{"id":85029,"date":"2020-06-12T13:43:50","date_gmt":"2020-06-12T11:43:50","guid":{"rendered":"https:\/\/prohoster.info\/blog\/administrirovanie\/glubokoe-pogruzhenie-v-princzipy-raboty-wi-fi-6-ofdma-i-mu-mimo"},"modified":"2020-06-12T13:43:50","modified_gmt":"2020-06-12T11:43:50","slug":"glubokoe-pogruzhenie-v-princzipy-raboty-wi-fi-6-ofdma-i-mu-mimo","status":"publish","type":"post","link":"https:\/\/prohoster.info\/ro\/blog\/administrirovanie\/glubokoe-pogruzhenie-v-princzipy-raboty-wi-fi-6-ofdma-i-mu-mimo","title":{"rendered":"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.","gt_translate_keys":[{"key":"rendered","format":"text"}]},"content":{"rendered":"<p>\u00cen dezvolt\u0103rile sale, Huawei pune accent pe Wi-Fi 6. \u00centreb\u0103rile venite din partea colegilor \u0219i clien\u021bilor despre noua genera\u021bie a standardului ne-au determinat s\u0103 scriem un articol despre fundamentele teoretice \u0219i principiile fizice pe care le \u00eencorporeaz\u0103. Vom trece de la istorie la fizic\u0103, analiz\u00e2nd detaliat de ce sunt necesare tehnologiile OFDMA \u0219i MU-MIMO. Vom discuta \u0219i despre cum mediul de transmisie a datelor, complet reproiectat, a permis ob\u021binerea unei l\u0103\u021bimi de band\u0103 garantate \u0219i a unei reduceri a \u00eent\u00e2rzierilor, astfel \u00eenc\u00e2t acestea s\u0103 fie comparabile cu cele \u201ede operator\u201d. \u0218i asta \u00een condi\u021biile \u00een care re\u021belele moderne bazate pe 5G sunt mai costisitoare (\u00een medie de 20-30 de ori) dec\u00e2t re\u021belele indoor echivalente pe Wi-Fi 6.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/a1f673d6db16afb1b75b4bcce817ae50.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<noindex><a rel=\"nofollow\" name=\"habracut\"><\/a><\/noindex><br \/>\nPentru Huawei, acest subiect nu este deloc trivial: solu\u021biile cu suport pentru Wi-Fi 6 sunt printre cele mai inovatoare produse ale noastre din 2020, \u00een care au fost investite resurse enorme. Iat\u0103 un singur exemplu: cercet\u0103rile \u00een domeniul \u0219tiin\u021bei materialelor ne-au permis s\u0103 alegem un aliaj, utilizarea c\u0103ruia \u00een elementele radio ale punctului de acces a crescut raportul \u201esemnal - zgomot\u201d cu 2-3 dB: ne inclin\u0103m cu respect \u00een fa\u021ba lui Doron Ezri pentru aceast\u0103 realizare.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/3ad062e891087a97c1fb042ec6bcb684.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>Pu\u021bin istorie<\/h2>\n<p>\nIstoria Wi-Fi merit\u0103 s\u0103 fie \u00eenceput\u0103 din 1971, c\u00e2nd la Universitatea Hawaii, profesorul Norman Abramson \u00eempreun\u0103 cu un grup de colegi a dezvoltat, construit \u0219i lansat re\u021beaua wireless de transfer de date ALOHAnet.<\/p>\n<p>\u00cen 1980, a fost adoptat\u0103 un grup de standarde \u0219i protocoale IEEE 802, care descriu organizarea celor dou\u0103 straturi inferioare ale modelului de re\u021bea OSI cu \u0219apte straturi. A durat 17 ani pentru a a\u0219tepta lansarea primei versiuni 802.11.<\/p>\n<p>Odat\u0103 cu acceptarea standardului 802.11 \u00een 1997, cu doi ani \u00eenainte de apari\u021bia organiza\u021biei Wi-Fi Alliance, prima genera\u021bie a celei mai populare tehnologii de transmitere wireless a f\u0103cut un pas \u00een lumea mare. <\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/59db87fad264a297550ed2911b456191.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>Standardul IEEE 802. Genera\u021biile Wi-Fi<\/h2>\n<p>\nPrimul standard cu adev\u0103rat sus\u021binut pe scar\u0103 larg\u0103 de produc\u0103torii de echipamente a fost 802.11b. A\u0219a cum pute\u021bi observa, frecven\u021ba inova\u021biilor de la sf\u00e2r\u0219itul secolului XX a fost destul de stabil\u0103: schimb\u0103rile calitative necesit\u0103 timp. \u00cen ultimii ani, activitatea principal\u0103 a fost concentrat\u0103 pe \u00eembun\u0103t\u0103\u021birea mediului fizic de transmitere a semnalului. Pentru a \u00een\u021belege mai bine problemele moderne ale Wi-Fi, s\u0103 ne \u00eentoarcem la fundamentele sale fizice.