本文設計出一種新型燈光調光控制系統。系統采用先進的智能功率模塊((IPM)取代以往的可控硅作為功率變換器件,以Intel16 位單片機為核心控制器采用AC-DC-AC 變換技術使輸出的波形較可控硅斬波后的波形有很大的改善,這不僅降低了變壓器的損耗而且延長了燈的壽命,提高了系統的運行質量。現場總線CAN 的運用使得整個系統便于集中監控、管理。調光器是機場助航燈光系統的核心控制設備。目前,國內外使用的調光器主要采用可控硅斬波技術,這種調光器存在波形畸變大、電網要求高、對電網污染嚴重、效率低、負載適應能力差等缺點。針對以往系統存在的不足,提出了正弦波調光器,它采用逆變技術,輸出標準正弦電壓,它的優點是對負載適應能力強、對電網要求低、污染輕、效率高、輸出波形好等。正弦波調光器采用逆變技術,輸出幅度可調的標準正弦電壓,通過控制算法實現對燈光回路的高精度恒流控制。“正弦波調光器”將極大地提高調光器的技術水平,改善調光器的性能,增強市場競爭能力。
標簽:
單片機
燈光
調光控制
系統開發
上傳時間:
2013-11-02
上傳用戶:亞亞娟娟123
Single-Ended and Differential S-Parameters
Differential circuits have been important incommunication systems for many years. In the past,differential communication circuits operated at lowfrequencies, where they could be designed andanalyzed using lumped-element models andtechniques. With the frequency of operationincreasing beyond 1GHz, and above 1Gbps fordigital communications, this lumped-elementapproach is no longer valid, because the physicalsize of the circuit approaches the size of awavelength.Distributed models and analysis techniques are nowused instead of lumped-element techniques.Scattering parameters, or S-parameters, have beendeveloped for this purpose [1]. These S-parametersare defined for single-ended networks. S-parameterscan be used to describe differential networks, but astrict definition was not developed until Bockelmanand others addressed this issue [2]. Bockelman’swork also included a study on how to adapt single-ended S-parameters for use with differential circuits[2]. This adaptation, called “mixed-mode S-parameters,” addresses differential and common-mode operation, as well as the conversion betweenthe two modes of operation.This application note will explain the use of single-ended and mixed-mode S-parameters, and the basicconcepts of microwave measurement calibration.
標簽:
差分電路
單端
模式
上傳時間:
2014-03-25
上傳用戶:yyyyyyyyyy