研究了基于无线携能通信(SWIPT,simultaneous wireless information and power transfer)和非正交多址接入(NOMA,non-orthogonal multiple access)的认知中继网络的中断性能。针对具有直接链路通信和两阶段通信两种传输模式,推导了系统...研究了基于无线携能通信(SWIPT,simultaneous wireless information and power transfer)和非正交多址接入(NOMA,non-orthogonal multiple access)的认知中继网络的中断性能。针对具有直接链路通信和两阶段通信两种传输模式,推导了系统总体中断概率的解析表达式和高信噪比条件下的渐近表达式,并通过Monte-Carlo仿真验证了理论推导的正确性。仿真结果表明,系统在直接通信模式下能获得更好的中断性能。此外,与传统的正交多址接入认知中继网络相比,基于SWIPT-NOMA的认知中继网络能获得更好的中断性能和更高的能量效率。展开更多
This paper presents a compact Multiple Input Multiple Output(MIMO)antenna with WLAN band notch for Ultra-Wideband(UWB)applications.The antenna is designed on 0.8mmthick low-cost FR-4 substrate having a compact size of...This paper presents a compact Multiple Input Multiple Output(MIMO)antenna with WLAN band notch for Ultra-Wideband(UWB)applications.The antenna is designed on 0.8mmthick low-cost FR-4 substrate having a compact size of 22mm×30 mm.The proposed antenna comprises of two monopole patches on the top layer of substrate while having a shared ground on its bottom layer.The mutual coupling between adjacent patches has been reduced by using a novel stub with shared ground structure.The stub consists of complementary rectangular slots that disturb the surface current direction and thus result in reducing mutual coupling between two ports.A slot is etched in the radiating patch for WLAN band notch.The slot is used to suppress frequencies ranging from 5.1 to 5.9 GHz.The results show that the proposed antenna has a very good impedance bandwidth of|S11|<−10 dB within the frequency band from 3.1–14 GHz.A low mutual coupling of less than−23 dB is achieved within the entire UWB band.Furthermore,the antenna has a peak gain of 5.8 dB,low ECC<0.002 and high Diversity Gain(DG>9.98).展开更多
文摘研究了基于无线携能通信(SWIPT,simultaneous wireless information and power transfer)和非正交多址接入(NOMA,non-orthogonal multiple access)的认知中继网络的中断性能。针对具有直接链路通信和两阶段通信两种传输模式,推导了系统总体中断概率的解析表达式和高信噪比条件下的渐近表达式,并通过Monte-Carlo仿真验证了理论推导的正确性。仿真结果表明,系统在直接通信模式下能获得更好的中断性能。此外,与传统的正交多址接入认知中继网络相比,基于SWIPT-NOMA的认知中继网络能获得更好的中断性能和更高的能量效率。
基金The authors would like to acknowledge the support from Taif University Researchers Supporting Project Number (TURSP-2020/264),Taif University,。
文摘This paper presents a compact Multiple Input Multiple Output(MIMO)antenna with WLAN band notch for Ultra-Wideband(UWB)applications.The antenna is designed on 0.8mmthick low-cost FR-4 substrate having a compact size of 22mm×30 mm.The proposed antenna comprises of two monopole patches on the top layer of substrate while having a shared ground on its bottom layer.The mutual coupling between adjacent patches has been reduced by using a novel stub with shared ground structure.The stub consists of complementary rectangular slots that disturb the surface current direction and thus result in reducing mutual coupling between two ports.A slot is etched in the radiating patch for WLAN band notch.The slot is used to suppress frequencies ranging from 5.1 to 5.9 GHz.The results show that the proposed antenna has a very good impedance bandwidth of|S11|<−10 dB within the frequency band from 3.1–14 GHz.A low mutual coupling of less than−23 dB is achieved within the entire UWB band.Furthermore,the antenna has a peak gain of 5.8 dB,low ECC<0.002 and high Diversity Gain(DG>9.98).