{"id":81375,"date":"2020-05-13T01:42:22","date_gmt":"2020-05-12T23:42:22","guid":{"rendered":"https:\/\/prohoster.info\/blog\/administrirovanie\/chto-nas-zhdet-v-wi-fi-7-ieee-802-11be"},"modified":"2020-05-13T01:42:22","modified_gmt":"2020-05-12T23:42:22","slug":"chto-nas-zhdet-v-wi-fi-7-ieee-802-11be","status":"publish","type":"post","link":"https:\/\/prohoster.info\/ro\/blog\/administrirovanie\/chto-nas-zhdet-v-wi-fi-7-ieee-802-11be","title":{"rendered":"Ce ne a\u0219teapt\u0103 \u00een Wi-Fi 7, IEEE 802.11be?","gt_translate_keys":[{"key":"rendered","format":"text"}]},"content":{"rendered":"<p>Recent, pe pia\u021b\u0103 au fost lansate dispozitive care suport\u0103 tehnologia Wi-Fi 6 (IEEE 802.11ax), despre care se discut\u0103 mult. Dar pu\u021bini \u0219tiu c\u0103 deja se dezvolt\u0103 noua genera\u021bie a tehnologiei Wi-Fi \u2014 Wi-Fi 7 (IEEE 802.11be). Ce va reprezenta Wi-Fi 7, afla\u021bi \u00een acest articol.<\/p>\n<p><img decoding=\"async\" alt=\"Ce ne a\u0219teapt\u0103 \u00een Wi-Fi 7, IEEE 802.11be?\" src=\"\/wp-content\/uploads\/2020\/05\/314a14b38471179e203684a5084cbc94.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<noindex><a rel=\"nofollow\" name=\"habracut\"><\/a><\/noindex><\/p>\n<h2>Povestea<\/h2>\n<p>\n\u00cen septembrie 2020, vom s\u0103rb\u0103tori a 30-a aniversare a proiectului IEEE 802.11, care a avut un impact semnificativ asupra vie\u021bii noastre. \u00cen prezent, tehnologia Wi-Fi, definit\u0103 de familia de standarde IEEE 802.11, este cea mai popular\u0103 tehnologie wireless utilizat\u0103 pentru conectarea la internet: Wi-Fi-ul transmite mai mult de jum\u0103tate din traficul utilizatorilor. \u00cen timp ce tehnologiile mobile se rebranding \u00een fiecare deceniu, de exemplu, \u00eenlocuind denumirea 4G cu 5G, pentru utilizatorii Wi-Fi, cre\u0219terea vitezelor de transfer de date \u0219i implementarea de noi servicii \u0219i func\u021bii se petrec practic neobservate. Doar c\u00e2\u021biva clien\u021bi se \u00eengrijoreaz\u0103 cu privire la literele \u201en\u201d, \u201eac\u201d sau \u201eax\u201d care urmeaz\u0103 dup\u0103 \u201e802.11\u201d pe cutiile echipamentelor. Dar acest lucru nu \u00eenseamn\u0103 c\u0103 Wi-Fi-ul nu evolueaz\u0103.<\/p>\n<p>Unul dintre dovezile evolu\u021biei Wi-Fi este cre\u0219terea brusc\u0103 a vitezelor nominale de transfer de date: de la 2 Mbit\/s \u00een versiunea din 1997 p\u00e2n\u0103 la aproape 10 Gbit\/s \u00een cel mai recent standard 802.11ax, cunoscut \u0219i sub numele de Wi-Fi 6. Wi-Fi-ul modern atinge acest avans de performan\u021b\u0103 datorit\u0103 unor structuri de semnal-code rapide, unor canale mai largi \u0219i utiliz\u0103rii tehnologiilor <noindex><a rel=\"nofollow\" href=\"https:\/\/ru.wikipedia.org\/wiki\/MIMO\">MIMO<\/a><\/noindex>.<\/p>\n<p>Pe l\u00e2ng\u0103 direc\u021bia principal\u0103 a re\u021belelor locale wireless de mare vitez\u0103, evolu\u021bia Wi-Fi include mai multe proiecte de ni\u0219\u0103. De exemplu, Wi-Fi HaLow (802.11ah) a fost o \u00eencercare de a aduce Wi-Fi pe pia\u021ba internetului wireless al lucrurilor. Wi-Fi-ul cu band\u0103 milimetric\u0103 (802.11ad\/ay) suport\u0103 viteze nominale de transfer de date de p\u00e2n\u0103 la 275 Gbit\/s, dar pe distan\u021be foarte mici.