Solar PV Cable Sizing
Solar PV cable sizing determines the minimum conductor area for photovoltaic string and array cables that carry DC current from panels to the inverter. IEC 62548 specifies requirements for voltage drop, current-carrying capacity under elevated roof temperatures, and short-circuit protection. PV cables must withstand continuous operation at maximum power point current multiplied by a 1.25 safety factor.
Detailed Explanation
PV cable sizing presents unique challenges compared to conventional AC circuit design. DC string cables operate at high voltages (up to 1,500V for utility-scale systems) and carry the short-circuit current of the connected panels — which is only marginally higher than the operating current, making conventional overcurrent protection impractical for string cables. The design current is typically taken as 1.25 × Isc (short-circuit current of the string) to account for irradiance levels exceeding standard test conditions. Ambient temperatures near roof-mounted panels can exceed 70°C, requiring significant derating from tabulated values at 30°C. Cable insulation must be rated for UV exposure, and double-insulated cables (often designated H1Z2Z2-K) are required for DC circuits. Voltage drop is particularly important in large arrays where long cable runs to the inverter can waste valuable generated energy. IEC 62548 requires voltage drop to be limited so that power losses remain economically acceptable — typically below 1–2% for string cables and 1% for main DC cables. Earth fault detection requirements also influence conductor selection and earthing arrangements.
Standard References
| Standard | Clause | Relevance |
|---|---|---|
| IEC 62548 | Clause 7 | Cable sizing requirements for PV string and array wiring |
| BS 7671:2018 | Section 712 | Requirements for solar photovoltaic power supply installations |
Related Terms
Cable Sizing
Cable sizing is the engineering process of selecting the minimum conductor cross-sectional area that safely carries the ...
Voltage Drop
Voltage drop is the reduction in electrical potential along a conductor caused by its impedance when current flows throu...
Ambient Temperature Derating
Ambient temperature derating adjusts a cable's current-carrying capacity when the surrounding air or soil temperature di...
Cable Insulation Class
Cable insulation class defines the maximum continuous operating temperature and voltage rating of a cable's insulating m...