In this paper,a scheme of commonly-resonated extended interaction circuit system based on high order TMn,mode is proposed to lock the phases of two extended interaction oscillators(EIOs)for generating high power at G-...In this paper,a scheme of commonly-resonated extended interaction circuit system based on high order TMn,mode is proposed to lock the phases of two extended interaction oscillators(EIOs)for generating high power at G-band.Two separate EIOs are coupled through a specific single-gap coupling field supported by a designed gap waveguide with length Lg,which form the phase-locked EIOs based on the commonly-resonated system.As a whole system,the system has been focused on with mode analysis based on different single-gap coupling fields,mode hopping,which present the variation of phase difference between the two-beam-wave interactions when changing Lg.To demonstrate the effectiveness of the proposed circuit system in producing the phase locking,we conducted particle-in-cell(PIC)simulations to show that the interesting mode hopping occurs with the phase difference of O and r between the output signals from two output ports,corresponding to the excitation of the TMn mode with different n.Simulation results show that 1)the oscillator can deliver two times of the output power obtained from one single oscillator at 220 GHz,2)the two EIOs can still deliver output signals with phase difference of O and when the currents of the two beams are different or the fabrication errors of the two EIO cavities are taken into account.The proposed scheme is promising in extending to phase locking between multiple EIOs,and generating higher power at millimeter-wave and higher frequencies.展开更多
A radiation hard phase-locked loop (PLL) is designed at 2.5 GHz using silicon on sapphire complementary metal-oxide-semiconductor process. Radiation hardness is achieved through improving circuit design without sacr...A radiation hard phase-locked loop (PLL) is designed at 2.5 GHz using silicon on sapphire complementary metal-oxide-semiconductor process. Radiation hardness is achieved through improving circuit design without sacrificing real estate. Stability is guaranteed by a fully self-bias architecture. The lock time of PLL is minimized by maximizing the loop bandwidth. Frequency tuning range of voltage controlled oscillator is significantly enhanced by a novel load configuration. In addition, multiple bias stages, asynchronous frequency divider, and silicon on sapphire process jointly make the proposed PLL more radiation hard. Layout of this PLL is simulated by Cadence Spectre RF under both single event effect and total induced dose effect. Simulation results demonstrate excellent stability, lock time 〈 600 ns, frequency tuning range [1.57 GHz, 3.46 GHz], and jitter 〈 12 ps. Through comparison with PLLs in literatures, the PLL is especially superior in terms of lock time and frequency tuning range performances.展开更多
脑电信号(Electroencephalogram,EEG)作为一种客观直接的信息源,被广泛应用于情绪识别任务。为了提取脑电信号的空间连通特征所隐含的信息,提出了一种基于空间连通特征和残差卷积神经网络(Spatial connectivity features and residual c...脑电信号(Electroencephalogram,EEG)作为一种客观直接的信息源,被广泛应用于情绪识别任务。为了提取脑电信号的空间连通特征所隐含的信息,提出了一种基于空间连通特征和残差卷积神经网络(Spatial connectivity features and residual convolutional neural network,SCF-RCNN)模型的情绪识别方法。该方法从经预处理的脑电信号中提取皮尔逊相关系数(Pearson correlation coefficient,PCC)、锁相值(Phase-locked value,PLV)和互信息(Mutual information,MI)作为空间连通特征,使用包含两个残差模块的卷积神经网络模型来提取情感信息。在SEED数据集上的实验结果显示,PLV构造的连接矩阵与脑电情绪关系更为密切,其平均准确率可达93.38%,标准差为3.35%。与传统算法相比,SCF-RCNN在情绪识别领域的分类任务中表现更为优越,表明该方法在情绪识别领域具有重要的应用潜力。展开更多
