TY - JOUR
T1 - A Study of the Effect of Doughnut Chart Parameters on Proportion Estimation Accuracy
AU - Cai, X.
AU - Efstathiou, K.
AU - Xie, X.
AU - Wu, Y.
AU - Shi, Y.
AU - Yu, L.
N1 - Funding Information:
The work was supported by National 973 Program of China (2015CB352503), NSFC (61761136020, 61502416, 61502132), NSFC-Zhejiang Joint Fund for the Integration of Industrialization and Informatization (U1609217), Zhejiang Provincial Natural Science Foundation (LR18F020001, LQ14E050010) and the 100 Talents Program of Zhejiang University. This project is also partially funded by Microsoft Research Asia. We thank Petra Isenberg from Inria and Steve Haroz from Northwestern University for helpful discussions.
Publisher Copyright:
© 2018 The Authors Computer Graphics Forum © 2018 The Eurographics Association and John Wiley & Sons Ltd.
PY - 2018/9
Y1 - 2018/9
N2 - Pie and doughnut charts nicely convey the part–whole relationship and they have become the most recognizable chart types for representing proportions in business and data statistics. Many experiments have been carried out to study human perception of the pie chart, while the corresponding aspects of the doughnut chart have seldom been tested, even though the doughnut chart and the pie chart share several similarities. In this paper, we report on a series of experiments in which we explored the effect of a few fundamental design parameters of doughnut charts, and additional visual cues, on the accuracy of such charts for proportion estimates. Since mobile devices are becoming the primary devices for casual reading, we performed all our experiments on such device. Moreover, the screen size of mobile devices is limited and it is therefore important to know how such size constraint affects the proportion accuracy. For this reason, in our first experiment we tested the chart size and we found that it has no significant effect on proportion accuracy. In our second experiment, we focused on the effect of the doughnut chart inner radius and we found that the proportion accuracy is insensitive to the inner radius, except the case of the thinnest doughnut chart. In the third experiment, we studied the effect of visual cues and found that marking the centre of the doughnut chart or adding tick marks at 25% intervals improves the proportion accuracy. Based on the results of the three experiments, we discuss the design of doughnut charts and offer suggestions for improving the accuracy of proportion estimates.
AB - Pie and doughnut charts nicely convey the part–whole relationship and they have become the most recognizable chart types for representing proportions in business and data statistics. Many experiments have been carried out to study human perception of the pie chart, while the corresponding aspects of the doughnut chart have seldom been tested, even though the doughnut chart and the pie chart share several similarities. In this paper, we report on a series of experiments in which we explored the effect of a few fundamental design parameters of doughnut charts, and additional visual cues, on the accuracy of such charts for proportion estimates. Since mobile devices are becoming the primary devices for casual reading, we performed all our experiments on such device. Moreover, the screen size of mobile devices is limited and it is therefore important to know how such size constraint affects the proportion accuracy. For this reason, in our first experiment we tested the chart size and we found that it has no significant effect on proportion accuracy. In our second experiment, we focused on the effect of the doughnut chart inner radius and we found that the proportion accuracy is insensitive to the inner radius, except the case of the thinnest doughnut chart. In the third experiment, we studied the effect of visual cues and found that marking the centre of the doughnut chart or adding tick marks at 25% intervals improves the proportion accuracy. Based on the results of the three experiments, we discuss the design of doughnut charts and offer suggestions for improving the accuracy of proportion estimates.
KW - information visualization
KW - user studies
UR - http://www.scopus.com/inward/record.url?scp=85041218722&partnerID=8YFLogxK
U2 - 10.1111/cgf.13325
DO - 10.1111/cgf.13325
M3 - Article
AN - SCOPUS:85041218722
SN - 0167-7055
VL - 37
SP - 300
EP - 312
JO - Computer Graphics Forum
JF - Computer Graphics Forum
IS - 6
ER -