In this letter,an Opportunistic Interference Cancellation(OIC) is first introduced as a rate control strategy for secondary user in cognitive wireless networks. Based on the OIC rate control method,an optimal power co...In this letter,an Opportunistic Interference Cancellation(OIC) is first introduced as a rate control strategy for secondary user in cognitive wireless networks. Based on the OIC rate control method,an optimal power control strategy for multichannel cognitive wireless networks is proposed. The algorithm aims to maximize the total transmit rate of cognitive user through appropriately controlling the transmit power of each subchannel under the constraint that the interference temperature at the primary receiver is below a certain threshold. Three suboptimal power control methods,namely Equal Power Transmission(EPT) ,Equal Rate Transmission(ERT) and Equal Interference Transmission(EIT) ,are also proposed. The performances of the proposed power control methods are compared through numerical simulations.展开更多
通信感知一体化(integrated sensing and communications,ISAC)被认为是支撑下一代移动通信系统的关键技术之一,引起了国内外专家学者的极大关注。与传统电子技术相比,光子技术具有大带宽、频率可调谐、传输损耗低、隔离度高和抗电磁干...通信感知一体化(integrated sensing and communications,ISAC)被认为是支撑下一代移动通信系统的关键技术之一,引起了国内外专家学者的极大关注。与传统电子技术相比,光子技术具有大带宽、频率可调谐、传输损耗低、隔离度高和抗电磁干扰等突出优点,因此基于光子技术的ISAC系统理论上可显著提升通信与感知性能,成为当前ISAC领域研究的热点之一。首先,阐述光子ISAC系统的研究背景;其次,根据一体化波形的特征,着重回顾分析当前光子ISAC系统中的波形复用技术研究现状;最后,对光子ISAC系统中的波形复用技术进行总结与展望。展开更多
基金the China Post Doctoral Science Foundation (No.20070410396)the National Hi-Tech Re-search and Development Project (863 Project) of China (No.2007AA01Z257).
文摘In this letter,an Opportunistic Interference Cancellation(OIC) is first introduced as a rate control strategy for secondary user in cognitive wireless networks. Based on the OIC rate control method,an optimal power control strategy for multichannel cognitive wireless networks is proposed. The algorithm aims to maximize the total transmit rate of cognitive user through appropriately controlling the transmit power of each subchannel under the constraint that the interference temperature at the primary receiver is below a certain threshold. Three suboptimal power control methods,namely Equal Power Transmission(EPT) ,Equal Rate Transmission(ERT) and Equal Interference Transmission(EIT) ,are also proposed. The performances of the proposed power control methods are compared through numerical simulations.
文摘通信感知一体化(integrated sensing and communications,ISAC)被认为是支撑下一代移动通信系统的关键技术之一,引起了国内外专家学者的极大关注。与传统电子技术相比,光子技术具有大带宽、频率可调谐、传输损耗低、隔离度高和抗电磁干扰等突出优点,因此基于光子技术的ISAC系统理论上可显著提升通信与感知性能,成为当前ISAC领域研究的热点之一。首先,阐述光子ISAC系统的研究背景;其次,根据一体化波形的特征,着重回顾分析当前光子ISAC系统中的波形复用技术研究现状;最后,对光子ISAC系统中的波形复用技术进行总结与展望。