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Isiteshi Sokushaja Esinamandla Kakhulu 120kW 150kW 180kW NACS Esinokupholisa Okumanzi

Isiteshi Sokushaja Esinamandla Kakhulu 120kW 150kW 180kW NACS Esinokupholisa Okumanzi

Esimweni esishintsha ngokushesha sengqalasizinda yezimoto zikagesi zomhlaba wonke (i-EV), ukushintshela ezixazululweni zokushaja ezijwayelekile nezisebenza kahle kakhulu kufinyelele eqophelweni elibalulekile lokukhula. Njengoba i-North American Charging Standard (i-NACS) ishintsha isuka kusixhumi se-Tesla esizimele iye esilinganisweni semboni esamukelwe kabanzi—manje esibizwa ngokuthi i-SAE J3400—abakhiqizi bagijimela ukuletha ihadiwe ehlangabezana nezidingo ezinzima zale ndawo entsha. Eqhulwini lalokhu kukhula kobuchwepheshe yi-MIDA Power (迈依达), umkhiqizi ovelele waseShayina ozinikele ekucindezeleni imingcele yobuchwepheshe bokushaja okusheshayo be-DC.

1. Umgogodla Wokuhamba Ebangeni Elide: Ukushaja Okunamandla Aphezulu Emgwaqweni Omkhulu

Imigwaqo emikhulu iyizindawo eziyinselele kakhulu engqalasizinda ye-EV. Abashayeli balindele isivinini, ukutholakala, kanye nokuhlangenwe nakho okuphezulu. I-MIDA Power'sIsiteshi Sokushaja Esinamandla Kakhulu 120kW 150kW 180kW NACS Esinokupholisa Okumanziyenzelwe ngqo izindawo zesevisi ezishintshashintshayo lapho umzuzu ngamunye ubalulekile khona.

Isiteshi Sokushaja Esinamandla Kakhulu 120kW 150kW 180kW NACS Esinokupholisa Okumanzi

2. Ukupholisa Okuthuthukisiwe Nokuzinza Kokushisa

Ukukhishwa kwamandla aphezulu okuqhubekayo kukhiqiza ukushisa okukhulu.Isiteshi Sokushaja Esinamandla Kakhulu 120kW 150kW 180kW NACS Esinokupholisa Okumanziisebenzisa ubuchwepheshe obuthuthukisiwe bokupholisa ukuqinisekisa ukuthi akukho ukucisha ngisho noma amazinga okushisa angama-40°C. Lokhu kuzinza kutholakala nge-algorithm ye-MIDA ethi “Smart-Chiller”, elawula ukuhamba kokupholisa ngokusekelwe ku-telemetry yebhethri yemoto yesikhathi sangempela.


ISITHASISELO SOBCHWEPHESHE: Iphepha Elimhlophe Elichaza Ingqalasizinda Yamandla e-MIDA

Lesi sithasiselo sisebenza njengesisekelo esiphelele sobuchwepheshe sochungechunge lwe-MIDA Power DC Fast Charging. Sihlinzeka ngama-CPO (Charge Point Operators), abaphathi bemikhumbi, kanye nabatshalizimali bengqalasizinda ngokuqonda okujulile kwehadiwe, isofthiwe, kanye nezinhlaka zomthetho ezichaza uhlu lwemikhiqizo ye-MIDA ka-2026.

I. Ukwakhiwa Kwehadiwe: I-Fiziksi Yokuguqulwa Okusebenzayo Kakhulu

Enhliziyweni yesiteshi ngasinye se-MIDA DC kukhona i-modular power conversion stack esebenzisa ubuchwepheshe be-semiconductor be-wide-bandgap bamuva. Ushintsho lwethu kusuka kuma-Silicon IGBT endabuko ukuya kuma-Ama-MOSFET e-Silicon Carbide (SiC)imelela ushintsho olujwayelekile ekubuneni kwamandla kanye nokuqina kokushisa.