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/2b3f01097f218c221e491a2589629901.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>S\u0103 ne amintim de fundamente!<\/h2>\n<p>\nUndelele radio sunt un caz special de unde electromagnetice \u2014 care se propaga de la sursa de perturba\u021bie a c\u00e2mpului electric \u0219i magnetic. Ele se caracterizeaz\u0103 prin trei parametri principali: vectorul de und\u0103, precum \u0219i vectorii intensit\u0103\u021bii c\u00e2mpurilor electric \u0219i magnetic. Toate trei sunt perpendiculare \u00eentre ele. Frecven\u021ba undei este denumit\u0103 cantitatea de oscila\u021bii repetate care se \u00eenghesuie \u00eentr-o unitate de timp.<\/p>\n<p>Toate acestea sunt fapte bine cunoscute. Totu\u0219i, pentru a ajunge la cap\u0103t, suntem nevoi\u021bi s\u0103 \u00eencepem cu \u00eenceputul.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/0e87fd032cbf67eaad0c7af5ee084c75.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nPe o scar\u0103 conven\u021bional\u0103 a domeniilor de frecven\u021b\u0103 ale radia\u021biei electromagnetice, banda de radio ocup\u0103 cea mai joas\u0103 (domeniu de frecven\u021b\u0103 joas\u0103) parte. Aceasta include unde electromagnetice cu frecven\u021be de oscila\u021bie \u00eentre 3 Hz \u0219i 3000 GHz. Toate celelalte domenii, inclusiv lumina vizibil\u0103, au o frecven\u021b\u0103 mult mai ridicat\u0103.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/139210f13343f9b9cc72b986a905bd60.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nCu c\u00e2t frecven\u021ba este mai mare, cu at\u00e2t mai mult\u0103 energie poate fi transmis\u0103 undei radio, \u00eens\u0103 totodat\u0103, aceasta se \u00eendoaie mai greu \u00een jurul obstacolelor \u0219i se atenuaz\u0103 mai repede. De asemenea, \u0219i invers este adev\u0103rat. Av\u00e2nd \u00een vedere aceste particularit\u0103\u021bi, pentru func\u021bionarea Wi-Fi au fost selectate dou\u0103 domenii de frecven\u021b\u0103 principale \u2014 2,4 GHz (banda de frecven\u021b\u0103 de la 2,4000 la 2,4835 GHz) \u0219i 5 GHz (benzile de frecven\u021b\u0103 5,170\u20145,330, 5,490\u20145,730 \u0219i 5,735\u20145,835 GHz).<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/edaa351760df9ee855da2f288dca42cd.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nUndele radio se propag\u0103 \u00een toate direc\u021biile, iar pentru ca mesajele s\u0103 nu se influen\u021beze reciproc din cauza efectului de interferen\u021b\u0103, banda de frecven\u021b\u0103 este \u00eemp\u0103r\u021bit\u0103 \u00een segmente \u00eenguste separate \u2014 canale cu aceasta sau acea <noindex><a rel=\"nofollow\" href=\"https:\/\/ru.wikipedia.org\/wiki\/%D0%9F%D0%BE%D0%BB%D0%BE%D1%81%D0%B0_%D0%BF%D1%80%D0%BE%D0%BF%D1%83%D1%81%D0%BA%D0%B0%D0%BD%D0%B8%D1%8F\">l\u0103\u021bime de band\u0103<\/a><\/noindex>. Pe schema de mai sus, se poate observa c\u0103 canalele adiacente 1 \u0219i 2, cu l\u0103\u021bimea de band\u0103 de 20 MHz, se vor interfere reciproc, iar 1 \u0219i 6 \u2014 nu.<\/p>\n<p>Semnalul din cadrul canalului este transmis prin intermediul unei unde radio la o frecven\u021b\u0103 purt\u0103toare specific\u0103. Pentru transmiterea informa\u021biei, parametrii undei pot <noindex><a rel=\"nofollow\" href=\"https:\/\/ru.wikipedia.org\/wiki\/%D0%9C%D0%BE%D0%B4%D1%83%D0%BB%D1%8F%D1%86%D0%B8%D1%8F\">fi modula\u021bi<\/a><\/noindex> pe frecven\u021b\u0103, amplitudine sau faz\u0103.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/93ee016f4833fdf59852d561d15517b7.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>Separarea canalelor \u00een domeniile de frecven\u021b\u0103 Wi-Fi<\/h2>\n<p>\nDomeniul de frecven\u021b\u0103 de 2,4 GHz este \u00eemp\u0103r\u021bit \u00een 14 canale par\u021bial suprapuse, cu o l\u0103\u021bime optim\u0103 de 20 MHz. C\u00e2ndva s-a considerat c\u0103 acest lucru este suficient pentru organizarea unei re\u021bele wireless complexe. \u00cen cur\u00e2nd s-a dovedit c\u0103 capacitatea domeniului se epuizeaz\u0103 rapid, astfel \u00eenc\u00e2t a fost ad\u0103ugat domeniul de 5 GHz, al c\u0103rui capacitate spectral\u0103 este mult mai mare. \u00cen el, pe l\u00e2ng\u0103 canalele de 20 MHz, este posibil\u0103 alocarea canalelor cu l\u0103\u021bimi de 40 \u0219i 80 MHz.