Cornell University

Free Event

Transforming Noise: A History of Its Science and Technology from Disturbing Sounds to Informational Errors, 1900-1955

In this talk, I examine the historical origin of the attempts to understand, control, and use noise at modern times.  Today, the concept of noise is employed to characterize random fluctuations in general.  Before the twentieth century, however, noise only meant disturbing sounds.  In the 1900s-50s, noise underwent a conceptual transformation from unwanted sounds that needed to be domesticated into a synonym for errors and deviations on all kinds of signals and information.  I argue that this transformation proceeded in four stages.  The rise of sound reproduction technologies—phonograph, telephone, and radio—in the 1900s-20s prompted engineers to tackle unwanted sounds as physical effects of media through quantitative representations and measurements. Around the same time, physicists developed a theory of Brownian motions for random fluctuations and applied it to electronic noise in thermionic tubes of telecommunication systems.  These technological and scientific backgrounds led to three distinct theoretical treatments of noise in the 1920s-30s: statistical physicists’ studies of Brownian fluctuations’ temporal evolution, radio engineers’ spectral analysis of atmospheric disturbances, and mathematicians’ measure-theoretic formulation.  Finally, during and after World War II, researchers working on the military projects of radar, gunfire control, and secret communications converted the interwar theoretical studies of noise into tools for statistical detection, estimation, prediction, and information transmission.  In so doing, they turned noise into an informational concept.  Since the grappling of noise involved multiple disciplines, its history sheds light on the interactions between physics, mathematics, mechanical technology, electrical engineering, and information and data sciences in the twentieth century.


Chen-Pang Yeang is a professor at the Institute for the History and Philosophy of Science and Technology, University of Toronto. His research areas include the histories of physics, computing technologies, electrical engineering, language sciences, and sonic sciences and technologies in North America, Western Europe, and East Asia from the 19th century to the present. He published two books Transforming Noise (Oxford 2023) and Probing the Sky with Radio Waves (Chicago 2013), and articles on Chao Yuan Ren's cybernetics, Chinese computer enthusiasts' BBS network CFido, replication of Heinrich Hertz's electric-wave experiment, and more.

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