农业工程学报
農業工程學報
농업공정학보
2015年
9期
195-200
,共6页
王林军%门静%许立晓%张东%邓煜%吕耀平%陈艳娟
王林軍%門靜%許立曉%張東%鄧煜%呂耀平%陳豔娟
왕림군%문정%허립효%장동%산욱%려요평%진염연
太阳能%跟踪%模糊系统%环境因素%模糊推理规则%MATLAB%光电传感器
太暘能%跟蹤%模糊繫統%環境因素%模糊推理規則%MATLAB%光電傳感器
태양능%근종%모호계통%배경인소%모호추리규칙%MATLAB%광전전감기
solar energy%tracking%fuzzy systems%environmental factor%fuzzy speculative rule%MATLAB%photoelectric sensor
提高太阳自动跟踪控制系统的运行稳定性和跟踪精度,需要考虑外界环境因素对系统的影响及选择适当的跟踪方式。目前,太阳自动跟踪系统普遍采用光电跟踪和程序跟踪相结合的混合跟踪方式,将光强值与光强阈值的差值作为切换跟踪方式的依据。当光强值趋近光强阈值时,会造成跟踪方式频繁的切换,该文针对该问题,以外界光强大小、光强变化和风速大小为特征目标,利用MATLAB中的模糊识别方法归类总结了天气情况和系统运行情况,建立了一种基于环境因素判断的模糊识别系统,通过仿真验证,得到了天气类型和系统的运行情况,仿真结果完全符合推理条件,并与计算所得结果基本一致。该研究为太阳自动跟踪系统的启停和跟踪方式的切换提供了可靠的理论支持,且具有较高的实用性和可行性。
提高太暘自動跟蹤控製繫統的運行穩定性和跟蹤精度,需要攷慮外界環境因素對繫統的影響及選擇適噹的跟蹤方式。目前,太暘自動跟蹤繫統普遍採用光電跟蹤和程序跟蹤相結閤的混閤跟蹤方式,將光彊值與光彊閾值的差值作為切換跟蹤方式的依據。噹光彊值趨近光彊閾值時,會造成跟蹤方式頻繁的切換,該文針對該問題,以外界光彊大小、光彊變化和風速大小為特徵目標,利用MATLAB中的模糊識彆方法歸類總結瞭天氣情況和繫統運行情況,建立瞭一種基于環境因素判斷的模糊識彆繫統,通過倣真驗證,得到瞭天氣類型和繫統的運行情況,倣真結果完全符閤推理條件,併與計算所得結果基本一緻。該研究為太暘自動跟蹤繫統的啟停和跟蹤方式的切換提供瞭可靠的理論支持,且具有較高的實用性和可行性。
제고태양자동근종공제계통적운행은정성화근종정도,수요고필외계배경인소대계통적영향급선택괄당적근종방식。목전,태양자동근종계통보편채용광전근종화정서근종상결합적혼합근종방식,장광강치여광강역치적차치작위절환근종방식적의거。당광강치추근광강역치시,회조성근종방식빈번적절환,해문침대해문제,이외계광강대소、광강변화화풍속대소위특정목표,이용MATLAB중적모호식별방법귀류총결료천기정황화계통운행정황,건립료일충기우배경인소판단적모호식별계통,통과방진험증,득도료천기류형화계통적운행정황,방진결과완전부합추리조건,병여계산소득결과기본일치。해연구위태양자동근종계통적계정화근종방식적절환제공료가고적이론지지,차구유교고적실용성화가행성。
Exploring and making full use of new energy resources can solve the problem of the energy shortage and environmental pollution, so many people focus on the use of solar energy which has the advantages of cleanliness, reuse, and economy, etc. Solar power, as the ideal use of solar energy, is the generation of electricity from sunlight. Either PV generation system or solar thermal power generation system have great extensive use, the formal usually use solar cells as the device to convert solar energy directly into electricity by the photovoltaic effect, and photovoltaic technology can meet the demand of different uses which need power supply by solar cells in different sizes, The latter has large scale, it focuses the solar energy to boil water and the heat energy is used to provide power. The solar thermal power generation system can be divided into three types: dish solar thermal power generation, groove type thermal power generation, and tower solar thermal power generation. Dish solar thermal power generation has higher efficiency. Considering that the disadvantages of solar energy are ever-changing solar radiation direction and unstable solar energy, dish solar thermal power generation uses an auto-tracking system to improve the utilization ratio of solar energy for an solar automatic tracking system can keep the incident sunlight parallel to the collector. A dish solar thermal power generation system works out of doors, environmental factors have a great influence on the system’s running stability and tracking accuracy, and affects the choice of tracking mode. The auto-tracking modes can be classified into:program tracking mode, photoelectric tracking mode, and hybrid tracking mode. Program tracking mode uses a computer to calculate the sun’s azimuth and latitude, can work under all-weather condition, and has high adaptability, but it has a cumulative error in the tracking process. The photoelectric mode has higher tracking accuracy for it has feedback information. It works well in the sunny day, but bad weather (especially the rainy and cloudy day) has a serious effect on it. A solar auto-tracking system usually adopts a hybrid tracking mode which is a combination of the program tracking mode and the photoelectric mode. A photoelectric sensor, as the information feedback component of a control system, can modify the cumulative error of the procedure, the tracking system would track reliably in the complicated and changeable weather. These two tracking modes make up for each other, as a result, the tracking system’s precision and stability would be further improved and guaranteed. As an auto-tracking system works, the tracking mode changes as the intensity value reaches the intensity threshold, then the controller will choose a tracking mode automatically. Considering that the environmental factors affect the tracking system, this paper mainly analyses intensity, intensity change, and wind speed which have a serious effect on the system’s operational stability and tracking accuracy. It uses fuzzy identification method in MATLAB to classify and summarize the weather condition and system’s operation, then it builds a fuzzy recognition system based on environmental factors by respectively setting the parameters of input (wind speed, intensity and intensity change) membership function and output (the system’s operation condition and weather condition) membership function. In this process, determining the fuzzy reasoning rules is the most important step. Fuzzy reasoning rules based on judgments of environmental factors are obtained from the expert experience and relevant information, and the wrong rules would even lead to wrong simulation. Through the simulation, weather condition and system operation condition are confirmed, and the conclusion suits the qualified condition. This research provides a theoretical support for a system’s start-stop and a tracking mode’s switch, and it has preferable practicability and good feasibility. And the conclusion not only can apply to the PV system, but also to the solar thermal power generation system.