<\/p>\n<p>Noile aplica\u021bii \u0219i servicii legate de streaming video de \u00eenalt\u0103 rezolu\u021bie, realitate virtual\u0103 \u0219i augmentat\u0103, jocuri, birouri la distan\u021b\u0103 \u0219i calcul \u00een cloud, precum \u0219i necesitatea de a sus\u021bine un num\u0103r mare de utilizatori cu trafic intensiv \u00een re\u021belele wireless necesit\u0103 o performan\u021b\u0103 ridicat\u0103.<\/p>\n<h2>Obiectivele Wi-Fi 7<\/h2>\n<p>\n\u00cen mai 2019, subgrupul BE (TGbe) al grupului de lucru 802.11 al comitetului de standardizare pentru re\u021bele locale \u0219i metropolitane a \u00eenceput lucr\u0103rile la o nou\u0103 extensie a standardului Wi-Fi, care va cre\u0219te <b>l\u0103\u021bimea de band\u0103 nominal\u0103 de peste 40 Gb\/s<\/b> pe un canal de frecven\u021b\u0103 \u201etipic\u201d pentru Wi-Fi \u00een banda de frecven\u021be &lt;= 7 GHz. De\u0219i \u00een multe documente se men\u021bioneaz\u0103 \u201el\u0103\u021bimea de band\u0103 maxim\u0103 de cel pu\u021bin 30 Gb\/s\u201d, noul protocol de nivel fizic va asigura o vitez\u0103 nominal\u0103 de peste 40 Gb\/s. <\/p>\n<p>Un alt aspect important al dezvolt\u0103rii Wi-Fi 7 este <b>sprijinul pentru aplica\u021bii \u00een timp real<\/b> (jocuri, realitate virtual\u0103 \u0219i augmentat\u0103, controlul robo\u021bilor). Este remarcabil c\u0103, de\u0219i Wi-Fi gestioneaz\u0103 \u00een mod special traficul audio \u0219i video, s-a considerat mult timp c\u0103 asigurarea unui nivel standard de \u00eent\u00e2rzieri garantat reduse (c\u00e2teva milisecunde), cunoscut\u0103 \u0219i sub denumirea de re\u021bea sensibil\u0103 la timp, \u00een re\u021belele Wi-Fi este practic imposibil\u0103. \u00cen noiembrie 2017, echipa noastr\u0103 de la IPPI RAN \u0219i NIU HSE (nu considera\u021bi asta publicitate) a f\u0103cut o propunere relevant\u0103 \u00een cadrul grupului IEEE 802.11. Propozi\u021bia a st\u00e2rnit un interes considerabil, iar \u00een iulie 2018 a fost lansat un subgrup special pentru a studia mai departe aceast\u0103 problem\u0103. Deoarece aplica\u021biile \u00een timp real necesit\u0103 at\u00e2t viteze de transfer nominale ridicate, c\u00e2t \u0219i extinderea func\u021bionalit\u0103\u021bilor la nivel de canal, grupul de lucru 802.11 a decis s\u0103 dezvolte metode de suport pentru aplica\u021bii \u00een timp real \u00een cadrul Wi-Fi 7.<\/p>\n<p>O problem\u0103 important\u0103 legat\u0103 de Wi-Fi 7 este convie\u021buirea sa cu tehnologiile de re\u021bea mobil\u0103 (4G\/5G) dezvoltate de 3GPP \u0219i care opereaz\u0103 pe acelea\u0219i benzi de frecven\u021b\u0103 neautorizate. Este vorba despre LTE-LAA\/NR-U. Pentru a studia problemele legate de convie\u021buirea \u00eentre Wi-Fi \u0219i re\u021belele mobile, IEEE 802.11 a lansat Comitetul Permanent de Convie\u021buire (Coex SC). \u00cen ciuda numeroaselor \u00eent\u00e2lniri \u0219i chiar a unui seminar comun \u00eentre participan\u021bii 3GPP \u0219i IEEE 802.11 \u00een iulie 2019 la Viena, solu\u021biile tehnice nu au fost \u00eenc\u0103 aprobate. O posibil\u0103 explica\u021bie pentru aceast\u0103 activitate steril\u0103 este c\u0103 at\u00e2t IEEE 802, c\u00e2t \u0219i 3GPP nu doresc s\u0103 \u00ee\u0219i schimbe propriile tehnologii pentru a le alinia unele la altele. Astfel, <b>p\u00e2n\u0103 \u00een prezent nu este clar dac\u0103 discu\u021biile din cadrul Coex SC vor avea un impact asupra standardului Wi-Fi 7<\/b>.