Isikhululo sokutshaja esinolwelo se-600kW 800kW seelori ezinzima
Ukufakelwa kombane kwezothutho olunzima “ngumda wokugqibela” wotshintsho lwamandla kwihlabathi liphela. Nangona iimoto zabakhweli kunye neeveni zokuhambisa izinto ezilula bezikhokela ekutshajweni, iimfuno zamandla ezinkulu zeelori ezinde, izithuthi zemigodi, kunye nezixhobo zokwakha ezinzima kudala zithathwa njengebhulorho ekude kakhulu kwitekhnoloji yangoku yebhetri kunye nokutshaja. I-MIDA Power (迈依达), inkokeli yehlabathi kwizisombululo zamandla aphezulu, inqumla ngokusemthethweni loo bhulorho ngokuqaliswa kweZitishi zayo ze-600kW kunye ne-800kW zeLiquid-Cooled Supercharging. Zenzelwe ukubonelela ngamandla amakhulu ngexesha elirekhodiweyo, ezi zikhululo zenzelwe ngokukodwa icandelo lezothutho olunzima. Ngokusebenzisa uyilo lwe-1000V kunye nolawulo oluphambili lobushushu olupholileyo olumanzi, i-MIDA ibonelela ngeziseko ezifunekayo zokutshaja ilori yombane yeClass 8 ngexesha elithathayo ixesha lokuphumla komqhubi elinyanzelekileyo. Oku akusiyo itshaja nje kuphela; yinjini yekhonkco elitsha lokubonelela ngehlabathi elingenakhabhoni.
1. Ukufakelwa kombane kwiLogistics: Umthetho wezorhwebo weHlabathi
Kwihlabathi elinzima lokuhambisa izinto ngokukhawuleza kunye nokuhambisa izinto ezinzima, ukutshintsha ukusuka kwiinjini zokutsha zangaphakathi ukuya kwiinjini zamandla ombane akusekho mfuneko. I-MIDA Power, kunye neminyaka yayo elishumi yobuchule bobunjineli, iphambili kolu tshintsho kunyeIsikhululo sokutshaja esinolwelo se-600kW 800kW seelori ezinzima.
Iindawo zothutho zibonelela ngendawo eyahlukileyo apho ixesha lokungasebenzi liyilahleko yengeniso ngqo.Isikhululo sokutshaja esinolwelo se-600kW 800kW seelori ezinzimaYenzelwe ukuhlangabezana nemijikelo enzima yeendawo zokuhambisa imithwalo zasezidolophini, izitishi zemithwalo zesikhululo seenqwelo-moya, kunye neendlela zokuhambisa imithwalo zaselwandle. Ngokusebenzisa iqonga le-1000V eliphezulu le-voltage, i-MIDA iqinisekisa ukuba iiveni zombane zesizukulwana esilandelayo kunye neelori ezinzima zichitha ixesha elincinci kwi-dispenser kwaye zichitha ixesha elingakumbi endleleni.
2. Uyilo loBugcisa: Ngaphakathi kwi-MIDA Power Stack
2.1 I-SiC MOSFET Topology kunye nokusebenza kakuhle
Iitshaja ze-DC zemveli zihlala zinengxaki yokwehla kokusebenza kakuhle xa imithwalo ingaphelelanga.Isikhululo sokutshaja esinolwelo se-600kW 800kW seelori ezinzimaisebenzisa i-topology ye-Silicon Carbide (SiC) MOSFET enezigaba ezininzi. Ngokungafaniyo neenkqubo ezisekwe kwi-IGBT eziqhelekileyo, i-SiC ivumela amaza okutshintsha aphezulu (ukuya kuthi ga kwi-100kHz), inciphisa ilahleko zokutshintsha nge-30%. Olu lwakhiwo lwenza kube lulaIsikhululo sokutshaja esinolwelo se-600kW 800kW seelori ezinzimaukugcina ukusebenza kakuhle okuphezulu kwe-96.5%.

ISIHLOMELO SOBUNGCALI: Iphepha eliMhlophe eliQinisekisiweyo le-MIDA Power Infrastructure
Esi sihlomelo sisebenza njengesiseko esibanzi sobugcisa sothotho lwe-MIDA Power DC Fast Charging. Sibonelela ii-CPO (iiCharge Point Operators), abaphathi beenqwelo-mafutha, kunye nabatyali-mali beziseko zophuhliso ngokuqonda okunzulu kwehardware, isoftware, kunye nezikhokelo zomthetho ezichaza uluhlu lweemveliso ze-MIDA zika-2026.
