In this paper, a new principle for an adaptive line driver using Fuzzy logic is presented. This type of line driver can adapt its output impedance and gain, automatically to the applied load using a fuzzy logic contro...In this paper, a new principle for an adaptive line driver using Fuzzy logic is presented. This type of line driver can adapt its output impedance and gain, automatically to the applied load using a fuzzy logic controller (FLC). This results in automatically corrected output impedance for different cables with terminations. Also, the line driver output impedance and gain become insensitive to process and line variations. As an example, a line driver for ADSL application has been designed. The circuit operates from a 3.3 v in a 0.35 um standard CMOS technology. The power consumption of FLC is about 1 mW. The circuit dissipates 106 mW and exhibits a -62 dB THD for a 3.2-Vpp signal at 5 MHz across a 75 ohms Load. It has a relatively high -3 dB bandwidth (240 MHz) with good phase margin of about 67 degrees in a 10 pF load capacitor.展开更多
直流输电系统HVDC(H igh Voltage D irect-Current Power Transm ission)的控制问题对电力系统的安全稳定运行具有深远的影响,但其系统本身所具有的强非线性特性,需要先进的控制技术以提高系统的性能。在总结传统控制策略的基础上,综述...直流输电系统HVDC(H igh Voltage D irect-Current Power Transm ission)的控制问题对电力系统的安全稳定运行具有深远的影响,但其系统本身所具有的强非线性特性,需要先进的控制技术以提高系统的性能。在总结传统控制策略的基础上,综述了现代控制技术在高压直流输电系统中的应用研究现状,分析了各种控制算法在直流输电系统中应用优势和缺陷。针对多馈入直流输电系统出现后面临的更为复杂的问题,如直流系统间的电磁耦合关系、系统内部的协调优化问题等,给出今后发展的趋势和需要关注的问题。展开更多
文摘In this paper, a new principle for an adaptive line driver using Fuzzy logic is presented. This type of line driver can adapt its output impedance and gain, automatically to the applied load using a fuzzy logic controller (FLC). This results in automatically corrected output impedance for different cables with terminations. Also, the line driver output impedance and gain become insensitive to process and line variations. As an example, a line driver for ADSL application has been designed. The circuit operates from a 3.3 v in a 0.35 um standard CMOS technology. The power consumption of FLC is about 1 mW. The circuit dissipates 106 mW and exhibits a -62 dB THD for a 3.2-Vpp signal at 5 MHz across a 75 ohms Load. It has a relatively high -3 dB bandwidth (240 MHz) with good phase margin of about 67 degrees in a 10 pF load capacitor.
文摘直流输电系统HVDC(H igh Voltage D irect-Current Power Transm ission)的控制问题对电力系统的安全稳定运行具有深远的影响,但其系统本身所具有的强非线性特性,需要先进的控制技术以提高系统的性能。在总结传统控制策略的基础上,综述了现代控制技术在高压直流输电系统中的应用研究现状,分析了各种控制算法在直流输电系统中应用优势和缺陷。针对多馈入直流输电系统出现后面临的更为复杂的问题,如直流系统间的电磁耦合关系、系统内部的协调优化问题等,给出今后发展的趋势和需要关注的问题。