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Autoconsommation solaire : 12 actions pour gagner +20 à +40%
Autoconsommation solaire : 12 actions pour gagner +20 à +40%
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Augmentez votre taux d'autoconsommation de 20 à 40% sans investir dans de nouveaux panneaux. Découvrez 12 actions...

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Batterie Physique vs Virtuelle France 2026 : Comparatif Complet
Batterie Physique vs Virtuelle France 2026 : Comparatif Complet
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Batterie physique ou virtuelle pour votre installation photovoltaïque ? Découvrez notre comparatif complet 2026 avec...

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Deye Hybrid Inverter Configuration: Complete Engineering Manual 2026
Deye Hybrid Inverter Configuration: Complete Engineering Manual 2026
1674 views

Comprehensive technical guide to Deye hybrid inverter configuration: energy bus architecture, critical BMS...

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Photovoltaic Earthing: RGIE/NF C 15-100 BE/FR Standards
Photovoltaic Earthing: RGIE/NF C 15-100 BE/FR Standards
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Mise à la terre photovoltaïque conforme RGIE (Belgique) et NF C 15-100 (France) : résistance ≤30Ω, sections câbles...

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Dynamic Pricing Wallonia 2026: Solar Battery Profitability
Dynamic Pricing Wallonia 2026: Solar Battery Profitability
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Découvrez comment la tarification dynamique et le tarif Impact ORES transforment la rentabilité du stockage d'énergie...

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Technologies & chemicals

The world of storage batteries is undergoing rapid technological change. Understanding the different chemistries (LiFePO4, NMC, NCA), their advantages/disadvantages, and emerging technologies (V2G, V2H) allows you to make informed choices and anticipate future developments in your system.

This sub-category explores all battery technologies in depth: from lithium-ion chemistries to innovations such as V2G (Vehicle-to-Grid), which transforms your electric vehicle into a giant domestic battery.

LiFePO4 vs NMC vs NCA: which chemistry should you choose? LiFePO4 (Lithium Iron Phosphate) batteries dominate stationary home storage: maximum safety (no thermal runaway), exceptional lifespan (6,000-10,000 cycles), but lower energy density. NMC (Nickel Manganese Cobalt) batteries offer better density, but limited cycling (3,000-5,000) and high cost. NCA (Nickel Cobalt Aluminium) batteries are mainly used in electric vehicles (Tesla).

V2G/V2H/V2L: your EV as a domestic battery. Bidirectional technologies are revolutionising storage: V2G (Vehicle-to-Grid) allows energy to be fed back into the grid from the EV battery, V2H (Vehicle-to-Home) powers your home, and V2L (Vehicle-to-Load) provides 230V mobile electricity. Discover brand compatibility (Nissan Leaf, Hyundai Ioniq 5, Ford F-150 Lightning), compatible inverters, and regulations by country.

Also explore emerging technologies: sodium-ion batteries, redox flow batteries, gravity storage, and their prospects for industrialisation. The future of storage is taking shape now.

 
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