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ID:12724072
大小:3.97 MB
页数:37页
时间:2018-07-18
《学士学位论文--基于无线通信的输电杆塔振动识别单元设计.doc》由会员上传分享,免费在线阅读,更多相关内容在学术论文-天天文库。
1、摘 要随着我国电力事业的快速发展,输电线路网络大面积铺设,并呈现出杆塔多、线路长的特征。输电杆塔大多处在复杂的野外自然环境,并且具有高耸入云的特殊结构。一旦输电杆塔遭到破坏,将导致电力供应中断,影响工农业生产及人民群众的正常生活,严重时会导致火灾等次生灾害,造成无法挽回的经济损失。因此,杆塔振动分析及监测具有重要的研究价值和使用价值。本文研究的主要内容:针对输电杆塔高耸入云的特殊结构及其所处的特殊外部环境,设计一种输电线路杆塔振动状态识别单元。具体方法:在输电杆塔上安装振动传感器,采集输电杆塔受外部异物撞击时的振动信号。信号经调理电路处理后,送入单片机进行处理。采
2、样得到的振动数据信息,经傅里叶变换(FFT)后,得到振动信号的振动频率及其对应的幅值,将其作为振动特征参数,判断输电杆塔的振动情况。同时利用无线通信ZigBee技术将监测结果实时地发送至远端的主站。经仿真实验及实践分析表明,输电杆塔振动识别单元准确性高,监测距离长,具有较强的抗干扰能力。杆塔振动识别单元具有重要的研究意义和现实价值。关键词: 输电线路杆塔; 快速傅里叶变换(FFT); ZigBee技术; 振动检测IVAbstractWiththerapiddevelopmentofChina’spowerindustry,transmissionlinenetwor
3、kshowsthecharacteristicsofhavingmoretowerandlongercable.Transmissiontowersaremostlyincomplexnaturalenvironment,andhavingaspecialstructurehighintotheair.Oncethetransmissiontowersaredestroyed,itwillcausepoweroutages,andwillinfluenceindustrialandagriculturalproductionandpeople'snormallife
4、,evenwillleadtoserioussecondarydisasterssuchasfire,resultinginirreparableeconomiclosses.Therefore,thetowervibrationanalysisandmonitoringhasimportantresearchvalueandusevalue.Themaincontentofthispaper:inviewofthespecialstructureofthetransmissiontowerhighintotheskyandthespecialexternalenv
5、ironmentaroundit,atransmissionlinetowervibrationstaterecognitionunitisdesigned.Specificmethods:vibrationsensorsareinstalledontransmissiontower,collectingthevibrationsignalswhentransmissiontowerishitbyobjectsfromoutside.Afterprocessedbyadjustingcircuit,signalsaresentintothemicrocontroll
6、erforprocessing.ItwillgetthevibrationfrequencyandthecorrespondingamplitudesafterFouriertransform(FFT)ofthesampledVibrationdata,asvibrationcharacteristicparameterstodeterminethevibrationtransmissiontower.AtthesametimeusingtheZigBeewirelesscommunicationtechnology,themonitoringresultsinre
7、al-timewillbesenttotheremotehost.Thesimulationexperimentsandpracticalanalysishaveshowedthatthetransmissiontowervibrationidentificationunithasthefeaturesofhighaccuracy,longdistancemonitoringandstronganti-interferenceability.Towervibrationidentificationunithasimportantresearchsignifica
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