Non-orthogonal multiple access(NOMA) is a new access method to achieve high performance gains in terms of capacity and throughput, so it is currently under consideration as one of the candidates for fifth generation(5...Non-orthogonal multiple access(NOMA) is a new access method to achieve high performance gains in terms of capacity and throughput, so it is currently under consideration as one of the candidates for fifth generation(5 G) technologies. NOMA utilizes power domain in order to superimpose signals of multiple users in a single transmitted signal. This creates a lot of interference at the receive side. Although the use of successive interference cancellation(SIC) technique reduces the interference, but to further improve the receiver performance, in this paper, we have proposed a joint Walsh-Hadamard transform(WHT) and NOMA approach for achieving better performance gains than the conventional NOMA. WHT is a well-known code used in communication systems and is used as an orthogonal variable spreading factor(OVSF) in communication systems. Application of WHT to NOMA results in low bit error rate(BER) and high throughput performance for both low and high channel gain users. Further, it also reduces peak to average power ratio(PAPR) of the user signal. The results are discussed in terms of comparison between the conventionalNOMA and the proposed technique, which shows that it offers high performance gains in terms of low BER at different SNR levels, reduced PAPR, high user throughput performance and better spectral efficiency.展开更多
Signal extinction ratio (EXT) induced penalty in WDMA networks with wavelength routers and in line optical amplifiers is investigated. Theoretical results show that EXT can greatly influence network performance when...Signal extinction ratio (EXT) induced penalty in WDMA networks with wavelength routers and in line optical amplifiers is investigated. Theoretical results show that EXT can greatly influence network performance when signal related beat noise dominates. EXT should be higher than 10dB to prevent steep degradation of power penalty. Furthermore, a trade off between the number of wavelength routers and that of in line amplifiers within WDMA networks should be made.展开更多
This paper investigates a peak to average power ratio (PAPR) reduction method in multicarrier code division multiple access (MC-CDMA) system. Variable code sets (VCS), a spreading codes selection scheme, can imp...This paper investigates a peak to average power ratio (PAPR) reduction method in multicarrier code division multiple access (MC-CDMA) system. Variable code sets (VCS), a spreading codes selection scheme, can improve the PAPR property of the MC-CDMA signals, but this technique requires an exhaustive search over the combinations of spreading code sets. It is observed that when the number of active users increases, the search complexity will increase exponentially. Based on this fact, we propose a low complexity VCS (LC-VCS) method to reduce the computational complexity. The basic idea of LC-VCS is to derive new signals using the relationship between candidature signals. Simulation results show that the proposed approach can reduce PAPR with lower comtational pucomplexity. In addition, it can be blindly received without any side information.展开更多
针对光伏并网对系统小干扰稳定的影响,提出基于随机响应面法和摄动法的阻尼比灵敏度求取方法。以光伏出力波动的随机激励作为摄动量,通过摄动法求解光伏在不同节点并网的阻尼比灵敏度;根据阻尼比灵敏度的大小筛选最佳的光伏并网节点,通...针对光伏并网对系统小干扰稳定的影响,提出基于随机响应面法和摄动法的阻尼比灵敏度求取方法。以光伏出力波动的随机激励作为摄动量,通过摄动法求解光伏在不同节点并网的阻尼比灵敏度;根据阻尼比灵敏度的大小筛选最佳的光伏并网节点,通过优化方法确定光伏发电的接入位置和容量,得到光伏发电的最佳接入方式。以New England 10机39节点系统和西部某省实际电力系统为例验证所提方法的有效性。展开更多
