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一种基于不同尺寸子电池的无线功率传输模块新型非均匀阵列方法
A novel non-uniform array approach for wireless power transmission modules based on sub-cells of different sizes
语言:
中文摘要
摘要 光伏(PV)阵列作为光电转换器件,是依赖无线功率传输(WPT)的远距离系统的关键组成部分,可消除与地面物理连接的需求。为解决两个主要挑战——传统光伏阵列与圆形入射光斑之间的几何失配问题,以及由非均匀辐照引起的电流失配问题,本研究提出了一种新型光伏模块:一种适用于WPT应用的近圆形非均匀配置阵列。本文建立了综合仿真模型,用于评估并比较三种均匀配置阵列与两种几何结构不同的非均匀阵列的性能。这些阵列在两种不同的辐照分布和两种电气连接方案下进行了评估。所提出的非均匀阵列分别实现了83%和90.5%的子电池填充率,并将因电池发热导致的能量损耗降低了44.02%。与均匀阵列相比,在第一种连接方案下,非均匀阵列的能量利用率提高了14.97%,输出功率增加了46.04%。该设计显著缓解了与圆形光斑之间的几何失配问题,从而提升了光电转换效率。此外,本文还分析了高斯(GS)和平顶(FT)光束分布在两种连接方案(Connect 1和Connect 2)下对不同子阵列尺寸输出性能的影响。结果表明,在Connect 2方案下,非均匀子阵列表现出更平滑的I-V和P-V特性,简化了最大功率点跟踪(MPPT)过程,并在不同光束分布条件下提高了功率输出的稳定性。
English Abstract
Abstract Photovoltaic (PV) arrays serve as photoelectric conversion devices essential for remotely located systems relying on wireless power transmission (WPT), eliminating the need for physical contact with the ground. To address two major challenges—the geometric mismatch between conventional PV arrays and the circular incident light spot, and the current mismatch caused by non-uniform irradiation, this study proposes a novel PV module: a near-circular, non-uniform configuration array tailored for WPT applications. Comprehensive simulation models were developed to evaluate and compare the performance of three uniform configuration arrays with two geometrically distinct non-uniform arrays. These arrays were assessed under two different irradiation profiles and two electrical connection schemes. The proposed non-uniform array achieves sub-cell filling rates of 83 % and 90.5 %, respectively, and reduces energy loss due to cell heating by 44.02 %. Compared with uniform arrays, the non-uniform array under the first connection scheme shows a 14.97 % improvement in energy utilization and a 46.04 % increase in output power. This design significantly mitigates geometric mismatch with the circular light spot, thereby enhancing photoelectric conversion efficiency. Additionally, the influence of Gaussian (GS) and Flat-Top (FT) beam distributions on output performance across different patch sizes was examined under both connection schemes (Connect 1 and Connect 2). Results indicate that non-uniform patches under the Connect 2 scheme exhibit smoother I-V and P-V characteristics, simplifying maximum power point tracking (MPPT) and improving the stability of power output under varying beam profiles.
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SunView 深度解读
该非均匀光伏阵列技术对阳光电源无线充电及储能系统具有重要价值。针对圆形光斑的近圆形阵列设计可应用于充电桩的无线传输模块,提升光电转换效率14.97%。其非均匀辐照下的电流失配优化思路,可借鉴至SG系列逆变器的MPPT算法改进,特别是Connect 2方案下更平滑的I-V特性能简化最大功率点跟踪。子电池分级配置理念可启发ST系列储能PCS的模块化设计,通过SiC器件实现不同功率等级的灵活组合,降低44%的热损耗对提升PowerTitan系统热管理性能有参考意义。