PolyMap: A 64-Channel Polyphonic Guitar Pickup System
David Wieland, Jonas Roth, Christoph Studer
Abstract
In electric guitars, the vibrations of the strings are typically sensed by coils of wire combined with a magnet, called pickups. The pickups and their position along the strings contribute strongly to the instrument's sound. Most guitars feature one to three pickups, each spanning across all strings with fixed positions and generating a single mono output. The work of this Master's Thesis at ETH Zürich introduces a new pickup system called PolyMap, which senses each string individually and at multiple locations. The system is demonstrated with a custom-made eight-string guitar that contains eight pickups per string for a total of 64 pickups. The signals from these 64 pickups are individually digitized inside the guitar and transmitted over a multichannel audio digital interface (MADI), a low-latency digital audio interface, to a computer for further processing. PolyMap enables high-resolution sensing of an electric guitar's strings and enables extensive post-processing capabilities for musicians, audio engineers, and researchers. To the best of our knowledge, this is the first polyphonic guitar pickup system with such a complete feature set.
Create a lesson
Related papers
GrainSpeech: Less Context, More Detail for Compact Speech Synthesis
Zitao Liang, Chang Gao
Absolute Quality Ratings of Speech Enhancement Systems by Listeners of Different Ages and Degrees of Hearing Loss
Matteo Torcoli, Chih-Wei Wu, Andrea Esposito et al.
Mask-Based Speech Enhancement for Spatial Audio: A Comparison of Ambisonics, Beamforming, and Microphone Channels
Sheli Hendel, Boaz Rafaely, Dorothea Kolossa
Reviving Etter method for autoregressive inpainting: Generalization, evaluation, implementation
Ondřej Mokrý, Matěj Hrdlička, Pavel Rajmic
Correlation-Guided Encoder Selection for Multi-Encoder Large Audio-Language Models
Pei-Jun Liao, Hung-Shin Lee, Wenze Ren et al.
Task-oriented neural FOA encoding for SELD from irregular microphone arrays
Jiachen Liu, Yin Cao, Ming Wu et al.