在单载波频分多址接入(single carrier frequency division multiple access,SC-FDMA)系统中提出用Ⅰ型、Ⅱ型、Ⅲ型、Ⅳ型4种不同类型离散余弦变换代替离散傅里叶变换。基于不同变换,分别推导上行链路传输信号时域表达式,并对推导式展...在单载波频分多址接入(single carrier frequency division multiple access,SC-FDMA)系统中提出用Ⅰ型、Ⅱ型、Ⅲ型、Ⅳ型4种不同类型离散余弦变换代替离散傅里叶变换。基于不同变换,分别推导上行链路传输信号时域表达式,并对推导式展开分析,比较基于不同类型离散余弦变换的SC-FDMA系统信号的特性及PAPR(peak to av-erage power ratio)性能。仿真结果表明基于DCT-Ⅱ的SC-FDMA系统与基于DFT(discrete Fourier transform)的系统一致,具有更好的PAPR特性。展开更多
基金supported by Priority Research Centers Program through the National Research Foundation of Korea(NRF) funded by the Ministry of Education, Science and Technology (2018R1A6A1A03024003)
文摘Non-orthogonal multiple access(NOMA) is a new access method to achieve high performance gains in terms of capacity and throughput, so it is currently under consideration as one of the candidates for fifth generation(5 G) technologies. NOMA utilizes power domain in order to superimpose signals of multiple users in a single transmitted signal. This creates a lot of interference at the receive side. Although the use of successive interference cancellation(SIC) technique reduces the interference, but to further improve the receiver performance, in this paper, we have proposed a joint Walsh-Hadamard transform(WHT) and NOMA approach for achieving better performance gains than the conventional NOMA. WHT is a well-known code used in communication systems and is used as an orthogonal variable spreading factor(OVSF) in communication systems. Application of WHT to NOMA results in low bit error rate(BER) and high throughput performance for both low and high channel gain users. Further, it also reduces peak to average power ratio(PAPR) of the user signal. The results are discussed in terms of comparison between the conventionalNOMA and the proposed technique, which shows that it offers high performance gains in terms of low BER at different SNR levels, reduced PAPR, high user throughput performance and better spectral efficiency.
文摘Signal extinction ratio (EXT) induced penalty in WDMA networks with wavelength routers and in line optical amplifiers is investigated. Theoretical results show that EXT can greatly influence network performance when signal related beat noise dominates. EXT should be higher than 10dB to prevent steep degradation of power penalty. Furthermore, a trade off between the number of wavelength routers and that of in line amplifiers within WDMA networks should be made.
文摘This paper investigates a peak to average power ratio (PAPR) reduction method in multicarrier code division multiple access (MC-CDMA) system. Variable code sets (VCS), a spreading codes selection scheme, can improve the PAPR property of the MC-CDMA signals, but this technique requires an exhaustive search over the combinations of spreading code sets. It is observed that when the number of active users increases, the search complexity will increase exponentially. Based on this fact, we propose a low complexity VCS (LC-VCS) method to reduce the computational complexity. The basic idea of LC-VCS is to derive new signals using the relationship between candidature signals. Simulation results show that the proposed approach can reduce PAPR with lower comtational pucomplexity. In addition, it can be blindly received without any side information.
文摘针对光伏并网对系统小干扰稳定的影响,提出基于随机响应面法和摄动法的阻尼比灵敏度求取方法。以光伏出力波动的随机激励作为摄动量,通过摄动法求解光伏在不同节点并网的阻尼比灵敏度;根据阻尼比灵敏度的大小筛选最佳的光伏并网节点,通过优化方法确定光伏发电的接入位置和容量,得到光伏发电的最佳接入方式。以New England 10机39节点系统和西部某省实际电力系统为例验证所提方法的有效性。
文摘在单载波频分多址接入(single carrier frequency division multiple access,SC-FDMA)系统中提出用Ⅰ型、Ⅱ型、Ⅲ型、Ⅳ型4种不同类型离散余弦变换代替离散傅里叶变换。基于不同变换,分别推导上行链路传输信号时域表达式,并对推导式展开分析,比较基于不同类型离散余弦变换的SC-FDMA系统信号的特性及PAPR(peak to av-erage power ratio)性能。仿真结果表明基于DCT-Ⅱ的SC-FDMA系统与基于DFT(discrete Fourier transform)的系统一致,具有更好的PAPR特性。