电网同步锁相是光伏跟网型并网系统稳定可靠运行的关键技术之一。高比例新能源场景下,电网面临着电压扰动、电压不平衡、谐波畸变及直流偏置等诸多问题。为此,提出一种基于同步参考坐标系锁相环和环前型滑动平均滤波结构(pre-loop movin...电网同步锁相是光伏跟网型并网系统稳定可靠运行的关键技术之一。高比例新能源场景下,电网面临着电压扰动、电压不平衡、谐波畸变及直流偏置等诸多问题。为此,提出一种基于同步参考坐标系锁相环和环前型滑动平均滤波结构(pre-loop moving average filter,PMAF)的新型锁相环。该锁相环采用相位补偿方法校正频率偏移时的锁相误差。同时,考虑PMAF的相频耦合特性,设计了一种角频率补偿方法以提高锁相环的动态性能,建立其小信号模型并进行稳定性分析。接着设计了一种故障检测模块,实现两种补偿支路的投入和切除以适应不同工况。仿真验证了该新型锁相环在相位跳变、频率偏移、电压畸变等复杂电网条件下的有效性。最后,在高比例新能源电网中进行了新型锁相环的暂态性能测试。结果表明该锁相环能快速锁定电网电压相位,避免电压电流的振荡发散,有利于系统在故障后快速平稳地恢复。展开更多
基金Supported in part by the National Natural Science Foundation of China(62401125)the Natural Science Foundation of Sichuan Province(2023NSFSC1376)the Fundamental Research Funds for the Central Universities(ZYGX2024J008)。
文摘In this paper,a scheme of commonly-resonated extended interaction circuit system based on high order TMn,mode is proposed to lock the phases of two extended interaction oscillators(EIOs)for generating high power at G-band.Two separate EIOs are coupled through a specific single-gap coupling field supported by a designed gap waveguide with length Lg,which form the phase-locked EIOs based on the commonly-resonated system.As a whole system,the system has been focused on with mode analysis based on different single-gap coupling fields,mode hopping,which present the variation of phase difference between the two-beam-wave interactions when changing Lg.To demonstrate the effectiveness of the proposed circuit system in producing the phase locking,we conducted particle-in-cell(PIC)simulations to show that the interesting mode hopping occurs with the phase difference of O and r between the output signals from two output ports,corresponding to the excitation of the TMn mode with different n.Simulation results show that 1)the oscillator can deliver two times of the output power obtained from one single oscillator at 220 GHz,2)the two EIOs can still deliver output signals with phase difference of O and when the currents of the two beams are different or the fabrication errors of the two EIO cavities are taken into account.The proposed scheme is promising in extending to phase locking between multiple EIOs,and generating higher power at millimeter-wave and higher frequencies.
文摘A radiation hard phase-locked loop (PLL) is designed at 2.5 GHz using silicon on sapphire complementary metal-oxide-semiconductor process. Radiation hardness is achieved through improving circuit design without sacrificing real estate. Stability is guaranteed by a fully self-bias architecture. The lock time of PLL is minimized by maximizing the loop bandwidth. Frequency tuning range of voltage controlled oscillator is significantly enhanced by a novel load configuration. In addition, multiple bias stages, asynchronous frequency divider, and silicon on sapphire process jointly make the proposed PLL more radiation hard. Layout of this PLL is simulated by Cadence Spectre RF under both single event effect and total induced dose effect. Simulation results demonstrate excellent stability, lock time 〈 600 ns, frequency tuning range [1.57 GHz, 3.46 GHz], and jitter 〈 12 ps. Through comparison with PLLs in literatures, the PLL is especially superior in terms of lock time and frequency tuning range performances.
文摘电网同步锁相是光伏跟网型并网系统稳定可靠运行的关键技术之一。高比例新能源场景下,电网面临着电压扰动、电压不平衡、谐波畸变及直流偏置等诸多问题。为此,提出一种基于同步参考坐标系锁相环和环前型滑动平均滤波结构(pre-loop moving average filter,PMAF)的新型锁相环。该锁相环采用相位补偿方法校正频率偏移时的锁相误差。同时,考虑PMAF的相频耦合特性,设计了一种角频率补偿方法以提高锁相环的动态性能,建立其小信号模型并进行稳定性分析。接着设计了一种故障检测模块,实现两种补偿支路的投入和切除以适应不同工况。仿真验证了该新型锁相环在相位跳变、频率偏移、电压畸变等复杂电网条件下的有效性。最后,在高比例新能源电网中进行了新型锁相环的暂态性能测试。结果表明该锁相环能快速锁定电网电压相位,避免电压电流的振荡发散,有利于系统在故障后快速平稳地恢复。