【24h】

Flexible and Scalable Photovoltaic Curve Tracer

机译:柔性且可伸缩的光伏曲线示踪剂

获取原文

摘要

Current vs voltages (I-V) curves are needed to understand the electrical characteristics of photovoltaic (PV) materials. Whereas the researcher may be concerned with a temperature-compensated laboratory-grade setup for an individual cell, the practitioner may be interested in validating operation of a large PV plant. PV curve tracers exist on the commercial market for each of these market segments. However, for researchers working with small modules, the cell-level testers may not have adequate voltage and current range, or may not physical accommodate more than a single cell; units designed for large-scale PV plants may not have sufficient resolution or flexibility for low-power modules. Curve tracers for these two markets also tend to be specialized for the particular use-case and relatively expensive. The aim of this paper is to present a curve tracer that is based on off-the-shelf components but is flexible and scalable to accommodate a range of voltage and current levels, number of specimen, and connecting / disconnecting the specimen to other circuitry such as a DC/DC converter. As such, the system can be used for a few cells to large modules and can accommodate an arbitrary number of specimen, which is beneficial to perform comparative testing. It can also be used to validate the maximum power point tracking efficacy of a DC/DC power optimizer by disconnecting the converter, performing the I-V sweep, and then re-connecting to the converter. The system uses a Keithley 2461 Source Meter Unit (SMU) and one or more relay modules, all controlled by MATLAB. The SMU is responsible for generating the voltage sweep and measuring the resulting current. Using commercial equipment alleviates the user from having to custom design and built a curve-tracer. In addition, the SMU can be calibrated to ensure accurate and reliable data. If multiple specimen are to be tested, multiple relay modules can be added to enable multiplexing of many PV specimen to the SMU. Custom software running in MATLAB configures the relays; setups, triggers, and downloads data from the source meter; and saves the data and creates the plots.
机译:需要电流VS电压(I-V)曲线以了解光伏(PV)材料的电气特性。然而,研究人员可能涉及用于个体细胞的温度补偿的实验室等级,从业者可能有兴趣验证大型光伏工厂的操作。 PV曲线示踪剂存在于这些市场细分市场的商业市场上。然而,对于使用小型模块的研究人员来说,细胞级测试仪可能没有足够的电压和电流范围,或者可能没有物理容纳超过单个细胞;为大型光伏设备设计的单位可能对低功耗模块具有足够的分辨率或灵活性。这两个市场的曲线示踪剂也倾向于专门用于特定用途和相对昂贵的。本文的目的是提出一种基于搁板组件的曲线示踪剂,但是柔性且可伸缩,以适应电压和电流水平,样本数量和连接/断开样品的电压和电流水平。作为DC / DC转换器。因此,该系统可以用于少数细胞到大模块,并且可以容纳任意数量的样本,这有利于进行比较测试。它还可以用于通过断开转换器,执行I-V扫描,然后重新连接转换器来验证DC / DC电源优化器的最大功率点跟踪功效。该系统使用Keithley 2461源仪表单元(SMU)和一个或多个继电器模块,所有由Matlab控制。 SMU负责产生电压扫描并测量所产生的电流。使用商业设备可缓解用户必须自定义设计并构建曲线示踪剂。此外,可以校准SMU以确保准确可靠的数据。如果要测试多个样本,则可以添加多个继电器模块以使许多PV样本的复用到SMU。在MATLAB中运行的自定义软件配置继电器;设置,触发器和下载来自源仪的数据;并保存数据并创建图表。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号