仿真分析了由于高功率放大器(High Power Amplifier,HPA)的非线性失真对OFDM信号造成的影响,设计了基于清华大学DMB-T高清晰度数字电视标准的SSPA(Solid State Power Amplifier)3W功放,利用了多项式拟合及FPGA技术,考虑到曲线拟合误差和...仿真分析了由于高功率放大器(High Power Amplifier,HPA)的非线性失真对OFDM信号造成的影响,设计了基于清华大学DMB-T高清晰度数字电视标准的SSPA(Solid State Power Amplifier)3W功放,利用了多项式拟合及FPGA技术,考虑到曲线拟合误差和HPA的特性,采用了分段拟合,硬件实现了SSPA的预失真,可将带外功率失真降低约10dB左右,在很大程度上抑制了带外及带内失真。展开更多
Self scanning photodiode array (SSPA) is a kind of solid state imaging sensor. The signal processing method using a special sector SSPA was investigated. Based on the principle and characteristics of SSPA, a signal ac...Self scanning photodiode array (SSPA) is a kind of solid state imaging sensor. The signal processing method using a special sector SSPA was investigated. Based on the principle and characteristics of SSPA, a signal acquisition and processing method controlled by computer was introduced. The amplification of weak signal, the matching of time sequence, the fast peak holding with low leakage, the high speed A/D conversion and nonlinear correction were discussed. This method can acquire the peak signal of every ring of sector SSPA with high accuracy and in real time. It can be used to detect the distribution of space light energy.展开更多
文摘仿真分析了由于高功率放大器(High Power Amplifier,HPA)的非线性失真对OFDM信号造成的影响,设计了基于清华大学DMB-T高清晰度数字电视标准的SSPA(Solid State Power Amplifier)3W功放,利用了多项式拟合及FPGA技术,考虑到曲线拟合误差和HPA的特性,采用了分段拟合,硬件实现了SSPA的预失真,可将带外功率失真降低约10dB左右,在很大程度上抑制了带外及带内失真。
基金Natural Science Foundation of Guangdong Province ( 000689 ) Foundation from Education Department ofZhejiang Province(20040446)
文摘Self scanning photodiode array (SSPA) is a kind of solid state imaging sensor. The signal processing method using a special sector SSPA was investigated. Based on the principle and characteristics of SSPA, a signal acquisition and processing method controlled by computer was introduced. The amplification of weak signal, the matching of time sequence, the fast peak holding with low leakage, the high speed A/D conversion and nonlinear correction were discussed. This method can acquire the peak signal of every ring of sector SSPA with high accuracy and in real time. It can be used to detect the distribution of space light energy.