<\/p>\n<h2>Procesul de dezvoltare<\/h2>\n<p>\nDe\u0219i procesul de dezvoltare a Wi-Fi 7 se afl\u0103 \u00een stadiul incipient, p\u00e2n\u0103 acum au fost propuse aproximativ 500 de sugestii pentru noi func\u021bionalit\u0103\u021bi ale viitorului Wi-Fi 7, cunoscut \u0219i sub numele de IEEE 802.11be. Majoritatea ideilor sunt \u00eenc\u0103 \u00een discu\u021bie \u00een subgrupa be \u0219i nu s-a luat \u00eenc\u0103 o decizie asupra acestora. Alte idei au fost aprobate recent. Mai jos se va specifica clar care sugestii sunt aprobate \u0219i care sunt doar \u00een discu\u021bie.<\/p>\n<p><img decoding=\"async\" alt=\"Ce ne a\u0219teapt\u0103 \u00een Wi-Fi 7, IEEE 802.11be?\" src=\"\/wp-content\/uploads\/2020\/05\/a0a9d60d0408762a122dcd46fdce58a5.jpg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nIni\u021bial, s-a planificat ca dezvoltarea mecanismelor noi principale s\u0103 se finalizeze p\u00e2n\u0103 \u00een martie 2021. Varianta final\u0103 a standardului este a\u0219teptat\u0103 la \u00eenceputul anului 2024. \u00cen ianuarie 2020, \u00een subgrupa 11be, s-a exprimat preocuparea dac\u0103 dezvoltarea va respecta graficul av\u00e2nd \u00een vedere ritmul actual de lucru. Pentru a accelera procesul de dezvoltare a standardului, subgrupa a convenit s\u0103 aleag\u0103 un set mic de func\u021bii prioritare \u00eenalte care s\u0103 fie lansate p\u00e2n\u0103 \u00een 2021 (Release 1), iar restul s\u0103 fie l\u0103sat pentru Release 2. Func\u021biile prioritare \u00eenalte trebuie s\u0103 asigure o cre\u0219tere semnificativ\u0103 a performan\u021bei \u0219i includ suport pentru 320 MHz, 4K-QAM, \u00eembun\u0103t\u0103\u021biri evidente ale OFDMA de la Wi-Fi 6, MU-MIMO cu 16 fluxuri. <\/p>\n<p>Din cauza coronavirusului, grupul nu se \u00eent\u00e2lne\u0219te fizic \u00een prezent, dar organizeaz\u0103 regulat teleconferin\u021be. Astfel, dezvoltarea s-a \u00eencetinit pu\u021bin, dar nu s-a oprit. <\/p>\n<h2>Detalii despre tehnologie<\/h2>\n<p>\nS\u0103 analiz\u0103m principalele nout\u0103\u021bi ale Wi-Fi 7.<\/p>\n<ol>\n<li>Noul protocol la nivel fizic este o continuare a protocolului Wi-Fi 6 cu o dublare a l\u0103\u021bimii <b>benzii p\u00e2n\u0103 la 320 MHz, o dublare a num\u0103rului de fluxuri spa\u021biale MU-MIMO<\/b>, ceea ce cre\u0219te l\u0103\u021bimea de band\u0103 nominal\u0103 de 2&#215;2 = 4 ori. Wi-Fi 7 \u00eencepe, de asemenea, s\u0103 utilizeze modularea <b>4K-QAM<\/b>, ceea ce adaug\u0103 \u00eenc\u0103 20% la capacitatea nominal\u0103 de transmisie. Astfel, Wi-Fi 7 va oferi o vitez\u0103 nominal\u0103 de transfer de 2x2x1,2 = de 4,8 ori mai mare comparativ cu Wi-Fi 6: capacitatea nominal\u0103 maxim\u0103 a Wi-Fi 7 este de 9,6 Gbps x 4,8 = 46 Gbps. \u00cen plus, va fi realizat\u0103 o schimbare revolu\u021bionar\u0103 \u00een protocolul la nivel fizic, legat\u0103 de asigurarea compatibilit\u0103\u021bii