I. Uyilo lweZixhobo: IFiziksi yoGuqulo oluSebenza kakuhle
Eyona nto iphambili kwisikhululo ngasinye se-MIDA DC kukho isitaki sokuguqula amandla esisetyenziswa ngeendlela ezahlukeneyo sisebenzisa ubuchwepheshe bamva nje be-wide-bandgap semiconductor. Utshintsho lwethu ukusuka kwi-Silicon IGBTs zemveli ukuya kwi-IiMOSFET zeSilicon Carbide (SiC)imele utshintsho oluqhelekileyo kubuninzi bamandla kunye nokuqina kobushushu.
1.1 Ii-SiC MOSFET Topology kunye ne-LLC Resonant Converters
Iimodyuli zamandla ze-MIDA ezingama-30kW kunye ne-40kW zisebenzisa i-Ibhuloho Epheleleyo Eguquliweyo Yesigaba (PSFB)zidityaniswe neI-LLC Resonant Converterisigaba. Olu qwalaselo luvumelaUkutshintsha kweVolthi yeZero (ZVS)kuyo yonke i-load spectrum. Ngokususa ilahleko zokutshintsha ngexesha lesigaba sokuvula, sifikelela kwi-96.5% ephumelelayo yokuguqula. Ukusetyenziswa kwezinto zeSiC kuvumela ukutshintsha amaza angaphezulu kwe-100kHz, nto leyo enciphisa kakhulu umthamo wezinto ezinomtsalane ezifana nee-transformers ezisebenzisa i-frequency ephezulu kunye nee-inductors, nto leyo ekhokelela kwi-cabinet footprint encinci ngaphandle kokuphazamisa umbane ophumayo.
1.2 Ulawulo lokuPholisa kunye nokuBuyisela koMoya oQhelekileyo
Kwiindawo zoshishino nezorhwebo, ukusilela kwe-elektroniki kudla ngokubangelwa kukungcoliswa kwendalo. Ubunjineli be-MIDA bube nguvulindlela kwi-"Iindlela Zomoya Ezizimeleyo"uyilo. Igumbi langaphakathi lahlulwe ngokwe-hermetically: ii-semiconductors zamandla kunye neemagnethi zipholiswa ngetonela yomoya enoxinzelelo oluphezulu, ngelixa i-control logic, iimodyuli zonxibelelwano, kunye ne-HMI zigcinwe kwindawo evaliweyo, engenaluthuli. Oku kuqinisekisa ukuba nakwiindawo zangaphandle ezilinganiswe yi-IP54 okanye i-IP55, uthuli oluqhubayo okanye ukufuma akunakukwazi ukuvala iibhasi ze-high-voltage.
II. Umgangatho woBulumko: I-Algorithm yokuCwangcisa amandla e-AI-DES
Ukutshaja kwanamhlanje akusekuko nje ukuhambisa ii-kilowatts ezingavuthwanga, kodwa kumalunga nokulungiswa kwamandla akrelekrele.I-AI-DES (Ucwangciso lwaMandla aDynamic lwe-AI)iqonga lisebenza kwisakhelo esineenkalo ezintathu zengqiqo:
- Inqanaba 1: Ukuphendula kwiGrid-Edge:Itshaja ijonga i-local grid frequency kunye ne-voltage transients ngesantya sesampulu se-10kHz. Ukuba kufunyenwe ukungazinzi kwe-grid, inkqubo ye-AI-DES ingakwazi ukukhawulezisa ukuphuma kwayo ngaphakathi kwe-20ms ukuthintela ukuhamba kwe-circuit breaker, isebenza njenge-buffer kumnikezeli weenkonzo.
- Inqanaba lesi-2: Ukuphuculwa kweZithuthi-eziPhakathi:Isebenzisa i-ISO 15118 “Plug & Charge” telemetry, inkqubo ye-AI-DES ixoxisana nge-BMS yesithuthi ngendlela efanelekileyo yokutshaja. Ijonga ubushushu bebhetri, imeko yempilo (SoH), kunye nokumelana kwangaphakathi ukuthintela ukwaluphala kwangaphambi kwexesha kweeseli ze-lithium.
- Inqanaba lesi-3: Ulawulo lwezoQoqosho lweeNqwelo:Kwiindawo ezinkulu zokugcina amanzi, le nkqubo idibana neemarike zamandla. Ibeka phambili ukutshaja xa kukho iifestile zerhafu ephantsi kwaye ingasebenzisa iiNkqubo zangaphakathi zokugcina amandla ebhetri (i-BESS) ukwenza "ukusika i-Peak," ukuphepha iindleko eziphezulu ezibekwa ziinkonzo zamanzi ngexesha leeyure ezixakekileyo.
Ixesha lokuthumela: Agasti-08-2026
Itshaja ye-EV ephathekayo
Ibhokisi yodonga ye-EV yasekhaya
Isitishi setshaja seDC
Isikhululo sokutshaja seBESS
I-V2G V2H V2V V2L
Imodyuli yokutshaja ye-EV
Isixhumi sokutshaja se-DC
Izixhobo ze-EV