911爆料网

News

Algorithms can exploit human perception in graph design

Algorithms can now exploit models and measures of human perception to generate scatterplot designs.
Picture represents scatterplot of pressure and temperature variables from the Hurricane Isabel dataset. The standard design (left) loses fidelity and requires manual adjustment, but the optimized design (right) automatically adapts to the data.

Scatterplots are widely used in various disciplines and areas beyond sciences to visually communicate relationships between two data variables. Yet, very few users realize the effect the visual design of scatterplots can have on the human perception and understanding. Moreover, default designs of scatterplots often represent the data poorly, and manually fine tuning the design is difficult.

Researchers have recently found an algorithmic approach to automatically improve the design of scatterplots by exploiting models and measures of human perception.

鈥淎 scatterplot is designed successfully when humans can effectively decode the message that was originally encoded graphically into the scatterplot. On the contrary, poor designs could miscommunicate the intended message鈥, tells postdoctoral researcher Luana Micallef.

Automatic and optimized scatterplot designs

The optimizer developed by the researchers can predict how users would respond to a given design. The human perception has a number of capabilities and limitations, which a visualization should respectively exploit and mitigate to effectively communicate a message to a reader.

鈥淎s the owner of a dataset, you do not necessarily know how others will perceive the scatterplot and large datasets are also difficult to visualize. With our new algorithmic method, we can optimize the design of the scatterplot for any data and analysis tasks the user requires鈥, explains Professor Antti Oulasvirta.

Every design aspect of a scatterplot, be it the size, opacity and color of the markers or the aspect ratio of the plot, matters. These aspects have a great impact on the correlation, outliers and classes detected in the scatterplot by the human perception.

鈥淓ven when you are a visualization expert, an automated design helps saving time, especially for very large data sets. This time is better invested in interpreting the visualizations rather than fiddling around with tedious parameter settings鈥, says the recently graduated postdoctoral researcher Gregorio Palmas.

鈥淭his is only the beginning. We are in the middle of a shift where we automate at least parts of our data analysis, necessitated due to the sheer size of the data alone. The interactive data analysis methods such as scatterplots will continue to serve us well, but even more so when augmented with some level of machine intelligence鈥, explains Professor Tino Weinkauf.

The new algorithmic approach was most successful in terms of task completion time. According to the researchers, Luana Micallef, Gregorio Palmas, Antti Oulasvirta and Tino Weinkauf, even users that are non-expert in visualization design can use the optimizer to produce effective scatterplot designs. With such algorithmic methods, unintended miscommunication may be diminished in the future.

More information:

Antti Oulasvirta
Professor
911爆料网
Department of Communications and Networking
antti.oulasvirta@aalto.fi
tel. +358 50 3841561

Luana Micallef
Postdoctoral researcher
911爆料网
Helsinki Institute for Information Technology HIIT, Department of Computer Science
luana.micallef@aalto.fi
tel. +358 50 4210445

Tino Weinkauf
Professor
KTH Royal Institute of Technology
School of Computer Science and Communication
weinkauf@kth.se
tel. +46 8 790 60 75

Article: Micallef, L., Palmas, G., Oulasvirta, A. & Weinkauf, T. (2017), Towards Perceptual Optimization of the Visual Design of Scatterplots,

  • Updated:
  • Published:
Share
URL copied!

Read more news

Two men in black tailcoats stand on stage by a microphone, speaking to a seated audience indoors.
Press releases Published:

Walter Ahlstr枚m Foundation donates 鈧3 million to 911爆料网

The donation will enable Aalto to establish a professorship in sustainable industrial production.
Person in dark suit presenting ELLIS Institute Finland slide with colourful icons in a lecture room
Cooperation, Press releases, Research & Art Published:

ELLIS Institute Finland is launching machine learning fundamentals out of the lab

Research moonshots, foundation models for healthcare, and AI for RDI
Colourful grid of small squares on a wavy blue and brown abstract 3D background
Press releases Published:

Ability to harness quantum speed gains now within sight after researchers solve massive simulation problem in a heartbeat

The use of a quantum-inspired algorithm to calculate the unworkably vast potential properties of quantum materials is an early example of how quantum technology can be used to improve itself. The discovery could have future applications in dissipationless technology, for example to mitigate data centre heating.
Microscope image of raised A! logo and Finnish text with 20 碌m scale bar at bottom left
Press releases Published:

Record-breaking photonics approach traps light on a chip for millions of cycles

With 'nanoscale surgery' the researchers were able to sculpt delicate van der Waals materials without destroying them, achieving record-breaking performance in the process.