cu versiunile viitoare de Wi-Fi, dar aceasta va r\u0103m\u00e2ne invizibil\u0103 pentru utilizatori. <\/li>\n<li>Schimbarea metodei de acces la canal pentru <b>suportul aplica\u021biilor \u00een timp real<\/b> va fi realizat av\u00e2nd \u00een vedere experien\u021ba IEEE 802 TSN pentru re\u021belele pe cablu. Discu\u021biile continue \u00een comitetul de standardizare se concentreaz\u0103 pe procedura de \u00eent\u00e2rzieri aleatorii la accesul \u00een canal, categoriile de servicii pentru trafic \u0219i, prin urmare, cozile separate pentru traficul \u00een timp real, precum \u0219i politicile de gestionare a pachetelor.<\/li>\n<li>Introducerea \u00een Wi-Fi 6 (802.11ax) <b>OFDMA <\/b>\u2013 metoda de acces \u00een canal prin divizarea timpului \u0219i frecven\u021bei (similar\u0103 cu cea utilizat\u0103 \u00een re\u021belele 4G \u0219i 5G) \u2013 ofer\u0103 noi oportunit\u0103\u021bi pentru o distribu\u021bie optim\u0103 a resurselor. Cu toate acestea, \u00een 11ax, OFDMA nu este suficient de flexibil. \u00cen primul r\u00e2nd, permite punctului de acces s\u0103 aloce pentru un dispozitiv client doar un bloc de resurse cu dimensiune fix\u0103. \u00cen al doilea r\u00e2nd, nu suport\u0103 transmiterea direct\u0103 \u00eentre sta\u021biile client. Ambele dezavantaje reduc eficien\u021ba spectral\u0103. \u00cen plus, inflexibilitatea mo\u0219tenit\u0103 de la OFDMA Wi-Fi 6 afecteaz\u0103 performan\u021ba \u00een re\u021belele dense \u0219i cre\u0219te latenta, ceea ce este critic pentru aplica\u021biile \u00een timp real. 11be va rezolva aceste probleme legate de OFDMA.<\/li>\n<li>Una dintre modific\u0103rile revolu\u021bionare aprobate pentru Wi-Fi 7 este suportul \u00eencorporat pentru <b>utilizarea simultan\u0103 a mai multor conexiuni paralele pe frecven\u021be diferite<\/b>, care este extrem de util at\u00e2t pentru viteze foarte mari de transfer de date, c\u00e2t \u0219i pentru o laten\u021b\u0103 extrem de sc\u0103zut\u0103. De\u0219i chip-urile moderne pot utiliza deja simultan mai multe conexiuni, de exemplu, \u00een benzile de 2.4 \u0219i 5 GHz, aceste conexiuni sunt independente, limit\u00e2nd astfel eficien\u021ba acestei opera\u021biuni. \u00cen 11be va fi g\u0103sit un nivel de sincronizare \u00eentre canale care va permite utilizarea eficient\u0103 a resurselor canalului, gener\u00e2nd modific\u0103ri semnificative \u00een regulile de protocol pentru accesul la canal.<\/li>\n<li>Utilizarea canalelor foarte largi \u0219i a unui num\u0103r mare de fluxuri spa\u021biale duce la o problem\u0103 de overhead ridicat, legat\u0103 de procedura de evaluare a st\u0103rii canalului, necesar\u0103 pentru MIMO \u0219i OFDMA. Aceste cheltuieli anuleaz\u0103 orice c\u00e2\u0219tig din cre\u0219terea vitezelor nominale de transfer de date. Se a\u0219teapt\u0103 ca <b>procedura de evaluare a st\u0103rii canalului s\u0103 fie revizuit\u0103.<\/b>.