NGAT:attention in breadth and depth exploration for semi-supervised graph representation learning

来源 :信息与电子工程前沿(英文版) | 被引量 : 0次 | 上传用户:ww20080808
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Recently, graph neural networks (GNNs) have achieved remarkable performance in representation learning on graph-structured data. However, as the number of network layers increases, GNNs based on the neighborhood aggregation strategy deteriorate due to the problem of oversmoothing, which is the major bottleneck for applying GNNs to real-world graphs. Many efforts have been made to improve the process of feature information aggregation from directly connected nodes, i.e., breadth exploration. However, these models perform the best only in the case of three or fewer layers, and the performance drops rapidly for deep layers. To alleviate oversmoothing, we propose a nested graph attention network (NGAT), which can work in a semi-supervised manner. In addition to breadth exploration, a k-layer NGAT uses a layer-wise aggregation strategy guided by the attention mechanism to selectively leverage feature information from the kth-order neighborhood, i.e., depth exploration. Even with a 10-layer or deeper architecture, NGAT can balance the need for preserving the locality (including root node features and the local structure) and aggregating the information from a large neighborhood. In a number of experiments on standard node classification tasks, NGAT outperforms other novel models and achieves state-of-the-art performance.
其他文献
为探究管道环焊缝断裂失效机理,测试了两种不同强度匹配的高铌X80环焊缝接头的组织和性能,并借助数字图像相关法(digital image correlation,DIC)观测了焊接接头在拉伸载荷下的应变行为.结果表明,低强匹配和高强匹配的高铌X80管道环焊接头均具有较好的冲击韧性,二者的夏比冲击吸收能量平均值相当,热影响区韧性离散主要是粗晶区组织不均匀性所致;高铌X80管线钢碳当量CEIIW较低,环焊缝接头热影响区存在一定程度软化.在轴向拉伸载荷下,无论是低强匹配还是高强匹配,应变集中最先出现在环焊缝的根
In recent years, PowerShell has increasingly been reported as appearing in a variety of cyber attacks. However, because the PowerShell language is dynamic by design and can construct script fragments at different levels, state-of-the-art static analysis b
针对钢结构件品种多、批量小,焊缝形状位置一致性差,机器人重复定位过程复杂等缺点,设计了一种基于激光视觉的钢结构焊缝图像处理系统.运用CCD工业相机和激光器,采集带有激光条带的焊缝图像,分别利用中值滤波柔化噪音,Otsu算法自适应阈值分割,开操作和形态学处理相结合去除图像中除目标像素外的小连通区域,提取激光条带的中心线,最终利用Hough变换对中心线直线拟合,得到特征点位置,并通过骨支架试验验证该技术的可行性.结果表明,该方法可快速准确地检测到焊缝特征点,满足实际要求.
针对乏燃料后处理溶解器腐蚀裂纹等缺陷的快速、一次性、可靠焊接修复工程技术需求,提出一种直流叠加脉冲型TIG深熔焊接方法,在10和16 mm厚304不锈钢板上进行了系列平板堆焊工艺试验.以电弧-熔池特性变化为研究对象,对比分析脉冲电流作用和直流叠加脉冲型电流作用的电弧行为、熔池流动行为及温度场的变化规律,探讨了直流叠加至脉冲电流波形的焊缝熔深增加机理.结果表明,高频脉冲电流使电弧产生电磁收缩效应,且电弧被压缩程度及焊缝熔深与脉冲频率(1~5 kHz)成正相关;叠加直流的高频脉冲电弧具有更高的电流、能量密度,
When obtaining three-dimensional (3D) face point cloud data based on structured light, factors related to the environment, occlusion, and illumination intensity lead to holes in the collected data, which affect subsequent recognition. In this study, we pr
Proprietary (or semi-proprietary) protocols are widely adopted in industrial control systems (ICSs). Inferring protocol format by reverse engineering is important for many network security applications, e.g., program tests and intrusion detection. Convent
采用显微观察、化学成分分析、硬度测定、EBSD分析的方法,研究了TIG焊接热输入对1.2 mm厚的SAF2507超级双相不锈钢焊接接头显微组织和硬度的影响机理.结果表明,在焊缝中,随着热输入由110 J/mm增加至156 J/mm,铁素体晶粒尺寸由90μm增至200μm,晶粒的粗化减少了奥氏体的形核位置,同时热输入的增加使焊缝中N元素含量由0.25%降低至0.21%,最终导致焊缝中奥氏体含量由28.9%减少至24.3%.在高温热影响区中,当热输入为132 J/mm时,奥氏体含量达到最高值,为36.4%,此
采用SnAgCu钎料对Al-60Si合金进行了超声波辅助低温钎焊,发现Ag元素可以与Al元素结合形成一层Ag2Al,促进钎料对母材的润湿和溶解.研究了钎焊温度及超声波作用时间对接头力学性能与微观组织的影响.结果表明,随着钎焊温度的升高,钎缝中的硅颗粒平均质量分数随之增加,由焊接温度240℃时的1.11%提高至钎焊温度360℃时的7.17%,接头抗剪强度呈先上升后降低的趋势,在330℃钎焊时达到最高,为42 MPa;当钎焊温度为330℃,将超声波施加时间从10 s增至70 s,钎缝中的硅颗粒平均质量分数从5
This paper presents a novel multiple-outlier-robust Kalman filter (MORKF) for linear stochastic discrete-time systems. A new multiple statistical similarity measure is first proposed to evaluate the similarity between two random vectors from dimension to
能量对电弧行为具有重要影响,开展高压环境下GMAW电弧能量耗散研究对指导焊接工艺和提升电弧稳定性具有重要意义.电弧的能量损失难以直接测量,为此创建以电弧中心一定距离的圆柱面的热流量作为参考,比较不同压力GMAW电弧的能量损失,基于流体力学和传热学理论,建立高压GMAW数值分析模型,计算电弧局部区域对外能量传输情况.建立了高压GMAW能量耗散测量试验平台,通过采集1/16圆柱面的能量传输量进行换算,获得整个圆柱面的能量传输情况,并采用圆管自然对流传热模型,对测量结果加以修正.将模拟和试验结果对比,分析环境压