第三代蜂窝移动通信系统能以不同的数据率和服务质量(Quality of Service,QoS)支持不同类型的通信业务。随着同时接入系统的用户数目的增加,多址干扰(MAI)也逐渐增加,不仅严重影响了CDMA通信系统的性能,也限制了系统容量的提高,且在异...第三代蜂窝移动通信系统能以不同的数据率和服务质量(Quality of Service,QoS)支持不同类型的通信业务。随着同时接入系统的用户数目的增加,多址干扰(MAI)也逐渐增加,不仅严重影响了CDMA通信系统的性能,也限制了系统容量的提高,且在异步传输方式下,多址干扰将更为严重。为此,首先在理论上分析了多址干扰对单速率CDMA系统容量的影响;然后,通过计算机仿真,讨论了异步多速率CDMA通信系统中多址干扰对系统容量的影响。展开更多
The capacity of mobile communication system is improved by using Voice Activity Detection (VAD) technology. In this letter, a novel VAD algorithm, SVAD algorithm based on Fuzzy Neural Network Knowledge Discovery (FNNK...The capacity of mobile communication system is improved by using Voice Activity Detection (VAD) technology. In this letter, a novel VAD algorithm, SVAD algorithm based on Fuzzy Neural Network Knowledge Discovery (FNNKD) method is proposed. The performance of SVAD algorithm is discussed and compared with traditional algorithm recommended by ITU G.729B in different situations. The simulation results show that the SVAD algorithm performs better.展开更多
文摘第三代蜂窝移动通信系统能以不同的数据率和服务质量(Quality of Service,QoS)支持不同类型的通信业务。随着同时接入系统的用户数目的增加,多址干扰(MAI)也逐渐增加,不仅严重影响了CDMA通信系统的性能,也限制了系统容量的提高,且在异步传输方式下,多址干扰将更为严重。为此,首先在理论上分析了多址干扰对单速率CDMA系统容量的影响;然后,通过计算机仿真,讨论了异步多速率CDMA通信系统中多址干扰对系统容量的影响。
文摘The capacity of mobile communication system is improved by using Voice Activity Detection (VAD) technology. In this letter, a novel VAD algorithm, SVAD algorithm based on Fuzzy Neural Network Knowledge Discovery (FNNKD) method is proposed. The performance of SVAD algorithm is discussed and compared with traditional algorithm recommended by ITU G.729B in different situations. The simulation results show that the SVAD algorithm performs better.