For Brain-Computer Interface(BCI) systems, improving the Information Transfer Rate(ITR) is a very critical issue. This study focuses on a Steady-State Visually Evoked Potential(SSVEP)-based BCI because of its advantag...For Brain-Computer Interface(BCI) systems, improving the Information Transfer Rate(ITR) is a very critical issue. This study focuses on a Steady-State Visually Evoked Potential(SSVEP)-based BCI because of its advantage of high ITR. Unsupervised Canonical Correlation Analysis(CCA)-based method has been widely employed because of its high efficiency and easy implementation. In a recent study, an ensemble-CCA method based on individual training data was proposed and achieved an excellent performance with ITR of 267 bit/min.A 40-target SSVEP-BCI speller was investigated in this study, using an integration of Minimal-Distance(MD) and Maximal-Phase-locking value(MP) approaches. In the MD approach, a spatial filter is developed to minimize the distance between the training data and the reference sine signal, and in this study, two different types of distance were compared. In the MP approach, a spatial filter is developed to maximize the Phase-Locking Value(PLV)between the training calibration data and the reference sine signal. In addition to the fundamental frequency of stimulation, the harmonics were used to train MD and MP spatial filters, which formed spatial filter banks. The test data epoch was multiplied by the MP and MD spatial filter banks, and the distances and PLVs were extracted as features for recognition. Across 12 subjects with a 0.4 s-data length, the proposed method realized an average classification accuracy and ITR of 93% and 307 bit/min, respectively, which is significantly higher than the current state-of-the-art method. To the best of our knowledge, these results suggest that the proposed method has achieved the highest ITR in SSVEP-BCI studies.展开更多
基于TDMA机制的MAC层接入协议在工业控制网络的实时性保证方面具有极大的优势。然而要保证该机制微秒级的时隙调度,网络中所有的节点必须保持时间同步的高精度。针对现有的一些同步算法并不能完全满足这种高精度时间同步要求的问题,在...基于TDMA机制的MAC层接入协议在工业控制网络的实时性保证方面具有极大的优势。然而要保证该机制微秒级的时隙调度,网络中所有的节点必须保持时间同步的高精度。针对现有的一些同步算法并不能完全满足这种高精度时间同步要求的问题,在传统的时间同步算法基础上,添加时钟漂移预测与补偿机制,改进得到一种具有同步精度高、能量消耗低等优点的同步算法——ITR(Improved Wireless Sensor Networks Time Synchronization Algorithm Based On TPSN and RBS),并在Router BOARD493G路由节点上进行实验测试。实验结果表明ITR同步算法的平均同步误差比传统同步算法降低了约52%。展开更多
介绍带电离子在物质中输运模拟的详细历史法,开发模拟程序ITR(ions transport and reaction),同时实现抽取离子飞行步长的基本方法和脉冲近似法,计算结果与CORTEO及TRIM程序的结果比较符合很好.讨论两种步长选取方法,对脉冲近似法的最...介绍带电离子在物质中输运模拟的详细历史法,开发模拟程序ITR(ions transport and reaction),同时实现抽取离子飞行步长的基本方法和脉冲近似法,计算结果与CORTEO及TRIM程序的结果比较符合很好.讨论两种步长选取方法,对脉冲近似法的最大步长进行限制,分析CORTEO程序与TRIM程序计算结果差别的主要原因.ITR同时具有TRIM和CORTEO的优点,采用脉冲近似法减少需要计算的核碰撞次数,通过索引(Index)方法对散射角的计算进行加速,计算效率大幅提高.展开更多
This paper presents a low power design for a 384 x 288 infrared (IR) readout integrated circuit (ROIC). For the character of IR detector ( ro ≈ 100kΩ, Iint ≈ 100nA), a novel pixel structure called quad-share ...This paper presents a low power design for a 384 x 288 infrared (IR) readout integrated circuit (ROIC). For the character of IR detector ( ro ≈ 100kΩ, Iint ≈ 100nA), a novel pixel structure called quad-share buffered direct injection (QSBDI) is proposed and realized. In QSBDI,four neighbor pixels share one buffered amplifier,which creates high injection efficiency, a stable bias, good FPN performance, and low power usage. This ROIC also supports two integration modes (integration then readout and integration while readout), two selectable gains, and four window readout modes. A test 128 × 128 ROIC is designed,fabricated,and tested. The test results show that the ROIC has good linearity. The peak to peak variance of the sub array is about 10mV. The power of pixel stage is only lmW,and the total power dissipation is 37mW at a working frequency of 4MHz.展开更多
We report direct nanoscale imaging of ultrafast plasmon in a gold dolmen nanostructure excited with the 7is laser pulses by combining the interferometric time-resolved technology with the three-photon photoemission el...We report direct nanoscale imaging of ultrafast plasmon in a gold dolmen nanostructure excited with the 7is laser pulses by combining the interferometric time-resolved technology with the three-photon photoemission electron microscopy (PEEM). The interferometric time-resolved traces show that the plasmon mode beating pattern appears at the ends of the dimer slabs in the dolmen nanostructure as a result of coherent superposition of multiple localized surface plasmon modes induced by broad bandwidth of the ultrafast laser pulses. The PEEM measurement further discloses that in-phase of the oscillation field of two neighbor defects are surprisingly observed, which is attributed to the plasmon coupling between them. Furthermore, the control of the temporal delay between the pump and probe laser pluses could be utilized for manipulation of the near-field distribution. These findings deepen our understanding of ultrafast plasmon dynamics in a complex nanosystem.展开更多
