太阳能电池板最大功率点跟踪技术的比较.docx
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1、Comparison of Photovoltaic Array Maximum PowerPoint Tracking Techniques光伏阵列最大功率点跟踪技术的比较Trishan Esram, Student Member, IEEE, and Patrick L. Chapman, Senior Member, IEEEAbstractThe many different techniques for maximum power point tracking of photovoltaic (PV) arrays are discussed. The techniques are
2、taken from the literature dating back to the earliest methods. It is shown that at least 19 distinct methods have been introduced in the literature, with many variations on implementation. This paper should serve as a convenient reference for future work in PV power generation.摘要:关于光伏阵列最大功率点跟踪的许多不同技
3、术的讨论,著作中的这些方法都可以追溯到最早的方法。结果表明至少有19种方法已经在著作中被介绍,有许多已经实现变形。本文应该对将来的光伏发电工作提供一个方便的参考。Index TermsMaximum power point tracking (MPPT), photovoltaic (PV).索引词最大功率点跟踪,光伏。I. INTRODUCTIONI简介TRACKING the maximum power point (MPP) of a photovoltaic (PV) array is usually an essential part of a PV system. As such,
4、 many MPP tracking (MPPT) methods have been developed and implemented. The methods vary in complexity, sensors required, convergence speed, cost, range of effectiveness, implementation hardware, popularity, and in other respects. They range from the almost obvious (but not necessarily ineffective) t
5、o the most creative (not necessarily most effective). In fact, so many methods have been developed that it has become difficult to adequately determine which method, newly proposed or existing, is most appropriate for a given PV system.跟踪光伏阵列的最大功率点通常是光伏系统的主要部分,鉴于此许多最大功率点跟踪方式已经被开发和实现。这些方法各不相同,如复杂程度、传
6、感器需要、收敛速度、花费、范围的有效性、硬件实现、普及程度以及其他方面。他们几乎涵盖了所有的从平淡无奇(但是不一定不起作用)到最具创造性(不一定都有效)。事实上,由于许多的方式已经被开发,在新提出的或是现存的方法中,对于给定的光伏系统准确的决定最适合方式的变的困难Given the large number of methods for MPPT, a survey of the methods would be very beneficial to researchers and practitioners in PV systems. Fig. 1 shows the total numb
7、er of MPPT papers from our bibliography per year since the earliest MPPT paper we found. The number of papers per year has grown considerably of the last decades and remains strong. However, recent papers have generally had shorter, more cursory literature reviews that largely summarize or repeat th
8、e literature reviews of previous work. This approach tends to repeat what seems to be conventional wisdom that there are only a handful of MPPT techniques, when in fact there are many. This is due to the sheer volume of MPPT literature to review, conflicting with the need for brevity.鉴于大量的方法来研究MPPT,
9、在光伏系统中采用调查的方法对研究人员和实践者都是非常有益的。图一给出了自从我们发现最早MPPT论文以来每年我们文献目录中MPPT论文的总数目,最近几十年论文的数量已有了长足的发展并且发展仍然很强劲。然而,最近的论文普遍较短,更多粗略的文学评论以致大量的总结或重复前人的总结工作。这种重复方式似乎是传统的智慧,以至于只有很少的MPPT技术,但事实上有很多。这是由于有大量的公开的MPPT文献回顾与简洁的需求相冲突。This survey is a single reference of the great majority of papers and techniques presented on
10、MPPT. We compiled over 90 papers pertaining to different MPPT methods published up to the date of submission of this manuscript. It is not our intention to establish a literal chronology of when various techniques were proposed, since the publication date is not necessarily indicative of when a meth
11、od was actually conceived. As is typical of review papers, we have elected not to reference patents. Papers referencing MPPT methods from previous papers without any modification or improvement have also been omitted. It is possible that one or more papers were unintentionally omitted. We apologize
12、if an important method or improvement was left out.这个调查参考了绝大多数提出MPPT的论文和技术。我们收集了超过90篇关于MPPT不同方法的论文的手稿提交的日期。我们的意图不是当不同的技术被提出时建立一个文字年代, 因为出版日期不能表明一种方法是什么时间构思的。作为典型的评论性文章,我们推选不涉及专利。如果论文中所涉及的MPP T的方法来自以前的论文而没有任何的修改和改善,则论文将被忽略。一篇或更多的论文被无意识的遗漏也是可能的,如果是一种重要的方法或改进被遗漏,我们表示歉意。Manuscript received September 24,
