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高压低纹波电源的改进倍压器结构和参数优化方法
Improved Voltage Multiplier Structure and Parameter Optimization Method for High-Voltage Low-Ripple Power Supplies
| 作者 | Yangyang Hao · Donglai Zhang · Linlin Lyu · Qingye Yu |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2025年3月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 SiC器件 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 空间引力波探测 超低噪声高压电源 电容倍增器结构 参数优化 输出电压纹波 |
语言:
中文摘要
空间引力波探测卫星需要超低噪声高压电源。为满足需求,提出改进电容倍压器结构和参数选择流程。该结构对传统电容倍压电路进行微妙修改,实现超低噪声输出电压的优异性能。深入分析各种倍压电路,证明这些电路可通过拓扑修改相互转换。从物理角度证明在相同器件数量和电压增益条件下四倍压整流结构可使电容电压应力最小。扩展该结构推导最小化高压整流拓扑。以特定变换器为案例,对最小化整流结构进行微小修改并推导电容电压时域表达式。提出电路电容和电阻参数优化方法以平衡功率损耗和输出电压纹波。1000V样机验证了可行性。实验结果与理论分析一致,1000V输出电压纹波小于0.15。
English Abstract
Satellites for space gravitational wave detection missions require ultralow-noise, high-voltage power supplies. To meet this demand, this article presents an improved capacitor multiplier structure and a parameter selection procedure. The proposed structure introduces subtle modifications to the conventional capacitor multiplier circuit, achieving excellent performance in terms of ultralow-noise output voltage. First, an in-depth analysis of various voltage multiplier circuits is conducted, demonstrating that these circuits can fundamentally be transformed into one another through topological modifications. From a physical perspective, it is proven that the quadruple-voltage rectifier structure minimizes capacitor voltage stress under identical device count and voltage gain conditions. By extending this structure, a minimized high-voltage rectifier topology is derived. Using a specific converter as a case study, minor modifications are made to the minimized rectifier structure, and the time-domain expression for the capacitor voltage is derived. Furthermore, a method for optimizing the capacitor and resistor parameters in the circuit is proposed to balance power loss and output voltage ripple. The feasibility of the proposed converter is validated with a 1000 V prototype. Experimental results align with theoretical analyses, achieving an output voltage ripple of less than 0.15 at 1000 V output.
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SunView 深度解读
该高压低纹波倍压器技术对阳光电源特殊高压电源应用有创新参考价值。最小化电容应力拓扑可应用于储能系统的高压辅助电源,提高可靠性并降低成本。参数优化方法对阳光电源高压变换器的纹波抑制和效率平衡有借鉴意义。超低噪声输出特性对阳光电源拓展航天和精密测量领域电源市场有应用潜力,可满足高精度供电需求。