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Power Control for Fading Channels in Cognitive Radio Networks with Outage-Probability Minimization 被引量:4
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作者 Luan Yu li hongzuo Wang Yafei 《China Communications》 SCIE CSCD 2012年第12期108-116,共9页
Cognitive radio allows Secondary Users(SUs) to dynamically use the spectrum resource licensed to Primary Users(PUs),and significantly improves the efficiency of spectrum utilization and is viewed as a promising techno... Cognitive radio allows Secondary Users(SUs) to dynamically use the spectrum resource licensed to Primary Users(PUs),and significantly improves the efficiency of spectrum utilization and is viewed as a promising technology.In cognitive radio networks,the problem of power control is an important issue.In this paper,we mainly focus on the problem of power control for fading channels in cognitive radio networks.The spectrum sharing underlay scenario is considered,where SUs are allowed to coexist with PUs on the condition that the outage probability of PUs is below the maximum outage probability threshold limitation due to the interference caused by SUs.Moreover,besides the outage probability threshold which is defined to protect the performance of PUs,we also consider the maximum transmit power constraints for each SU.With such a setup,we emphasize the problem of power control to minimize the outage probability of each SU in fading channels.Then,based on the statistical information of the fading channel,the closed expression for outage probability is given in fading channels.The Dual-Iteration Power Control(DIPC) algorithm is also proposed to minimize the outage probability based on Perron-Frobenius theory and gradient descent method under the constraint condition.Finally,simulation results are illustrated to demonstrate the performance of the proposed scheme. 展开更多
关键词 无线电网络 中断概率 功率控制 衰落信道 停运 最小化 FROBENIUS 频谱资源
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基于超级电容器的新型低频能量收集系统
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作者 陈凯 李洪祚 刘双翼 《电子技术应用》 2018年第6期151-154,共4页
对于低频可再生能源的收集需要考虑其比较大的内部阻抗,不规则的断续输入,受环境干扰等问题。本研究采用多级反馈式稳压升压技术,嵌入低功耗控制芯片算法控制对低频输入能量的最大功率点进行跟踪(MPPT),同时超级电容器代替锂电池作为储... 对于低频可再生能源的收集需要考虑其比较大的内部阻抗,不规则的断续输入,受环境干扰等问题。本研究采用多级反馈式稳压升压技术,嵌入低功耗控制芯片算法控制对低频输入能量的最大功率点进行跟踪(MPPT),同时超级电容器代替锂电池作为储能系统,应用互感耦合,从而达到高效收集、整流和输出的效果。因此本研究设计出的收集系统可高效地收集低频可再生能量,最大收集率可达91.16%,加入输入/输出隔离系统以提高带负载能力后其总收集效率达到了53.18%。 展开更多
关键词 超级电容器 可再生能源 能量收集 整流电路
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