具有 V2G 和 G2V 功能的电动汽车光伏阵列和电网接口车外充电器的电能质量改进和信号调节技术

Q1 Engineering
Shailendra Kumar;Tapesh Upadhyay;Om Hari Gupta
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引用次数: 0

摘要

在这项研究中,我们提出了一种基于光伏(PV)的离网充电系统,该系统利用电压源转换器(VSC)与电网集成。并网离板充电器的控制源自联合对数双曲余弦鲁棒稀疏自适应滤波器(JLHCAF)算法。该算法能在短时间内有效跟踪负载电流的基波分量,提供良好的动态响应。级联比例积分(PI)控制器用于控制电动汽车(EV)充/放电的双向降压-升压转换器,当电动汽车充电时,控制器降压运行;当电动汽车放电时,控制器升压运行。控制器的参考直流链路电压通过自适应 MPPT 技术得出。该系统的双向特性可实现多种功能,包括电网到车辆(G2V)、车辆到电网(V2G)、光伏源到电网(PV2G)、车辆到家庭(V2H)和光伏源到车辆(PV2V)操作。此外,该系统还能为关键的非线性负载供电。如结果所示,该控制策略可确保符合 IEEE 标准规定的电能质量要求。为了验证拟议系统的有效性,我们在动态条件下通过断开和重新连接家庭负载进行了测试。此外,我们还将车外充电系统置于太阳能光伏日照变化等实际条件下,并通过模拟和实验室实验原型对其稳态性能进行了评估。包括总谐波失真(THD)在内的结果支持对所开发充电系统的验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power Quality Improvement and Signal Conditioning of PV Array and Grid Interfaced Off-Board Charger for Electric Vehicles with V2G and G2V Capabilities
In this work, we present a photovoltaic (PV)-based off-board charging system integrated with the grid using a voltage source converter (VSC). The control of the grid-tied off-board charger is derived from the joint logarithmic hyperbolic cosine robust sparse adaptive filter (JLHCAF) algorithm. This algorithm effectively tracks the fundamental component of the load current in a short duration, providing a good dynamic response. Due to its robustness against impulsive interference, the JLHCAF outperforms other sparsity-aware robust algorithms The cascaded proportional-integral (PI) controller is used to control the bidirectional buck-boost converter for electric vehicle (EV) charging/discharging, which acts in buck operation if the EV is being charged and in boost operation if it is discharged. The reference DC link voltage for the controller is derived by using adaptive MPPT technique. The bidirectional properties of the system enable various functions, including grid-to-vehicle (G2V), vehicle-to-grid (V2G), PV source-to-grid (PV2G), vehicle-to-home (V2H), and PV source-to-vehicle (PV2V) operations. Additionally, the system can supply power to critical nonlinear loads. The control strategy ensures compliance with the power quality requirements set by the IEEE standard, as demonstrated in the results. To validate the effectiveness of the proposed system, we conducted tests under dynamic conditions by disconnecting and reconnecting household loads. Furthermore, the off-board charging system was subjected to actual conditions, such as variations in solar PV insolation, and its steady-state performance was evaluated through simulation and laboratory experimental prototypes. The results, including total harmonic distortion (THD), support the validation of the developed charging system.
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来源期刊
Chinese Journal of Electrical Engineering
Chinese Journal of Electrical Engineering Energy-Energy Engineering and Power Technology
CiteScore
7.80
自引率
0.00%
发文量
621
审稿时长
12 weeks
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