基金supported by the National Natural Science Foundation of China (Nos. 61431007 and 91320202)
文摘For Brain-Computer Interface(BCI) systems, improving the Information Transfer Rate(ITR) is a very critical issue. This study focuses on a Steady-State Visually Evoked Potential(SSVEP)-based BCI because of its advantage of high ITR. Unsupervised Canonical Correlation Analysis(CCA)-based method has been widely employed because of its high efficiency and easy implementation. In a recent study, an ensemble-CCA method based on individual training data was proposed and achieved an excellent performance with ITR of 267 bit/min.A 40-target SSVEP-BCI speller was investigated in this study, using an integration of Minimal-Distance(MD) and Maximal-Phase-locking value(MP) approaches. In the MD approach, a spatial filter is developed to minimize the distance between the training data and the reference sine signal, and in this study, two different types of distance were compared. In the MP approach, a spatial filter is developed to maximize the Phase-Locking Value(PLV)between the training calibration data and the reference sine signal. In addition to the fundamental frequency of stimulation, the harmonics were used to train MD and MP spatial filters, which formed spatial filter banks. The test data epoch was multiplied by the MP and MD spatial filter banks, and the distances and PLVs were extracted as features for recognition. Across 12 subjects with a 0.4 s-data length, the proposed method realized an average classification accuracy and ITR of 93% and 307 bit/min, respectively, which is significantly higher than the current state-of-the-art method. To the best of our knowledge, these results suggest that the proposed method has achieved the highest ITR in SSVEP-BCI studies.
文摘基于TDMA机制的MAC层接入协议在工业控制网络的实时性保证方面具有极大的优势。然而要保证该机制微秒级的时隙调度,网络中所有的节点必须保持时间同步的高精度。针对现有的一些同步算法并不能完全满足这种高精度时间同步要求的问题,在传统的时间同步算法基础上,添加时钟漂移预测与补偿机制,改进得到一种具有同步精度高、能量消耗低等优点的同步算法——ITR(Improved Wireless Sensor Networks Time Synchronization Algorithm Based On TPSN and RBS),并在Router BOARD493G路由节点上进行实验测试。实验结果表明ITR同步算法的平均同步误差比传统同步算法降低了约52%。
文摘介绍带电离子在物质中输运模拟的详细历史法,开发模拟程序ITR(ions transport and reaction),同时实现抽取离子飞行步长的基本方法和脉冲近似法,计算结果与CORTEO及TRIM程序的结果比较符合很好.讨论两种步长选取方法,对脉冲近似法的最大步长进行限制,分析CORTEO程序与TRIM程序计算结果差别的主要原因.ITR同时具有TRIM和CORTEO的优点,采用脉冲近似法减少需要计算的核碰撞次数,通过索引(Index)方法对散射角的计算进行加速,计算效率大幅提高.
文摘This paper presents a low power design for a 384 x 288 infrared (IR) readout integrated circuit (ROIC). For the character of IR detector ( ro ≈ 100kΩ, Iint ≈ 100nA), a novel pixel structure called quad-share buffered direct injection (QSBDI) is proposed and realized. In QSBDI,four neighbor pixels share one buffered amplifier,which creates high injection efficiency, a stable bias, good FPN performance, and low power usage. This ROIC also supports two integration modes (integration then readout and integration while readout), two selectable gains, and four window readout modes. A test 128 × 128 ROIC is designed,fabricated,and tested. The test results show that the ROIC has good linearity. The peak to peak variance of the sub array is about 10mV. The power of pixel stage is only lmW,and the total power dissipation is 37mW at a working frequency of 4MHz.
基金Supported by the National Basic Research Program of China under Grant No 2013CB922404the National Natural Science Foundation of China under Grant Nos 11474040,11474039,61605017 and 61575030the Project of Changchun Science and Technology Bureau under Grant No 14KP007
文摘We report direct nanoscale imaging of ultrafast plasmon in a gold dolmen nanostructure excited with the 7is laser pulses by combining the interferometric time-resolved technology with the three-photon photoemission electron microscopy (PEEM). The interferometric time-resolved traces show that the plasmon mode beating pattern appears at the ends of the dimer slabs in the dolmen nanostructure as a result of coherent superposition of multiple localized surface plasmon modes induced by broad bandwidth of the ultrafast laser pulses. The PEEM measurement further discloses that in-phase of the oscillation field of two neighbor defects are surprisingly observed, which is attributed to the plasmon coupling between them. Furthermore, the control of the temporal delay between the pump and probe laser pluses could be utilized for manipulation of the near-field distribution. These findings deepen our understanding of ultrafast plasmon dynamics in a complex nanosystem.