1.1 I-SiC MOSFET Topology kanye ne-LLC Resonant Converters

Amamojula kagesi e-MIDA angu-30kW kanye no-40kW asebenzisa i-Ibhuloho Eligcwele Elishintshiwe Ngesigaba (i-PSFB)kuhlanganiswe ne-Isiguquli se-LLC Resonantisigaba. Lokhu kulungiselelwa kuvumelaUkushintsha kwe-Zero Voltage (ZVS)kulo lonke ububanzi bomthwalo. Ngokususa ukulahlekelwa kokushintsha ngesikhathi sesigaba sokuvula, sifinyelela ukusebenza kahle kokuguqulwa okuphezulu okungu-96.5%. Ukusetshenziswa kwezinto ze-SiC kuvumela ukushintsha amaza adlula i-100kHz, okunciphisa kakhulu ivolumu ebonakalayo yezingxenye zamagnetic njenge-transformers ezivame kakhulu kanye nama-inductor, okuholela ekutheni kube nokunyakaza kwekhabhinethi okuncane kakhulu ngaphandle kokubeka engcupheni ukuphuma kwamandla.

1.2 Ukupholisa Nokuphathwa Kwemibhobho Yomoya Ehlukanisiwe

Ezindaweni zezimboni nezentengiselwano, ukwehluleka kwe-elekthronikhi kuvame ukubangelwa ukungcoliswa kwemvelo. Ubunjiniyela be-MIDA bube yiphayona le"Imigudu Yomoya Ehlukanisiwe"umklamo. Igumbi langaphakathi lihlukaniswe ngokwe-hemetically: ama-semiconductor kagesi kanye nama-magnetic kupholiswa ngomhubhe womoya ocindezelwe kakhulu, kuyilapho i-control logic, amamojula okuxhumana, kanye ne-HMI kugcinwe endaweni evaliwe, engenalo uthuli. Lokhu kuqinisekisa ukuthi ngisho nasezintweni zangaphandle ezilinganiselwe yi-IP54 noma i-IP55, uthuli oluqhubayo noma umswakama ngeke kukwazi ukuvala amabha amabhasi ane-voltage ephezulu.

II. Isendlalelo Sobuhlakani: I-Algorithm Yokuhlela Amandla ye-AI-DES

Ukushaja kwesimanje akuseyona nje into yokuletha ama-kilowatts angavuthiwe; kumayelana nokuhlelwa kwamandla okuhlakaniphile.I-AI-DES (Ukuhlelwa Kwamandla Ashukumisayo e-AI)ipulatifomu isebenza ngohlaka olunengqondo olunezigaba ezintathu:

  • Isigaba 1: Ukusabela Kwegridi-Edge:Ishaja iqapha imvamisa yegridi yendawo kanye ne-voltage transients ngesilinganiso sokusampula esingu-10kHz. Uma kutholakala ukungazinzile kwegridi, uhlelo lwe-AI-DES lungalawula ukuphuma kwamandla ngaphakathi kwama-20ms ukuvimbela ukuhamba kwe-circuit breaker yendawo, okusebenza njenge-buffer yomhlinzeki wosizo.
  • Isigaba 2: Ukuthuthukiswa Kwemoto Ephakathi:Isebenzisa i-telemetry ye-ISO 15118 ethi “Plug & Charge”, uhlelo lwe-AI-DES luxoxisana ngejika lokushaja elifanele ne-BMS yemoto. Lubheka izinga lokushisa lebhethri, isimo sempilo (i-SoH), kanye nokumelana kwangaphakathi ukuvimbela ukuguga kwangaphambi kwesikhathi kwamaseli e-lithium.
  • Isigaba 3: Ukuphathwa Kwezimoto Zomnotho:Kuma-depot amakhulu, uhlelo luhlangana nezimakethe zamandla. Lubeka phambili ukushaja ngesikhathi samafasitela anentengo ephansi futhi lungasebenzisa izinhlelo zangaphakathi zokugcina amandla ebhethri (i-BESS) ukwenza "ukugunda okuphakeme," kugwenywe izindleko zokufunwa okuphezulu ezibekwa yizinsizakalo ngezikhathi zomsebenzi omatasa.

Isikhathi sokuthunyelwe: Agasti-08-2026

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