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/847b3483f6cf8c0bbf0d201c7447147a.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nPentru a cre\u0219te eficien\u021ba utiliz\u0103rii spectrului de frecven\u021be radio, tehnologia de multiplexare cu divizarea ortogonal\u0103 a frecven\u021belor este acum pe scar\u0103 larg\u0103 utilizat\u0103.<noindex><a rel=\"nofollow\" href=\"https:\/\/ru.wikipedia.org\/wiki\/OFDM\">OFDM<\/a><\/noindex>).<\/p>\n<p>Aceasta implic\u0103 utilizarea, pe l\u00e2ng\u0103 frecven\u021ba purt\u0103toare, \u0219i a mai multor frecven\u021be subpurt\u0103toare \u00een aceea\u0219i band\u0103, ceea ce permite transmiterea simultan\u0103 a datelor. OFDM permite distribuirea traficului \u00eentr-un mod destul de convenabil, \u201egranular\u201d, dar, din cauza v\u00e2rstei sale \u00eenaintate, p\u0103streaz\u0103 o serie de dezavantaje semnificative. Printre acestea se num\u0103r\u0103 principiile de func\u021bionare conform protocolului de re\u021bea CSMA\/CA (Carrier Sense Multiple Access with Collision Avoidance), conform c\u0103rora, \u00een anumite momente, pe o frecven\u021b\u0103 purt\u0103toare \u0219i subpurt\u0103toare poate func\u021biona un singur utilizator.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/854af04dea5fa435d3b6c368edab5fb8.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>Fluxuri spa\u021biale<\/h2>\n<p>\nO modalitate important\u0103 de a cre\u0219te capacitatea re\u021belei wireless este utilizarea fluxurilor spa\u021biale.<\/p>\n<p>Punctul de acces con\u021bine mai multe module radio (unul, dou\u0103 sau mai multe), care sunt conectate la un anumit num\u0103r de antene. Aceste antene emit conform unui anumit model \u0219i modula\u021bie, iar noi primim informa\u021biile transmise prin mediu wireless. Fluxul spa\u021bial poate fi format \u00eentre o anten\u0103 fizic\u0103 specific\u0103 (modulul radio) al punctului de acces \u0219i dispozitivul utilizatorului. Datorit\u0103 acestui fapt, volumul total de informa\u021bii transmise de la punctul de acces cre\u0219te de mai multe ori \u00een raport cu num\u0103rul de fluxuri (antene). <\/p>\n<p>Conform standardelor actuale, \u00een banda de 2,4 GHz pot fi realizate p\u00e2n\u0103 la patru fluxuri spa\u021biale, iar \u00een banda de 5 GHz - p\u00e2n\u0103 la opt.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/08ff053be6a8d5da7a47c29f82fc80da.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\n\u00cen trecut, c\u00e2nd lucram \u00een benzile de 2,4 \u0219i 5 GHz, ne orientam doar dup\u0103 num\u0103rul de module radio. Prezen\u021ba celui de-al doilea modul radio oferea o flexibilitate suplimentar\u0103, permi\u021b\u00e2nd dispozitivelor abona\u021bilor mai vechi s\u0103 func\u021bioneze pe frecven\u021ba de 2,4 GHz, iar celor noi pe frecven\u021ba de 5 GHz. Odat\u0103 cu apari\u021bia celui de-al treilea \u0219i ulterior modulelor radio, au ap\u0103rut unele probleme. Elementele emi\u021b\u0103toare tind s\u0103 creeze interferen\u021be \u00eentre ele, ceea ce cre\u0219te costul dispozitivului din cauza necesit\u0103\u021bii unui proiect mai calitativ \u0219i a echip\u0103rii punctului de acces cu filtre compensatoare. A\u0219adar, abia recent a devenit posibil\u0103 sus\u021binerea simultan\u0103 a 16 fluxuri spatiale pe un singur punct de acces.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/a0b8c9e4dfeb8226f0cbf20e0f4168ab.