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通过频率调节的WPT系统近场电磁能量流调控方法
Near Field Electromagnetic Energy Flow Regulation Method for WPT System via Frequency Adjustment
| 作者 | Haifeng Guo · Yifei Shao · Wubin Kong · Zirui Liu · Lianglin Li · Ronghai Qu |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2024年8月 |
| 技术分类 | 电动汽车驱动 |
| 技术标签 | 储能系统 PWM控制 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 不连续脉宽调制 输出电压谐波建模 双傅里叶积分 谐波频谱评估 数字控制电压源逆变器 |
语言:
中文摘要
提出通过频率调节的无线电力传输系统近场电磁能量流调控方法。该方法利用分布式耦合特性参数,通过频率调节优化能量流分布,增强双侧耦合并实现稳定功率输出。理论分析和实验结果验证所提方法有效改善WPT系统能量传输效率和稳定性。
English Abstract
Compared to continuous pulsewidth modulation (CPWM) strategies, scattered output harmonics introduced by discontinuous PWM (DPWM) can cause increased loss, vibration, and noise in motor drive applications. An accurate assessment of the harmonic spectrum is crucial for comparing and improving the output performance of DPWM. However, solving the frequency-domain analytical expressions of output harmonics for DPWM is challenging due to its discontinuous piecewise characteristic. In this article, a multifrequency equivalent output voltage harmonic modeling method for DPWM of digitally controlled two-level voltage source inverter (VSI) is presented. By equating discontinuous DPWM with a multifrequency continuous modulation process, a scalable output voltage harmonic model is established. The model utilizes double Fourier integrals and considers both symmetric regular sampling (SRS) and asymmetric regular sampling (ARS) processes. Using the presented model, detailed frequency-domain analytical expressions for the six most widely employed DPWM schemes are given. In addition, the characteristics and performance of the output voltage harmonic spectrum are investigated through analytical analysis, simulations, and experiments. The verification results demonstrate that the modeling method provides an accurate estimation of output voltage harmonics for digital DPWM at various carrier ratios.
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SunView 深度解读
该近场能量流调控研究对阳光电源无线充电效率优化有参考价值。频率调节优化能量流分布的方法可应用于阳光iSolarCloud平台无线充电智能控制,提升传输效率和功率稳定性。该技术对阳光电源提高无线充电系统性能有实用价值。