<\/li>\n<li>\u00cen contextul Wi-Fi 7, comitetul de standardizare discut\u0103 utilizarea unor metode de transmitere a datelor \"avansate\". Teoretic, aceste metode \u00eembun\u0103t\u0103\u021besc eficien\u021ba spectral\u0103 \u00een cazul unor retransmiteri, dar \u0219i \u00een cazul transmisiilor simultane \u00een aceea\u0219i direc\u021bie sau \u00een direc\u021bii opuse. Este vorba despre cererea automat\u0103 de retransmisie hibrid\u0103 (HARQ), folosit\u0103 acum \u00een re\u021belele celulare, despre modul full-duplex \u0219i despre accesul multiplu non-ortogonal (NOMA). Aceste metode sunt bine studiate \u00een literatur\u0103 din punct de vedere teoretic, \u00eens\u0103 nu este clar dac\u0103 c\u00e2\u0219tigul de performan\u021b\u0103 pe care \u00eel aduc va justifica eforturile necesare implement\u0103rii lor. \n<ul>\n<li>Utilizare <b>HARQ <\/b>este complicat\u0103 de urm\u0103toarea problem\u0103. \u00cen Wi-Fi, pentru a reduce suprapunerea, pachetele sunt lipite. \u00cen versiunile actuale de Wi-Fi, livrarea fiec\u0103rui pachet dintr-un pachet lipit este confirmat\u0103, iar dac\u0103 confirmarea nu sose\u0219te, pachetul este retransmis prin metodele protocolului de acces la canal. HARQ mut\u0103 retransmiterile de la nivelul canalului la nivelul fizic, unde nu mai exist\u0103 pachete, ci cuvinte codificate, iar limitele cuvintelor codificate nu coincid cu limitele pachetelor. Aceast\u0103 desincronizare complic\u0103 implementarea HARQ \u00een Wi-Fi. <\/li>\n<li>\u00cen ceea ce prive\u0219te <b>Full-Duplex<\/b>, \u00een prezent, \u00een re\u021belele celulare \u0219i \u00een re\u021belele Wi-Fi nu este posibil s\u0103 se transmit\u0103 simultan date at\u00e2t c\u0103tre punctul de acces (sta\u021bia de baz\u0103), c\u00e2t \u0219i de la acesta \u00een aceea\u0219i canal de frecven\u021b\u0103. Din punct de vedere tehnic, acest lucru se datoreaz\u0103 diferen\u021bei mari dintre puterea semnalului transmis \u0219i cea a semnalului recep\u021bionat. De\u0219i exist\u0103 prototipuri care combin\u0103 sc\u0103derea digital\u0103 \u0219i analogic\u0103 a semnalului transmis din cel recep\u021bionat, capabile s\u0103 ob\u021bin\u0103 semnal Wi-Fi \u00een timpul transmiterii lor, c\u00e2\u0219tigul pe care \u00eel pot oferi \u00een practic\u0103 poate fi neglijabil din cauza faptului c\u0103 la un moment dat fluxul descendent nu este egal cu cel ascendent (\u00een medie, \"\u00een firul hospitalar\", fluxul descendent este semnificativ mai mare). Aceast\u0103 transmitere bidirec\u021bional\u0103 va complica semnificativ protocolul. <\/li>\n<li>Dac\u0103 pentru a transmite mai multe fluxuri folosind MIMO este necesar s\u0103 avem mai multe antene pentru emi\u021b\u0103tor \u0219i receptor, atunci \u00een cazul accesului neortogonal, punctul de acces poate transmite simultan date c\u0103tre doi receptori cu o singur\u0103 anten\u0103. Diferitele variante de acces neortogonal sunt incluse \u00een ultimele specifica\u021bii 5G. Prototip <b>NOMA <\/b>Wi-Fi a fost creat pentru prima dat\u0103 \u00een 2018 la IPPI RAS (s\u0103 nu fie considerat o autopromovare). A demonstrat o cre\u0219tere a performan\u021bei de 30-40%. Avantajele tehnologiei dezvoltate sunt compatibilitatea sa \u00eenapoi: unul dintre cei doi receptori poate fi un dispozitiv \u00eenvechit care nu suport\u0103 Wi-Fi 7. \u00cen general, problema compatibilit\u0103\u021bii inverse este foarte important\u0103, deoarece \u00een re\u021beaua Wi-Fi pot func\u021biona simultan dispozitive de diferite genera\u021bii. \u00cen prezent, mai multe echipe din \u00eentreaga lume analizeaz\u0103 eficien\u021ba utiliz\u0103rii comune a NOMA \u0219i MU-MIMO, rezultatele c\u0103rora vor determina viitorul acestui abord\u0103ri. Continu\u0103m, de asemenea, s\u0103 lucr\u0103m la prototip: urm\u0103toarea versiune va fi prezentat\u0103 la conferin\u021ba IEEE INFOCOM \u00een iulie 2020.