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>Viteza practic\u0103 \u0219i teoretic\u0103<\/h2>\n<p>\nDatorit\u0103 mecanismelor de lucru ale OFDM, nu am putut ob\u021bine l\u0103\u021bimea de band\u0103 maxim\u0103 a re\u021belei. Calcula\u021biile teoretice pentru implementarea practic\u0103 a OFDM au fost realizate cu mult timp \u00een urm\u0103 \u0219i doar \u00een medii ideale, unde se a\u0219tepta \u00een mod previzibil un raport suficient de mare semnal-zgomot (SNR) \u0219i o probabilitate de eroare pe bit (BER). \u00cen condi\u021biile actuale de zgomot puternic pe toate benzile de frecven\u021b\u0103 radio relevante, indicatorii de l\u0103\u021bime de band\u0103 ai re\u021belelor bazate pe OFDM sunt dezam\u0103gitor de mici. \u0218i protocolul continua s\u0103 aib\u0103 aceste inconveniente p\u00e2n\u0103 c\u00e2nd tehnologia OFDMA (acces multiplu prin divizare ortogonal\u0103 a frecven\u021bei) a venit \u00een ajutor. Despre aceasta, mai \u00eencolo.<\/p>\n<h2>S\u0103 discut\u0103m despre antene<\/h2>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/81736055edbd08bc6faa05b9c997f015.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nA\u0219a cum \u0219ti\u021bi, fiecare anten\u0103 are un coeficient de amplificare, \u00een func\u021bie de care se formeaz\u0103 un model spa\u021bial al propag\u0103rii semnalului (beamforming) cu o anumit\u0103 arie de acoperire (nu lu\u0103m \u00een considerare reflexiile semnalelor etc.). Tocmai pe acest lucru s-au bazat \u00eentotdeauna ra\u021bionamentele designerilor \u00een leg\u0103tur\u0103 cu locul \u00een care ar trebui amplasate punctele de acces. Mult timp, forma modelului a r\u0103mas neschimbat\u0103 \u0219i doar a crescut sau a sc\u0103zut propor\u021bional cu caracteristicile antenei.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/d098c49bdb87b57a56bf6da61c558364.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nElementele antenelor moderne devin din ce \u00een ce mai gestionabile \u0219i permit modificarea dinamic\u0103 a modelului spa\u021bial al propag\u0103rii semnalului \u00een timp real.<\/p>\n<p>\u00cen partea st\u00e2ng\u0103, \u00een col\u021bul din sus, este prezentat principiul de propagare a undelor radio folosind o anten\u0103 omnidirec\u021bional\u0103 standard. Prin cre\u0219terea puterii semnalului, am putut modifica doar raza de acoperire, f\u0103r\u0103 a avea capacitatea de a influen\u021ba semnificativ calitatea utiliz\u0103rii canalului \u2014 KQI (Key Quality Indicators). Acest indicator este extrem de important pentru organizarea comunica\u021biilor \u00een condi\u021bii de mi\u0219care frecvent\u0103 a dispozitivului abonat \u00een mediu wireless.<\/p>\n<p>Solu\u021bia problemei a fost utilizarea unui num\u0103r mare de antene mici, a c\u0103ror sarcin\u0103 poate fi reglat\u0103 \u00een timp real, form\u00e2nd tipare de propagare \u00een func\u021bie de pozi\u021bia spa\u021bial\u0103 a utilizatorului. <\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/e7a24d744423300815f888932150fb3d.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nAstfel, am reu\u0219it s\u0103 ne apropiem de aplicarea tehnologiei MU-MIMO (Multi-User Multiple Input, Multiple Output). Cu ajutorul acesteia, punctul de acces formeaz\u0103 \u00een orice moment fluxuri de radia\u021bie direc\u021bionate tocmai spre dispozitivele abonatului.<\/p>\n<h2>De la fizic\u0103 la standardele 802.11<\/h2>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/833667b9f0e8d4abc170a0876ce6f632.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nPe m\u0103sur\u0103 ce standardele Wi-Fi s-au dezvoltat, principiile de lucru cu stratul fizic al re\u021belei s-au schimbat. Utilizarea altor mecanisme de modulare a permis \u2014 \u00eencep\u00e2nd cu versiunile 802.11g\/n \u2014 s\u0103 \u00eencap\u0103 \u00eentr-un slot de timp mult mai multe informa\u021bii \u0219i, prin urmare, s\u0103 func\u021bioneze cu un num\u0103r mai mare de utilizatori. \u00cen plus, acest lucru s-a realizat \u0219i datorit\u0103 utiliz\u0103rii fluxurilor spatiale. Iar noua flexibilitate \u00een ceea ce prive\u0219te l\u0103\u021bimea canalului a permis formarea unui num\u0103r mai mare de resurse pentru MIMO.