هندسة محولات رفع الجهد لمحطات الطاقة الشمسية والرياح وتخزين الطاقة BESS

تكوينات الملفات المقسمة ذات مخرجي الجهد المنخفض، وتوافقيات حامل PWM للعاكس، وتحديد معامل K وفق IEEE C57.110، وخفض انحياز التيار المستمر، والحجب الكهروستاتيكي.

1. Operational Challenges in Inverter-Coupled Transformers

Step-up transformers interfacing utility solar inverters, wind turbines, and BESS converters operate under continuous PWM harmonic distortion and thermal cycling.

2. Dual-LV (Split Winding) Technical Architecture

FeatureDual-LV Configuration (Dy11y11)Standard Single-LV Unit
Inverter Inputs2 Independent Inverters (2 × 1500 kVA)Single Inverter Input
LV-LV DecouplingHigh Impedance (ZLV1-LV2 ≥ 1.8 × ZHV-LV)Direct Cross-Talk Risk
Electrostatic ShieldCopper foil between HV and each LV windingStandard insulation barrier

3. Harmonic K-Factor Calculation (IEEE C57.110)

Transformer winding eddy losses under non-sinusoidal inverter load currents are calculated via the K-Factor:

K = ∑h=1h_{max} Ih2 · h2

Parameter Definitions:

  • h: Harmonic order (h = 3, 5, 7, 9, 11, …).
  • Ih: Normalized harmonic current as a fraction of fundamental current (Ih = ih / I1).

Solar PV and BESS transformers must specify K ≥ 4 to K ≥ 9 with transposed CTC winding conductors.

4. DC Bias Injection & Core Saturation Mitigation

To prevent half-cycle saturation from inverter DC offsets, core design flux density is derated by 5% - 8% (Bop ≤ 1.55 T).

*Reference: IEC 60076-16:2018; IEEE Std C57.110-2018.*