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Published:2025/12/3 16:45:29

マイクロ波MiLAC!IT企業に革命✨

超要約: マイクロ波を使った、爆速&省エネな計算機MiLACでIT業界をアゲる話🎉

🌟 ギャル的キラキラポイント✨ ● デジタル計算の限界をぶっ壊す、アナログコンピューティングっていう新技術🚀 ● マイクロ波(高周波電波)を使って、信号処理を爆速にしちゃうみたい! ● 5GとかAIとかIoTとか、色んな分野で役立つ未来がキタコレ🤩

詳細解説

背景 デジタルコンピューターって、色んな事に使われてるけど、消費電力が大きかったり、処理速度に限界があったりするじゃん?😥 そんな課題を解決できるかも!って期待されてるのが、アナログコンピューティングなの!アナログ信号を直接処理するから、省エネで高速なんだって✨

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Analog Computing for Signal Processing and Communications -- Part I: Computing with Microwave Networks

Matteo Nerini / Bruno Clerckx

Analog computing has been recently revived due to its potential for energy-efficient and highly parallel computations. In this two-part paper, we explore analog computers that linearly process microwave signals, named microwave linear analog computers (MiLACs), and their applications in signal processing and communications. In Part I of this paper, we model a MiLAC as a multiport microwave network with tunable impedance components, enabling the execution of mathematical operations by reconfiguring the microwave network and applying input signals at its ports. We demonstrate that a MiLAC can efficiently compute the linear minimum mean square error (LMMSE) estimator and matrix inversion, with remarkably low computational complexity. Specifically, a matrix can be inverted with complexity growing with the square of its size. We also show how a MiLAC can be used jointly with digital operations to implement sophisticated algorithms such as the Kalman filter. To enhance practicability, we propose a design of MiLAC based on lossless impedance components, reducing power consumption and eliminating the need for costly active components. In Part II of this paper, we investigate the applications of MiLACs in wireless communications, highlighting their potential to enable future wireless systems by executing computations and beamforming in the analog domain.

cs / cs.IT / eess.SP / math.IT