<\/p>\n<p>Pentru anul urm\u0103tor este planificat\u0103 aprobatrea standardului Wi-Fi 7. Ce se va schimba odat\u0103 cu venirea acestuia? Pe l\u00e2ng\u0103 cre\u0219terea obi\u0219nuit\u0103 a vitezei \u0219i ad\u0103ugarea benzii de 6 GHz, va ap\u0103rea posibilitatea de a lucra cu canale agregate largi, cum ar fi 320 MHz. Acest lucru este deosebit de interesant \u00een contextul aplica\u021biilor industriale.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/8abb4c093b4273af89e4338658f9ff31.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>Capacitatea teoretic\u0103 de transmitere a Wi-Fi 6<\/h2>\n<p>\nFormula teoretic\u0103 de calculare a vitezei nominale de lucru a Wi-Fi 6 este destul de complex\u0103 \u0219i depinde de mul\u021bi parametri, \u00eencep\u00e2nd de la num\u0103rul de fluxuri spatiale \u0219i termin\u00e2nd cu informa\u021bia pe care o putem \u00eencorpora \u00een subportant\u0103 (sau subportantele, dac\u0103 sunt mai multe) \u00eentr-o unitate de timp.<\/p>\n<p>Dup\u0103 cum vede\u021bi, fluxurile spa\u021biale depind de multe lucruri. Cu toate acestea, \u00eenainte, cre\u0219terea num\u0103rului acestora, \u00eempreun\u0103 cu utilizarea STC (Codare Spa\u021biu-Timp) \u0219i MRC (Combinare Maximal\u0103 a Raportului), deteriora performan\u021ba solu\u021biei wireless \u00een ansamblu.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/a9c4a43b85a3635eaa01a2f40345dd08.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>Noile tehnologii cheie la nivel fizic<\/h2>\n<p>\nS\u0103 trecem la tehnologiile cheie la nivel fizic \u2014 \u0219i s\u0103 \u00eencepem cu primul nivel al modelului de re\u021bea OSI.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/87e924ee0455f4956e372d462a089887.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nS\u0103 ne amintim c\u0103 \u00een OFDM sunt utilizate un anumit num\u0103r de subportante care, f\u0103r\u0103 a se afecta reciproc, pot transmite un anumit volum de informa\u021bii. <\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/8a262d3d02891dea6f0102c52852cf3d.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\n\u00cen exemplul nostru, folosim banda de 5,220 GHz, care con\u021bine 48 de subcanale. Agreg\u00e2nd acest canal, vom ob\u021bine un num\u0103r mai mare de subportante, pentru fiecare dintre acestea aplic\u00e2ndu-se o schem\u0103 de modula\u021bie specific\u0103.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/da88e2e59f4f2016cc4b8f1d071ddd28.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\n\u00cen Wi-Fi 5 se utilizeaz\u0103 modula\u021bia cuadratic\u0103 256 QAM (Modula\u021bie cu Amplitudine Quadratica), care permite formarea, \u00een cadrul frecven\u021bei portante, a unui c\u00e2mp de 16 x 16 puncte, diferite prin amplitudine \u0219i faz\u0103. Inconvenientul const\u0103 \u00een faptul c\u0103, \u00een fiecare moment, o singur\u0103 sta\u021bie poate efectua transmisia pe frecven\u021ba portant\u0103.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/0adad807c784b82db3c606aa2b72a67f.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nMultiplexarea cu separarea ortogonal\u0103 a frecven\u021belor (OFDMA) provine din lumea operatorilor de telecomunica\u021bii mobile, s-a r\u0103sp\u00e2ndit simultan cu LTE \u0219i este utilizat\u0103 pentru organizarea downlink-ului (canalului de comunicare c\u0103tre abonat). Aceasta permite lucrul cu canalul la nivelul a\u0219a-numitelor unit\u0103\u021bi de resurse. Aceste unit\u0103\u021bi ajut\u0103 la \u00eemp\u0103r\u021birea blocului \u00een anumite componente. \u00cen cadrul blocului, putem s\u0103 nu lucr\u0103m strict cu un singur element de emisie (utilizator sau punct de acces), ci s\u0103 combin\u0103m zeci de elemente. Acest lucru permite ob\u021binerea de rezultate notabile.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/04b67b23cecb7f344bb2939bb9ac37fb.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\n<img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/16d94d57546ec50f3d06953e06b4d079.