<\/li>\n<\/ul>\n<\/li>\n<li>\u00cen final, o alt\u0103 inova\u021bie important\u0103, dar cu un destin neclar, este <b>colaborarea coordonat\u0103 a punctelor de acces<\/b>. De\u0219i mul\u021bi furnizori au controlere centralizate pentru re\u021belele Wi-Fi de tip enterprise, capacit\u0103\u021bile acestor controlere au fost, \u00een general, limitate la configurarea parametrilor pe termen lung \u0219i alegerea canalului. Comitetul de standardizare discut\u0103 despre o colaborare mai str\u00e2ns\u0103 \u00eentre punctele de acces adiacente, care include planificarea coordonat\u0103 a transmisiilor, beamforming (transmisia direc\u021bionat\u0103 a semnalului) \u0219i chiar sisteme MIMO distribuite. Unele dintre abord\u0103rile discutate utilizeaz\u0103 suprimarea secven\u021bial\u0103 a interferen\u021belor (aproape aceea\u0219i idee cu NOMA). De\u0219i abord\u0103rile pentru coordonarea 11be nu sunt \u00eenc\u0103 dezvoltate, nu exist\u0103 nicio \u00eendoial\u0103 c\u0103 standardul va permite punctelor de acces de la diferi\u021bi produc\u0103tori s\u0103 coordoneze programul transmisiilor pentru a reduce interferen\u021ba reciproc\u0103. \u00cen ceea ce prive\u0219te alte abord\u0103ri mai complexe (de exemplu, MU-MIMO distribuit), implementarea lor \u00een standard va fi mai dificil\u0103, de\u0219i anumi\u021bi membri ai grupului sunt hot\u0103r\u00e2\u021bi s\u0103 fac\u0103 acest lucru \u00een cadrul Release 2. Indiferent de rezultat, soarta metodelor de coordonare a punctelor de acces r\u0103m\u00e2ne neclar\u0103. Chiar \u0219i incluse \u00een standard, ele ar putea s\u0103 nu ajung\u0103 pe pia\u021b\u0103. O situa\u021bie similar\u0103 a avut loc \u0219i \u00een trecut, c\u00e2nd s-au f\u0103cut \u00eencerc\u0103ri de a reglementa transmisiile Wi-Fi cu solu\u021bii precum HCCA (11e) \u0219i HCCA TXOP Negotiation (11be). <\/li>\n<\/ol>\n<p>\nRezum\u00e2nd, se pare c\u0103 majoritatea propunerilor legate de primele cinci grupuri vor face parte din Wi-Fi 7, \u00een timp ce propunerile legate de ultimele dou\u0103 grupuri necesit\u0103 cercet\u0103ri suplimentare semnificative pentru a-\u0219i dovedi eficien\u021ba.<\/p>\n<h2>Mai multe detalii tehnice<\/h2>\n<p>\nDetalii tehnice despre Wi-Fi 7 pot fi citite <noindex><a rel=\"nofollow\" href=\"https:\/\/ieeexplore.ieee.org\/stamp\/stamp.jsp?tp=&amp;arnumber=9090146\">aici<\/a><\/noindex> (\u00een limba englez\u0103)<br \/>\n<br \/>Sursa: <a content=\"nofollow\" rel=\"nofollow\" href=\"https:\/\/habr.com\/ru\/post\/501266\/\">habr.com<\/a> <\/p>","protected":false,"gt_translate_keys":[{"key":"rendered","format":"html"}]},"excerpt":{"rendered":"<p>\u041d\u0435\u0434\u0430\u0432\u043d\u043e \u043d\u0430 \u0440\u044b\u043d\u043e\u043a \u0432\u044b\u0448\u043b\u0438 \u0443\u0441\u0442\u0440\u043e\u0439\u0441\u0442\u0432\u0430, \u043f\u043e\u0434\u0434\u0435\u0440\u0436\u0438\u0432\u0430\u044e\u0449\u0438\u0435 \u0442\u0435\u0445\u043d\u043e\u043b\u043e\u0433\u0438\u044e Wi-Fi 6 (IEEE 802.11ax), \u043e \u043a\u043e\u0442\u043e\u0440\u043e\u0439 \u043c\u043d\u043e\u0433\u043e \u0433\u043e\u0432\u043e\u0440\u044f\u0442. \u041d\u043e \u043c\u0430\u043b\u043e \u043a\u0442\u043e \u0437\u043d\u0430\u0435\u0442, \u0447\u0442\u043e \u0443\u0436\u0435 \u0441\u0435\u0439\u0447\u0430\u0441 \u0432\u0435\u0434\u0451\u0442\u0441\u044f \u0440\u0430\u0437\u0440\u0430\u0431\u043e\u0442\u043a\u0430 \u043d\u043e\u0432\u043e\u0433\u043e \u043f\u043e\u043a\u043e\u043b\u0435\u043d\u0438\u044f \u0442\u0435\u0445\u043d\u043e\u043b\u043e\u0433\u0438\u0438 Wi-Fi \u2014 Wi-Fi 7 (IEEE 802.11be). \u041e \u0442\u043e\u043c, \u0447\u0442\u043e \u0431\u0443\u0434\u0435\u0442 \u043f\u0440\u0435\u0434\u0441\u0442\u0430\u0432\u043b\u044f\u0442\u044c \u0441\u043e\u0431\u043e\u0439 Wi-Fi 7, \u0432 \u044d\u0442\u043e\u0439 \u0441\u0442\u0430\u0442\u044c\u0435. \u041f\u0440\u0435\u0434\u044b\u0441\u0442\u043e\u0440\u0438\u044f \u0412 \u0441\u0435\u043d\u0442\u044f\u0431\u0440\u0435 2020 \u0433\u043e\u0434\u0430 \u043c\u044b \u0431\u0443\u0434\u0435\u043c \u043e\u0442\u043c\u0435\u0447\u0430\u0442\u044c 30-\u043b\u0435\u0442\u0438\u0435 \u043f\u0440\u043e\u0435\u043a\u0442\u0430 IEEE [&hellip;]<\/p>\n","protected":false,"gt_translate_keys":[{"key":"rendered","format":"html"}]},"author":1,"featured_media":81376,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[688],"tags":[],"class_list":["post-81375","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=\"\u041d\u0435\u0434\u0430\u0432\u043d\u043e \u043d\u0430 \u0440\u044b\u043d\u043e\u043a \u0432\u044b\u0448\u043b\u0438 \u0443\u0441\u0442\u0440\u043e\u0439\u0441\u0442\u0432\u0430, \u043f\u043e\u0434\u0434\u0435\u0440\u0436\u0438\u0432\u0430\u044e\u0449\u0438\u0435 \u0442\u0435\u0445\u043d\u043e\u043b\u043e\u0433\u0438\u044e Wi-Fi 6 (IEEE 802.11ax), \u043e \u043a\u043e\u0442\u043e\u0440\u043e\u0439 \u043c\u043d\u043e\u0433\u043e \u0433\u043e\u0432\u043e\u0440\u044f\u0442.\" \/>\n\t<meta name=\"robots\" content=\"max-image-preview:large\" \/>\n\t<meta name=\"author\" content=\"Yuri Gagarin\"\/>\n\t<link rel=\"canonical\" href=\"https:\/\/prohoster.info\/ro\/blog\/administrirovanie\/chto-nas-zhdet-v-wi-fi-7-ieee-802-11be\" \/>\n\t<meta name=\"generator\" content=\"All in One SEO (AIOSEO) 5.0.2.1\" \/>\n\t\t<meta property=\"og:locale\" content=\"ro_RO\" \/>\n\t\t<meta property=\"og:site_name\" content=\"ProHoster | \u041a\u0443\u043f\u0438\u0442\u044c \u043d\u0430\u0434\u0435\u0436\u043d\u044b\u0439 \u0445\u043e\u0441\u0442\u0438\u043d\u0433 \u0434\u043b\u044f \u0441\u0430\u0439\u0442\u043e\u0432 \u0441 \u0437\u0430\u0449\u0438\u0442\u043e\u0439 \u043e\u0442 DDoS, VPS VDS \u0441\u0435\u0440\u0432\u0435\u0440\u044b\" \/>\n\t\t<meta property=\"og:type\" content=\"article\" \/>\n\t\t<meta property=\"og:title\" content=\"\ud83e\udd47\u0427\u0442\u043e \u043d\u0430\u0441 \u0436\u0434\u0435\u0442 \u0432 Wi-Fi 7, IEEE 802.11be? 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