13、 2004; revised September 8, 2005. This work was supported by the National Science Foundation ECS-01-34208. Paper no. TEC-00276-2004. The authors are with the Grainger Center for Electric Machinery and Electromechanics, University of Illinois at Urbana-Champaign, Urbana, IL 61801- 2918 USA (e-mail: ;
14、 ).Digital Object Identifier 10.1109/TEC.2006.874230Fig.1. Total number of MPPT papers per year, since 1968.This manuscript steps through a wide variety of methods with a brief discussion and categorization of each. We have avoided discussing slight modifications of existing methods as distinct meth
15、ods. For example, a method may have been first presented in context of a boost converter, but later on shown with a boost buck converter, otherwise with minimal change. The manuscript concludes with a discussion on the different methods based on their implementation, the sensors required, their abil
16、ity to detect multiple local maxima, their costs, and applications they suit. A table that summarizes the major characteristics of the methods is also provided.这份手稿通过各种各样的方式进行简要的讨论和分类,我们讨论将稍加修改已经存在的方法作为独特的方法认为无效。例如,一种方法第一次已经在boost升压电路中提出,但之后又在升降压变换电路中提出,除此之外,几乎没有变化。手稿以实现不同方式结束,根据他们的实现、所需要的传感器、检测最大值的
17、能力、成本和适合的应用程序。我们提供了一个总结主要方法特征的表格。II. PROBLEM OVERVIEWII.问题概述Fig. 2 shows the characteristic power curve for a PV array. The problem considered by MPPT techniques is to automatically find the voltage VMPP or current IMPP at which a PV array should operate to obtain the maximum power output PMPP under
18、 a given temperature and irradiance. It is noted that under partial shading conditions, in some cases it is possible to have multiple local maxima, but overall there is still only one true MPP. Most techniques respond to changes in both irradiance and temperature, but some are specifically more usef
19、ul if temperature is approximately constant. Most techniques would automatically respond to changes in the array due to aging, though some are open-loop and would require periodic fine-tuning. In our context, the array will typically be connected to a power converter that can vary the current coming
20、 from the PV array.图二给出了光伏阵列的功率曲线。MPPT技术所要考虑的问题是自动的发现光伏阵列中电压最大功率点或电流最大功率点,使该光伏阵列在给定的温度和光照下得到最大功率输出。有人指出,在局部遮挡的情况下,有些时候他可能有多个极大值,但总体来说他只有一个真正的最大功率点。大部分技术应对温度和光照强度的变换,但是假如温度接近稳定一些特别的方法将更加有用。大部分技术能自动的对阵列中由老化引起的变化做出响应,尽管一些是开环控制需要周期性的微调。本文中,阵列和变流器相连,该变流器可以改变电流来自光伏阵列。III. MPPT TECHNIQUESIII.MPPT技术We intro
21、duce the different MPPT techniques below in an arbitrary order. 我们以任意顺序介绍不同的MPPT技术。A. Hill Climbing/P&OAmong all the papers we gathered, much focus has been on hill climbing 18, and perturb and observe (P&O) 925 methods. Hill climbing involves a perturbation in the duty ratio of the power converter,
22、 and P&O a perturbation in the operating voltage of the PV array. In the case of a PV array connected to a power converter, perturbing the duty ratio of power converter perturbs the PV array current and consequently perturbs the PV array voltage. Hill climbing and P&O methods are different ways to e
23、nvision the same fundamental method.A 爬坡/扰动与观察在我们收集的所有论文中, 大多数集中在爬坡方式1-8,和扰动与观察方式9-25。在变流器的一个工作周期内爬坡方式包含一个扰动,而扰动与观察方式是包含光伏阵列工作电压的一个扰动。就光伏阵列与变流器相连而说,变流器工作周期的扰动扰乱光伏阵列的电流,进而影响光伏阵列的电压。爬坡方式和扰动与观察方式是两种不同的方式来设想相同的基本模型。From Fig. 2, it can be seen that incrementing (decrementing) the voltage increases (decre
24、ases) the power when operating on the left of the MPP and decreases (increases) the power when on the right of the MPP. Therefore, if there is an increase in power, the subsequent perturbation should be kept the same to reach the MPP and if there is a decrease in power, the perturbation should be re
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