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>Simple conectarea canalelor \u00een Wi-Fi 6<\/h2>\n<p>\nConectarea canalelor (Channel Bonding) \u00een Wi-Fi 6 permite ob\u021binerea de canale combinate cu l\u0103\u021bimi de la 20 la 160 MHz. \u00cen plus, conectarea nu trebuie s\u0103 fie f\u0103cut\u0103 neap\u0103rat \u00een benzi adiacente. De exemplu, un bloc poate fi luat din banda de 5,17 GHz, iar al doilea \u2014 din banda de 5,135 GHz. Acest lucru permite construirea flexibil\u0103 a mediului radio, chiar \u0219i \u00een prezen\u021ba factorilor de interfera\u021bie puternic\u0103 sau c\u00e2nd se afl\u0103 \u00een vecin\u0103tatea altor sta\u021bii care emit constant.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/69c319cc01a7eba059896c076e985142.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>De la SIMO la MIMO<\/h2>\n<p>\nMetoda MIMO nu a fost \u00eentotdeauna cu noi. C\u00e2ndva, comunica\u021bia mobil\u0103 a fost limitat\u0103 la modul SIMO, care presupunea existen\u021ba mai multor antene la sta\u021bia abonatului, lucr\u00e2nd simultan pentru a primi informa\u021bii. <\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/4cba4cd72c8aaba5c86d5dedfd02b6e6.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nMU-MIMO este destinat s\u0103 transmit\u0103 informa\u021bie utilizatorilor, folosind \u00eentreaga capacitate antenar\u0103 disponibil\u0103. Aceasta elimin\u0103 restric\u021biile impuse anterior de protocolul CSMA\/CA, legate de trimiterea token-urilor pentru transmitere c\u0103tre dispozitivele de abonat. Acum, utilizatorii sunt grupa\u021bi, iar fiecare membru al grupului prime\u0219te partea sa din resursa fondului antenelor punctului de acces, f\u0103r\u0103 a a\u0219tepta r\u00e2ndul s\u0103u.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/736c90a63f7bfefc287f95fb3b62792a.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>Formarea fasciculului radio<\/h2>\n<p>\nO regul\u0103 important\u0103 a func\u021bion\u0103rii MU-MIMO este men\u021binerea unui mod de operare a fondului antenelor care s\u0103 nu duc\u0103 la suprapunerea undelor radio \u0219i pierderea informa\u021biei din cauza interferen\u021belor de faz\u0103.<\/p>\n<p>Aceasta necesit\u0103 calcule matematice complexe din partea punctului de acces. Dac\u0103 terminalul suport\u0103 aceast\u0103 func\u021bie, MU-MIMO \u00eei permite s\u0103 comunice punctului de acces cu ce \u00eent\u00e2rziere prime\u0219te semnalul pe fiecare anten\u0103 specific\u0103. Punctul de acces, la r\u00e2ndul s\u0103u, \u00ee\u0219i ajusteaz\u0103 antenele pentru a forma un fascicul direc\u021bionat optim.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/38d80d5d33e6b6c9d5095e39df118d70.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>Ce ne ofer\u0103 acest lucru \u00een general?<\/h2>\n<p>\nCercurile albe cu cifre din tabel marcheaz\u0103 scenariile actuale de utilizare a Wi-Fi-ului din genera\u021biile anterioare. Cercurile albastre (vezi ilustra\u021bia de mai sus) descriu capabilit\u0103\u021bile Wi-Fi 6, iar cele gri \u2013 o realitate nu foarte \u00eendep\u0103rtat\u0103.<\/p>\n<p>Principalele avantaje aduse de noile solu\u021bii ce suport\u0103 OFDMA sunt legate de unit\u0103\u021bile de resurse implementate la un nivel similar TDM (Time Division Multiplexing). Precedentul sistem Wi-Fi nu avea a\u0219a ceva. Acest lucru permite un control clar asupra l\u0103\u021bimii de band\u0103 alocate, asigur\u00e2nd un timp minim de trecere a semnalului prin mediu \u0219i nivelul de fiabilitate necesar. Din fericire, nimeni nu are \u00eendoieli c\u0103 indicatorii de fiabilitate Wi-Fi necesit\u0103 \u00eembun\u0103t\u0103\u021biri.<\/p>\n<p>Istoria se desf\u0103\u0219oar\u0103 \u00een spirale, iar situa\u021bia actual\u0103 este similar\u0103 cu cea care s-a format \u00een jurul Ethernet-ului. Atunci, s-a stabilit opinia c\u0103 mediu de transmisie CSMA\/CD (Carrier Sense Multiple Access with Collision Detection) nu ofer\u0103 nicio capacitate garantat\u0103. \u0218i a continuat p\u00e2n\u0103 la trecerea la IEEE 802.3z.