对卫星正交频分复用(Satellite Orthogonal Frequency Division Multiplexing,SOFDM)传输体制进行信道资源分配时,采用传统定界分类法存在效率较低,功率资源浪费较大等问题。文中提出一种改进的信道资源动态分配新策略,引入生物遗传算法...对卫星正交频分复用(Satellite Orthogonal Frequency Division Multiplexing,SOFDM)传输体制进行信道资源分配时,采用传统定界分类法存在效率较低,功率资源浪费较大等问题。文中提出一种改进的信道资源动态分配新策略,引入生物遗传算法,对信道传输特性进行适应性评估,按照'优胜劣汰,适者生存'的进化原则对信道子载波频率和功率资源进行有效分配。仿真分析结果表明,新策略获得了优于传统定界分类法的效果,在算法运行时间与传统方法基本相当的情况下,采用生物遗传算法的SOFDM系统能够更加合理地分配系统频率资源,使系统功率资源产生约1dB的增益,并有效降低系统误包率。展开更多
The performance analysis and simulation of coding schemes based on the modeling Ka band fixed satellite channel have been presented. The results indicate that concatenated codes with large inner interleaving depth ha...The performance analysis and simulation of coding schemes based on the modeling Ka band fixed satellite channel have been presented. The results indicate that concatenated codes with large inner interleaving depth have good performance and high spectrum efficiency. The studies also show that simple block interleaving is very effective in combating the slow frequency nonselective fading of Ka band.展开更多
文摘对卫星正交频分复用(Satellite Orthogonal Frequency Division Multiplexing,SOFDM)传输体制进行信道资源分配时,采用传统定界分类法存在效率较低,功率资源浪费较大等问题。文中提出一种改进的信道资源动态分配新策略,引入生物遗传算法,对信道传输特性进行适应性评估,按照'优胜劣汰,适者生存'的进化原则对信道子载波频率和功率资源进行有效分配。仿真分析结果表明,新策略获得了优于传统定界分类法的效果,在算法运行时间与传统方法基本相当的情况下,采用生物遗传算法的SOFDM系统能够更加合理地分配系统频率资源,使系统功率资源产生约1dB的增益,并有效降低系统误包率。
文摘The performance analysis and simulation of coding schemes based on the modeling Ka band fixed satellite channel have been presented. The results indicate that concatenated codes with large inner interleaving depth have good performance and high spectrum efficiency. The studies also show that simple block interleaving is very effective in combating the slow frequency nonselective fading of Ka band.