scholarly journals Graph Design: The Data-ink Ratio and Expert Users

Author(s):  
Kevin McGurgan ◽  
Elena Fedoroksaya ◽  
Tina Sutton ◽  
Andrew Herbert
Keyword(s):  
2015 ◽  
Vol 31 (4) ◽  
pp. 723-736 ◽  
Author(s):  
Marinus Spreen ◽  
Stefan Bogaerts

Abstract Link-tracing designs are often used to estimate the size of hidden populations by utilizing the relational links between their members. A major problem in studies of hidden populations is the lack of a convenient sampling frame. The most frequently applied design in studies of hidden populations is respondent-driven sampling in which no sampling frame is used. However, in some studies multiple but incomplete sampling frames are available. In this article, we introduce the B-graph design that can be used in such situations. In this design, all available incomplete sampling frames are joined and turned into one sampling frame, from which a random sample is drawn and selected respondents are asked to mention their contacts. By considering the population as a bipartite graph of a two-mode network (those from the sampling frame and those who are not on the frame), the number of respondents who are directly linked to the sampling frame members can be estimated using Chao’s and Zelterman’s estimators for sparse data. The B-graph sampling design is illustrated using the data of a social network study from Utrecht, the Netherlands.


2021 ◽  
pp. 108626
Author(s):  
Yexiao He ◽  
Xiaoning Zhang ◽  
Zixiang Xia ◽  
Yutao Liu ◽  
Keshav Sood ◽  
...  

Author(s):  
Ryusuke UMEYAMA ◽  
Shun NIIJIMA ◽  
Yoko SASAKI ◽  
Hiroshi TAKEMURA

2013 ◽  
Vol 73 (11) ◽  
pp. 1417-1429
Author(s):  
Sunita Chandrasekaran ◽  
Shilpa Shanbagh ◽  
Ramkumar Jayaraman ◽  
Douglas L. Maskell ◽  
Hui Yan Cheah

2011 ◽  
Vol 62 (5) ◽  
pp. 258-266 ◽  
Author(s):  
Roman Šotner ◽  
Zdeněk Hruboš ◽  
Břetislav Ševčík ◽  
Josef Slezák ◽  
Jiří Petržela ◽  
...  

An Example of Easy Synthesis of Active Filter and Oscillator using Signal Flowgraph Modification and Controllable Current Conveyors The paper deals with synthesis of active frequency filters and oscillators for applications in the video band. The synthesis is based on the modified signal flow graph design approach in the current mode. The commercially available high frequency current conveyors and second order structures are used. Basic structure is employing loss-less and lossy current mode integrators in two distributed feedback loops. Some of the used active elements allow to control current gain which is very useful in applications. High frequency multi-functional filter and electronically adjustable quadrature oscillator configurations are discussed. Most of the used passive elements (mainly capacitors) are grounded which is suitable for IC implementation. Simulation and experimental results demonstrate function and features very well.


Author(s):  
Xu Duan ◽  
Jingzheng Wu ◽  
Shouling Ji ◽  
Zhiqing Rui ◽  
Tianyue Luo ◽  
...  

With the explosive development of information technology, vulnerabilities have become one of the major threats to computer security. Most vulnerabilities with similar patterns can be detected effectively by static analysis methods. However, some vulnerable and non-vulnerable code is hardly distinguishable, resulting in low detection accuracy. In this paper, we define the accurate identification of vulnerabilities in similar code as a fine-grained vulnerability detection problem. We propose VulSniper which is designed to detect fine-grained vulnerabilities more effectively. In VulSniper, attention mechanism is used to capture the critical features of the vulnerabilities. Especially, we use bottom-up and top-down structures to learn the attention weights of different areas of the program. Moreover, in order to fully extract the semantic features of the program, we generate the code property graph, design a 144-dimensional vector to describe the relation between the nodes, and finally encode the program as a feature tensor. VulSniper achieves F1-scores of 80.6% and 73.3% on the two benchmark datasets, the SARD Buffer Error dataset and the SARD Resource Management Error dataset respectively, which are significantly higher than those of the state-of-the-art methods.


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