<\/p>\n<p>\u00cen ceea ce prive\u0219te modelele generale de aplicare, dup\u0103 cum vede\u021bi, cu fiecare genera\u021bie de Wi-Fi, scenariile de utilizare devin din ce \u00een ce mai variate \u0219i mai sensibile la \u00eent\u00e2rzieri \u0219i la jitere. <noindex><a rel=\"nofollow\" href=\"https:\/\/ru.wikipedia.org\/wiki\/%D0%94%D0%B6%D0%B8%D1%82%D1%82%D0%B5%D1%80\">jiterele<\/a><\/noindex> \u0219i fiabilitate.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/d0840c3eb7544f903075d51c2e176b0a.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>\u00cenc\u0103 o dat\u0103 despre mediul fizic<\/h2>\n<p>\nDar acum s\u0103 discut\u0103m despre cum este format noul mediu fizic. Utiliz\u00e2nd CSMA\/CA \u0219i OFDM, cre\u0219terea num\u0103rului de puncte active (Active STA) a dus la o sc\u0103dere semnificativ\u0103 a l\u0103\u021bimii de band\u0103 a canalului de 20 MHz. Aceasta se datoreaz\u0103 tehnologiilor STC (Space-Time Coding) \u0219i MRC (Maximum Ratio Combining), care nu sunt foarte recente.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/f0eaaaaff340c4a77c2fb47453e99c38.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nOFDMA, prin utilizarea unit\u0103\u021bilor de resurs\u0103, poate interac\u021biona eficient cu sta\u021biile la distan\u021b\u0103 \u0219i cu putere mic\u0103. Avem posibilitatea de a lucra \u00een aceea\u0219i band\u0103 de frecven\u021b\u0103 cu utilizatori care consum\u0103 volume diferite de resurse. Un utilizator poate ocupa o unitate, iar altul poate folosi toate celelalte.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/7c5888e4a56e68fa06189cf1a80462f1.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<\/p>\n<h2>De ce nu a existat OFDMA \u00eenainte?<\/h2>\n<p>\n\u0218i \u00een cele din urm\u0103, \u00eentrebarea principal\u0103: de ce nu a existat OFDMA \u00eenainte? Din p\u0103cate, totul s-a datorat banilor.<\/p>\n<p>Mult timp, s-a considerat c\u0103 pre\u021bul modulului Wi-Fi trebuie s\u0103 fie minim. La lansarea protocolului \u00een exploatarea comercial\u0103 \u00een 1997, s-a decis c\u0103 costul de produc\u021bie al unui astfel de modul nu poate dep\u0103\u0219i $1. Ca urmare, dezvoltarea tehnologiei a urmat o cale suboptim\u0103. Aici nu lu\u0103m \u00een considerare LTE-ul operatorilor, unde OFDMA este folosit de mult timp. <\/p>\n<p>\u00cen cele din urm\u0103, grupul de lucru pentru Wi-Fi a decis s\u0103 preia aceste realiz\u0103ri din lumea operatorilor de telecomunica\u021bii \u0219i s\u0103 le transfere \u00een lumea re\u021belelor corporative. Sarcina principal\u0103 a fost trecerea la utilizarea unor elemente de calitate superioar\u0103, cum ar fi filtrele \u0219i oscilatoarele.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/ececca89a679e30db6090593a52fcecb.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nDe ce ne-a fost at\u00e2t de greu s\u0103 lucr\u0103m cu codific\u0103rile vechi MRC, cu interferen\u021b\u0103 sau f\u0103r\u0103 ea? Pentru c\u0103 mecanismul de formare a fasciculului MVDR (Minimum Variance Distortionless Response) cre\u0219te semnificativ num\u0103rul de erori, de \u00eendat\u0103 ce \u00eencerc\u0103m s\u0103 combin\u0103m un num\u0103r mare de puncte de transmisie. OFDMA a demonstrat c\u0103 problema este rezolvabil\u0103.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/0ae0c4646cbe55d183ae8d3d0c8016c4.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nLupta \u00eempotriva interferen\u021bei se bazeaz\u0103 acum pe matematic\u0103. Dac\u0103 fereastra de transfer al informa\u021biilor este suficient de lung\u0103, interferen\u021ba dinamic\u0103 generat\u0103 conduce la probleme. Noile algoritmi de func\u021bionare permit evitarea acestora, exclud\u00e2nd influen\u021ba nu doar a interferen\u021bei legate de transmiterea Wi-Fi, ci \u0219i a oric\u0103rei alte interferen\u021be care apare \u00een acest interval.<\/p>\n<p><img decoding=\"async\" alt=\"O aprofundare \u00een principiile de func\u021bionare ale Wi-Fi 6: OFDMA \u0219i MU-MIMO.\" src=\"\/wp-content\/uploads\/2020\/06\/6bf3f92f2762cc7d85ab350655819c1f.