This paper discusses an implementation based on CMEX S-functions to model and to check implementation feasibility of two most commonly used Maximum Power Point Tracking (MPPT) algorithms, namely Hill Climbing/Pertu...This paper discusses an implementation based on CMEX S-functions to model and to check implementation feasibility of two most commonly used Maximum Power Point Tracking (MPPT) algorithms, namely Hill Climbing/Perturb & Observe (P&O) and Incremental Conductance. This study can also be generalized to encompass the whole digital techniques family, including artificial intelligence like Neural Network and Fuzzy Logic Control.展开更多
目前,在广播有线电视网实现资料等宽带业务双向接入已经得到了广泛的认可。本文针对目前几种基于同轴电缆为传输介质的有线电视网数据接入方式EOC(Ethernet Over Coax)、MOCA和Homeplug AV Over Coax等技术,客观地比较EOC接入技术与数...目前,在广播有线电视网实现资料等宽带业务双向接入已经得到了广泛的认可。本文针对目前几种基于同轴电缆为传输介质的有线电视网数据接入方式EOC(Ethernet Over Coax)、MOCA和Homeplug AV Over Coax等技术,客观地比较EOC接入技术与数字家庭技术(MOCA、Homeplug AV)之间的差异。通过在原理、数据通信能力等实际测试,给出一个客观的评价。展开更多
文摘This paper discusses an implementation based on CMEX S-functions to model and to check implementation feasibility of two most commonly used Maximum Power Point Tracking (MPPT) algorithms, namely Hill Climbing/Perturb & Observe (P&O) and Incremental Conductance. This study can also be generalized to encompass the whole digital techniques family, including artificial intelligence like Neural Network and Fuzzy Logic Control.
文摘目前,在广播有线电视网实现资料等宽带业务双向接入已经得到了广泛的认可。本文针对目前几种基于同轴电缆为传输介质的有线电视网数据接入方式EOC(Ethernet Over Coax)、MOCA和Homeplug AV Over Coax等技术,客观地比较EOC接入技术与数字家庭技术(MOCA、Homeplug AV)之间的差异。通过在原理、数据通信能力等实际测试,给出一个客观的评价。