期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
PAPR Reduction of NOMA Using Vandermonde Matrix-Particle Transmission Sequence 被引量:1
1
作者 Arun Kumar Sandeep Gupta +1 位作者 Himanshu Sharma Mehedi Masud 《Computer Systems Science & Engineering》 SCIE EI 2022年第10期193-201,共9页
Non-Orthogonal Multiple Access(NOMA)is an ideal choice for 5G waveforms due to their characteristics such as high data rate,massive device connectivity,high spectral access,and effective frequency selective fading.Thu... Non-Orthogonal Multiple Access(NOMA)is an ideal choice for 5G waveforms due to their characteristics such as high data rate,massive device connectivity,high spectral access,and effective frequency selective fading.Thus,it permits gigantic connectivity.The spectrum overlaps with NOMA,which consents several operators to segment the spectrum at the same frequency.These features make NOMA more suitable for use beyond 5G.Peak to Average Power(PAPR)is a major problem in Multi-Carrier Techniques(MCT)like NOMA and it also degrades the performance of the amplifier.The Partial Transmission Sequence(PTS)is a superior algorithm for moderating the PAPR.However,it also increases the complexity of the structure.The PAPR is reduced in NOMA by multiplying the NOMA signal with optimised phase vectors(P).The phase vectors are generated by using the Vandermonde Matrix(VM).In this work,we proposed a VM-PTS algorithm for the NOMA system,and the number of computations to search the optimal phase vectors for NOMA high PAPR signal is less as compared with existing PTS.The outcomes demonstrate that the performance of the recommended PTS in terms of PAPR,Bit Error Rate(BER),and complexity is better than the conventional PTS(C-PTS). 展开更多
关键词 vm-pts NOMA PAPR 5G
下载PDF
低温调相VM-PT制冷机蓄冷器优化研究
2
作者 王珏 张通 +2 位作者 潘长钊 周远 王俊杰 《工程热物理学报》 EI CAS CSCD 北大核心 2019年第1期17-21,共5页
低温调相VM气耦合脉冲管制冷机是一种热驱动的新型液氦温区制冷机。本文对液氦温区的低温调相VM气耦合脉冲管制冷机蓄冷器进行了相关研究。首先对制冷机系统及蓄冷器填充方式进行了介绍;其次利用Sage对两级蓄冷器中不同填充方式进行了... 低温调相VM气耦合脉冲管制冷机是一种热驱动的新型液氦温区制冷机。本文对液氦温区的低温调相VM气耦合脉冲管制冷机蓄冷器进行了相关研究。首先对制冷机系统及蓄冷器填充方式进行了介绍;其次利用Sage对两级蓄冷器中不同填充方式进行了数值研究;最后对制冷机两级填充方式进行了实验验证及优化,最终该制冷机获到了3.06 K的无负荷制冷温,在4.2 K可以提供30.2 mW的制冷量。 展开更多
关键词 液氦温区 vm-pt制冷机 蓄冷材料 数值计算
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部