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nD datorit\u0103 luptei adaptive \u00eempotriva interferen\u021bei, putem ob\u021bine un c\u00e2\u0219tig de p\u00e2n\u0103 la 11 dB chiar \u0219i \u00een medii complexe \u0219i inegale. Utilizarea solu\u021biilor algoritmice proprii Huawei a permit ob\u021binerea unei optimiz\u0103ri semnificative exact acolo unde este nevoie \u2014 \u00een solu\u021biile indoor. Ce este bun \u00een 5G nu este neap\u0103rat bun \u00een mediu Wi-Fi 6. Abord\u0103rile Massive MIMO \u0219i MU-MIMO difer\u0103 \u00een cazul solu\u021biilor indoor \u0219i outdoor. Acolo unde este necesar, este justificat\u0103 utilizarea solu\u021biilor costisitoare, ca \u00een 5G. Dar sunt necesare \u0219i alte op\u021biuni, precum Wi-Fi 6, capabile s\u0103 asigure laten\u021be \u0219i alte indicatori pe care ne-am obi\u0219nuit s\u0103 le a\u0219tept\u0103m de la operatorii de telecomunica\u021bii.<\/p>\n<p>\u00cemprumut\u0103m de la ei acele instrumente care ne vor fi utile ca \u0219i consumatori corporativi, totul pentru a asigura un mediu fizic pe care ne putem baza.<\/p>\n<h2>***<\/h2>\n<p>\nApropo, nu uita\u021bi de numeroasele noastre webinarii privind nout\u0103\u021bile Huawei din 2020, desf\u0103\u0219urate nu doar \u00een segmentele de limb\u0103 rus\u0103, ci \u0219i la nivel global. Lista webinariilor pentru s\u0103pt\u0103m\u00e2nile urm\u0103toare este disponibil\u0103 la <noindex><a rel=\"nofollow\" href=\"https:\/\/e.huawei.com\/ru\/special_topic\/event\/2020q1\/ru-webinar-schedule-2020\">linkul<\/a><\/noindex>.<br \/>\n<br \/>Sursa: <a content=\"nofollow\" rel=\"nofollow\" href=\"https:\/\/habr.com\/ru\/company\/huawei\/blog\/506306\/\">habr.com<\/a> <\/p>","protected":false,"gt_translate_keys":[{"key":"rendered","format":"html"}]},"excerpt":{"rendered":"<p>\u0412 \u0441\u0432\u043e\u0438\u0445 \u0440\u0430\u0437\u0440\u0430\u0431\u043e\u0442\u043a\u0430\u0445 Huawei \u0434\u0435\u043b\u0430\u0435\u0442 \u0441\u0442\u0430\u0432\u043a\u0443 \u043d\u0430 Wi-Fi 6. \u0418 \u0432\u043e\u043f\u0440\u043e\u0441\u044b \u043e\u0442 \u043a\u043e\u043b\u043b\u0435\u0433 \u0438 \u0437\u0430\u043a\u0430\u0437\u0447\u0438\u043a\u043e\u0432 \u043e \u043d\u043e\u0432\u043e\u043c \u043f\u043e\u043a\u043e\u043b\u0435\u043d\u0438\u0438 \u0441\u0442\u0430\u043d\u0434\u0430\u0440\u0442\u0430 \u043f\u043e\u0434\u0442\u043e\u043b\u043a\u043d\u0443\u043b\u0438 \u043d\u0430\u0441 \u043a \u0442\u043e\u043c\u0443, \u0447\u0442\u043e\u0431\u044b \u043d\u0430\u043f\u0438\u0441\u0430\u0442\u044c \u043f\u043e\u0441\u0442 \u043e \u0442\u0435\u043e\u0440\u0435\u0442\u0438\u0447\u0435\u0441\u043a\u0438\u0445 \u043e\u0441\u043d\u043e\u0432\u0430\u0445 \u0438 \u0444\u0438\u0437\u0438\u0447\u0435\u0441\u043a\u0438\u0445 \u043f\u0440\u0438\u043d\u0446\u0438\u043f\u0430\u0445, \u0437\u0430\u043b\u043e\u0436\u0435\u043d\u043d\u044b\u0445 \u0432 \u043d\u0435\u0433\u043e. \u041e\u0442 \u0438\u0441\u0442\u043e\u0440\u0438\u0438 \u043f\u0435\u0440\u0435\u0439\u0434\u0451\u043c \u043a \u0444\u0438\u0437\u0438\u043a\u0435, \u043f\u043e\u0434\u0440\u043e\u0431\u043d\u043e \u0440\u0430\u0437\u0431\u0435\u0440\u0451\u043c\u0441\u044f, \u0437\u0430\u0447\u0435\u043c \u043d\u0443\u0436\u043d\u044b \u0442\u0435\u0445\u043d\u043e\u043b\u043e\u0433\u0438\u0438 OFDMA \u0438 MU-MIMO. \u041f\u043e\u0433\u043e\u0432\u043e\u0440\u0438\u043c \u0438 \u043e \u0442\u043e\u043c, \u043a\u0430\u043a \u043f\u0440\u0438\u043d\u0446\u0438\u043f\u0438\u0430\u043b\u044c\u043d\u043e \u043f\u0435\u0440\u0435\u0440\u0430\u0431\u043e\u0442\u0430\u043d\u043d\u0430\u044f [&hellip;]<\/p>\n","protected":false,"gt_translate_keys":[{"key":"rendered","format":"html"}]},"author":1,"featured_media":85030,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[688],"tags":[],"class_list":["post-85029","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-administrirovanie"],"aioseo_notices":[],"aioseo_head":"\n\t\t<!-- All in One SEO 5.0.2.1 - aioseo.com -->\n\t<meta name=\"description\" content=\"\u0412 \u0441\u0432\u043e\u0438\u0445 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