelho n G. Mrques, "A ontrol etho for tve power flters uner unlne non snusol ontons, EE Conf. on power eletrons n spee rves, no.49, pp. 0-4, 996. []. Verelho, n G.D. Mrques, "An tve power flter n unlne urrent openstor," EEE Trns. On nustrl Eletronsol. 44, no.3, pp. 3-38, 997. [3] F. Z. eng, G.W. Ott, Jr., n D.J. As, "Hron n retve power openston se on the generlze nstntneous retve power theory for three-phse fourwre systes," EEE Trns.on power eletrosol. 3, no. 6, pp. 74-8, 998. [4]. Verelho G.D. Mrques, "A neutrl urrent eletrons openstor," EEE, ECON 98, pp. 83-936, 998. [5] V. Crens, N. Vzquez, C. Hernnes, S. Hort, "Anlyss n esgn of three-phse slng oe ontroller for shunt tve power flter," EEE power eletrons spelst onferene-esc'99, pp. 36-4, 999 [6] Y. Suh, T.A. Lpo, Moellng n nlyss of nstntneous n retve power for WM AC/DC onverter usng generlze unlne network, EEE Trns. On ower Delvery vol., no. 3, 530-540, 006 [7] A. Ghosh, A. Josh, "A new pproh to lo lnng n power ftor orreton n power struton syste," EEE Trns. On power elvery, Vol. 5, No., 000, pp. 47-4. [8] S. V. Vzuez, J.A. Snhez, J. M. Crrso, J.. Leon n E. Glvn, A oel-se ret power ontrol for three phse power onverter, EEE Ttns. On n. Eletrons, vol. 55, no.4, pp. 647-657, 008 [9] C. F. Wgner, R. D. Evns n C. L. Fortesue, Syetrl oponents, MGr-Hll, hpter XV, 933. 364 009 ACADEMY UBLSHER