arXiv · 2412.05123
Differentiable Optimization of Linear Differential Microphone Arrays: A Joint Geometry and Filter Design Framework
Abstract
This paper presents a differentiable optimization framework for the design of constrained Linear Differential Microphone Arrays (LDMAs). The proposed method leverages a non-uniform delay-and-sum beamformer as a light-weight base system model, proving its ability to achieve the optimal beampattern of LDMAs by jointly optimizing microphone positions and filter weights. The formulation enables the optimized design of a filter with a distortion-free constraint in the desired sound direction, while also imposing constraints on microphone positioning to ensure consistent performance. Through evaluation on multiple metrics, including Mean Squared Error (MSE), Directivity Index (DI), White Noise Gain (WNG), and computation time, and comparison with state-of-the-art methods, this approach demonstrates a flexible, directive, robust, and hardware-efficient design.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Siminfar Samakoush Galougah, Ramani Duraiswami. 2024-12-06. Differentiable Optimization of Linear Differential Microphone Arrays: A Joint Geometry and Filter Design Framework. https://arxiv.org/abs/2412.05123
Cite the original work for its findings. Save a collection to share your selection of sources.