When a new user accesses the CDMA system, the load will change drastically, and therefore, the advanced outer loop power control (OLPC) technology has to be adopted to enrich the target signal interference ratio (S...When a new user accesses the CDMA system, the load will change drastically, and therefore, the advanced outer loop power control (OLPC) technology has to be adopted to enrich the target signal interference ratio (Silt) and improve the system performance. The existing problems about DS-CDMA outer loop power control for multi-service are introduced and the power control theoretical model is analyzed. System simulation is adopted on how to obtain the theoretical performance and parameter optimization of the power control algorithm. The OLPC algorithm is improved and the performance comparisons between the old algorithm and the improved algorithm are given. The results show good performance of the improved OLPC algorithm and prove the validity of the improved method for multi-service.展开更多
An outer loop power control algorithm based on triangle norm(t-norm) information fusion technology is proposed in this paper.According to the difference between block error rate and bit error rate with target values,t...An outer loop power control algorithm based on triangle norm(t-norm) information fusion technology is proposed in this paper.According to the difference between block error rate and bit error rate with target values,the membership function calculation and level dividing of the two differences are dealt with.And then t-norm operator is used to fuse the two membership function values to determine the adjustment step-size.The algorithm can acquire the optimal adjustment step-size in the light of the channel status and avoid the overshoot phenomenon of the existing outer power control methods.As a result,the block error rate can converge to the target value quickly.Experiment results verify the excellent property of the algorithm.展开更多
该文从实际应用角度出发,提出了一种改进的CDMA系统反向链路公共速率控制算法。在该算法中,分组数据业务移动台根据外环功率控制设置点的变化以及反向激活比特依概率控制其自身速率提高或降低。文中对概率取值进行了分析研究并构造了一...该文从实际应用角度出发,提出了一种改进的CDMA系统反向链路公共速率控制算法。在该算法中,分组数据业务移动台根据外环功率控制设置点的变化以及反向激活比特依概率控制其自身速率提高或降低。文中对概率取值进行了分析研究并构造了一种复杂度较低的次优解。经过系统级仿真,并与已有的基于反向激活比特的速率控制算法相比较,各项结果显示了改进后的算法能够保持用户服务质量(Quality of Service,QoS),并从一定程度上提高了系统吞吐量和资源利用率。展开更多
基金the National Natural Science Foundation of China (60532030).
文摘When a new user accesses the CDMA system, the load will change drastically, and therefore, the advanced outer loop power control (OLPC) technology has to be adopted to enrich the target signal interference ratio (Silt) and improve the system performance. The existing problems about DS-CDMA outer loop power control for multi-service are introduced and the power control theoretical model is analyzed. System simulation is adopted on how to obtain the theoretical performance and parameter optimization of the power control algorithm. The OLPC algorithm is improved and the performance comparisons between the old algorithm and the improved algorithm are given. The results show good performance of the improved OLPC algorithm and prove the validity of the improved method for multi-service.
文摘An outer loop power control algorithm based on triangle norm(t-norm) information fusion technology is proposed in this paper.According to the difference between block error rate and bit error rate with target values,the membership function calculation and level dividing of the two differences are dealt with.And then t-norm operator is used to fuse the two membership function values to determine the adjustment step-size.The algorithm can acquire the optimal adjustment step-size in the light of the channel status and avoid the overshoot phenomenon of the existing outer power control methods.As a result,the block error rate can converge to the target value quickly.Experiment results verify the excellent property of the algorithm.
文摘该文从实际应用角度出发,提出了一种改进的CDMA系统反向链路公共速率控制算法。在该算法中,分组数据业务移动台根据外环功率控制设置点的变化以及反向激活比特依概率控制其自身速率提高或降低。文中对概率取值进行了分析研究并构造了一种复杂度较低的次优解。经过系统级仿真,并与已有的基于反向激活比特的速率控制算法相比较,各项结果显示了改进后的算法能够保持用户服务质量(Quality of Service,QoS),并从一定程度上提高了系统吞吐量和资源利用率。