中国电机工程学报
中國電機工程學報
중국전궤공정학보
ZHONGGUO DIANJI GONGCHENG XUEBAO
2013年
34期
75-82
,共8页
邵日明%Mary KAYE%Chris DIDUCH%张榴晨
邵日明%Mary KAYE%Chris DIDUCH%張榴晨
소일명%Mary KAYE%Chris DIDUCH%장류신
光伏逆变器%脉宽调制%最大功率跟踪%孤岛检测%系统控制
光伏逆變器%脈寬調製%最大功率跟蹤%孤島檢測%繫統控製
광복역변기%맥관조제%최대공솔근종%고도검측%계통공제
photovoltaic inverters%pulse width modulation%maximum power point tracking%islanding detection%system control
智能电网环境中,光伏系统作为分布式发电机应用时,必须满足并网标准的各种要求。逆变器作为光伏阵列与电网的连接机构,应该具备分布式发电机入网的必要功能。文章重点介绍了光伏逆变器的必要功能组件,提出光伏逆变器的基本功能算法,包括基于空间矢量脉宽调制的电流控制算法、基于黄金分割搜索的最大功率跟踪算法、加速式自动移相孤岛检测算法等。这些新技术构成并网型光伏逆变器的一个完整技术方案。随着智能电网的发展,更多分布式发电装置将在虚拟电站的控制环境中运行。为此,探讨了光伏逆变器的通讯和电力系统控制功能。这些附加功能使光伏系统能够参与电力系统的调度和服务,从而创造更高的经济价值。
智能電網環境中,光伏繫統作為分佈式髮電機應用時,必鬚滿足併網標準的各種要求。逆變器作為光伏陣列與電網的連接機構,應該具備分佈式髮電機入網的必要功能。文章重點介紹瞭光伏逆變器的必要功能組件,提齣光伏逆變器的基本功能算法,包括基于空間矢量脈寬調製的電流控製算法、基于黃金分割搜索的最大功率跟蹤算法、加速式自動移相孤島檢測算法等。這些新技術構成併網型光伏逆變器的一箇完整技術方案。隨著智能電網的髮展,更多分佈式髮電裝置將在虛擬電站的控製環境中運行。為此,探討瞭光伏逆變器的通訊和電力繫統控製功能。這些附加功能使光伏繫統能夠參與電力繫統的調度和服務,從而創造更高的經濟價值。
지능전망배경중,광복계통작위분포식발전궤응용시,필수만족병망표준적각충요구。역변기작위광복진렬여전망적련접궤구,응해구비분포식발전궤입망적필요공능。문장중점개소료광복역변기적필요공능조건,제출광복역변기적기본공능산법,포괄기우공간시량맥관조제적전류공제산법、기우황금분할수색적최대공솔근종산법、가속식자동이상고도검측산법등。저사신기술구성병망형광복역변기적일개완정기술방안。수착지능전망적발전,경다분포식발전장치장재허의전참적공제배경중운행。위차,탐토료광복역변기적통신화전력계통공제공능。저사부가공능사광복계통능구삼여전력계통적조도화복무,종이창조경고적경제개치。
This paper focused on functions and associated building blocks of photovoltaic (PV) inverters as distributed generators (DGs) in a smart grid environment. As DGs, PV systems must meet grid-interconnection requirements. Thus, PV inverters, as the interface between PV modules and electrical grids, must have the required grid-integration functions of DGs. The authors had proposed and developed the technologies for these building blocks, including a space-vector pulse-width-modulation based current controller targeting low harmonic distortions;a maximum power point tracking strategy based on golden section search;and a new islanding detection method based on accelerated automatic phase shift. These developed building blocks had been integrated as a complete solution of PV power converters for power system operation.This paper also discussed communication and system control functions of PV DG inverters, which were managed in a virtual power plant environment. The advanced functions as integrated in inverters allow PV systems to participate in power system operation and services, and thus offer additional values of PV systems to power systems.