N1 HV Series hybrid inverter ya dace da 80-450V babban ƙarfin lantarki. lt inganta ingantaccen tsarin kuma rage farashin tsarin sosai. Ƙarfin caji ko fitarwa zai iya kaiwa 6kW kuma ya dace da yanayin aiki kamar VPP (Tsarin Wutar Wuta).
Caji / fitarwa
iko
Caji / fitarwa
inganci
150% PV
shigarwar oversizing
Goyi bayan aikace-aikacen sake fasalin AC
Haɗe-haɗe da Wutar Lantarki ta Virtual
| Samfura | N1-HV-3.0 | N1-HV-3.68 | N1-HV-5.0 | N1-HV-6.0 |
| Max. Shigar da PV na Yanzu [A] | 13.5/13.5 | |||
| Max. Ƙarfin Fitar da AC [VA] | 3000 | 3680 | 5000 | 6000 |
| Rage Wutar Batir [V] | 80-450 | |||
| Max. Yin Caji / Yin Fitar Yanzu [A] | 25/25 | |||
| Ƙarfin Ƙarfin Ajiye [W] | 3000 | 3680 | 5000 | 60000 |
| Ƙwaƙwalwar Ƙwararriyar Ƙarfin Ƙarfafawa, Duration [VA, s] | 4500,10 | 5520,10 | 7500,10 | 9000,10 |
N1 HV Series hybrid inverter ya dace da 80-450V babban ƙarfin lantarki. lt inganta ingantaccen tsarin kuma rage farashin tsarin sosai. Ƙarfin caji ko fitarwa zai iya kaiwa 6kW kuma ya dace da yanayin aiki kamar VPP (Tsarin Wutar Wuta).
Sauke Ƙari Dalilin faruwar hakan:
Gabaɗaya nau'ikan PV, akwatunan junction, igiyoyin DC, inverters, igiyoyin AC, tashoshi, da sauran sassan layin zuwa ƙasa gajeriyar kewayawa ko lalacewa Layer Layer, masu haɗin igiyoyi masu kwance cikin ruwa, da sauransu.
Magani:
Cire haɗin grid, da inverter, duba juriya na kowane ɓangaren kebul ɗin zuwa ƙasa, gano matsalar, kuma maye gurbin kebul ko haɗin haɗin da ya dace!
Dalilin faruwar hakan:
Akwai abubuwa da yawa da suka shafi ikon fitarwa na PV masu wutar lantarki, ciki har da adadin hasken rana, kusurwar karkatar da tsarin hasken rana, kura da toshewar inuwa, da yanayin yanayin yanayin.
Ƙarfin tsarin yana da ƙasa saboda tsarin tsarin da bai dace ba da shigarwa.
Szabin:
(1) Gwada ko ikon kowane nau'in PV ya isa kafin shigarwa.
(2) Wurin da aka girka ba shi da iska mai kyau, kuma zafin injin inverter ba ya bazuwa cikin lokaci, ko kuma ya fallasa hasken rana kai tsaye, wanda ke sa yanayin inverter ya yi yawa.
(3) Daidaita kusurwar shigarwa da daidaitawa na PV module.
(4) Duba tsarin don inuwa da ƙura.
(5) Kafin shigar da igiyoyi masu yawa, duba buɗaɗɗen wutar lantarki na kowane kirtani tare da bambancin da bai wuce 5V ba. Idan wutar lantarki aka gano ba daidai ba, duba wayoyi da masu haɗawa.
(6) Lokacin shigarwa, ana iya shiga cikin batches. Lokacin shiga kowace ƙungiya, yi rikodin ikon kowace ƙungiya, kuma bambancin ikon tsakanin igiyoyi bai kamata ya wuce 2% ba.
(7) Mai jujjuyawar yana da damar MPPT dual, kowace hanyar shigar da wutar lantarki shine kawai 50% na jimlar iko. A ka'ida, ya kamata a tsara kowace hanya tare da shigar da wutar lantarki daidai, idan kawai an haɗa shi da tashar MPPT ta hanya ɗaya, ƙarfin fitarwa zai ragu.
(8) Rashin haɗin haɗin kebul ɗin, kebul ɗin ya yi tsayi da yawa, diamita na waya ya yi ƙarfi sosai, akwai asarar wutar lantarki, kuma a ƙarshe yana haifar da asarar wutar lantarki.
(9) Gano ko ƙarfin lantarki yana cikin kewayon ƙarfin lantarki bayan an haɗa abubuwan da aka haɗa a jere, kuma ingancin tsarin zai ragu idan ƙarfin lantarki ya yi ƙasa sosai.
(10) Ƙarfin wutar lantarki mai haɗin grid AC na tashar wutar lantarki ta PV ya yi ƙanƙanta don biyan buƙatun fitarwa na inverter.
Dalilin faruwar hakan:
Dalilin wannan kuskure shine matsalar sadarwa tsakanin manyan CPUs da na biyu na hukumar sarrafa inverter.
Magani:
(1)Rfara inverter (kana buƙatar cire haɗin PV, AC Grid, da batura sannan kuma kunna shi).
(2) Idan matsalar ta ci gaba bayan sake kunna inverter, duba idan sigar software na allon sarrafa inverter daidai ne. Idan ba haka ba, gwada sake ƙona software ɗin.
(3) Idan matsalar ta ci gaba bayan kona software, maye gurbin allon sarrafawa.