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A New Diagnosis Method on Insulators with Measuring ... - inass

A New Diagnosis Method on Insulators with Measuring ... - inass

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microph<strong>on</strong>e to estimates insulator’s perfor- mance,and its feasibility has been proved by Lundgaard[12] . The fault locati<strong>on</strong> and type of informati<strong>on</strong>can be obtained [13] through analyzing the amplitude,frequency and phase of acoustic wave. But the effectof the detecti<strong>on</strong> is determined by the material ofinsulator.Hydrophobicity detecti<strong>on</strong> technology is <strong>on</strong>e of themain detecti<strong>on</strong> methods as regards the evaluati<strong>on</strong> ofinsulator’s performance. The traditi<strong>on</strong>al methodmeasures the insulators’ hydrophobicity throughmeasuring the c<strong>on</strong>tact angle directly by photography[ 14 ] . However, this method can <strong>on</strong>ly becarried out in laboratory envir<strong>on</strong>ment. The restricti<strong>on</strong>is made up by STRI hydrophobicity classificati<strong>on</strong>method [ 15 , 16 ] . But it is dependent <strong>on</strong> theoperators’ subjective judgment, so the accuracy cannot be high. The method menti<strong>on</strong>ed in the Literature[17][18]estimates the average hydrophobicity usingdigital image processing. It is more objective andprecise, but it bases <strong>on</strong> the hydrophobicity classificati<strong>on</strong>and can not get the insulator’s partial hydrophobicity.It is obvious that the existing detecti<strong>on</strong> methodsare not satisfying and have some disadvantages. Soexperts nati<strong>on</strong>ally and internati<strong>on</strong>ally keep researching[19] in this field.This paper presents a detecti<strong>on</strong> method of insulator’sperformance through measuring the hydrophobicity.The method takes advantage of imageprocessing technology, such as extracting waterdroplets’ image from the background, fitting thewater droplets’ c<strong>on</strong>tour using the orthog<strong>on</strong>alpolynomial and measuring the c<strong>on</strong>tact angle, toestimate the insulator’s hydrophobicity. Comparing<strong>with</strong> other hydrophobicity detecti<strong>on</strong> methods, thismethod can detect the insulators which are stillrunning <strong>on</strong> the spot <strong>with</strong>out manual interventi<strong>on</strong>s,and the measurement results are more objective andprecise.2. Basic principleThe definiti<strong>on</strong> of c<strong>on</strong>tact angle is shown in Figure1. When the insulator’s surface is horiz<strong>on</strong>tal, thec<strong>on</strong>tact angles of water droplet <strong>on</strong> both sides are thesame, and is called static c<strong>on</strong>tact angle . Thedynamic c<strong>on</strong>tact angles a(advancing angle) andr(receding angle) can be defined when a droplet is<strong>on</strong> an inclined surface.The model of c<strong>on</strong>tact angle detecti<strong>on</strong> method isbased <strong>on</strong> image processing. Use drip device, dripappropriate water droplets <strong>on</strong> the insulator surface,then use CCD camera device to acquire images,image processing tools and curve fitting can beadopted to get c<strong>on</strong>tact angle.Figure 1 Diagram of c<strong>on</strong>tact anglesObviously, in the same water droplet capacity andtimes, the larger the static c<strong>on</strong>tact angle, the smallerthe interface that the water droplet c<strong>on</strong>tacting <strong>with</strong>the insulati<strong>on</strong> material, the better the hydrophobicity.It is generally believed that, when 90 insulatorsurface is hydrophobic. For inclined surface, bymeasuring the advancing angle and the recedingangle, the following formula can be used to researchhydrophobicity [20] .mg sin Lcosa cosr (1)where m is mass of water droplet, g is accelerati<strong>on</strong>of gravity, is incline angle, L is length of waterdroplet, is liquid surface tensi<strong>on</strong>, and r and a are the largest advancing angle and recedingangle of water droplet in inclined surface, respectively.Based <strong>on</strong> the liquid surface tensi<strong>on</strong> insulatorhydrophobic can be measured, the smaller thesurface tensi<strong>on</strong>, the better the hydrophobic.3. Image processingImage processing includes image preprocessing,image segmentati<strong>on</strong>, image feature extracti<strong>on</strong> andcurve fitting derivative about water droplet, etc.3.1 Water droplet image preprocessing1) Gray value transformingFor the operati<strong>on</strong> in Gray Image is simpler thanColored Image, we often transfer Colored Imageinto Gray Image of 256 colors.2) Image smoothingMost pixels’ gray value of an image is of littledifference <strong>with</strong> the adjacent, existing large graycorrelati<strong>on</strong> degree, which leads the energy of theimage to c<strong>on</strong>centrate in the low-frequency regi<strong>on</strong>.Attenuating high-frequency comp<strong>on</strong>ents andenhancing low-frequency comp<strong>on</strong>ent can retain themain message of the image and filter high-frequencynoise.Image smoothing methods include: neighbor-Internati<strong>on</strong>al Journal of Intelligent Engineering and Systems, Vol.2, No.2,2009 19

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