flâneur — a map of the web's best reading

Beamforming & DOA | PySDR: A Guide to SDR and DSP using Python

pysdr.org · 19,808 words · saved by 1 readers

In this chapter we cover the concepts of beamforming, direction-of-arrival (DOA), and phased arrays in general. We compare the different types and geometries of arrays, and how element spacing plays a vital role. Techniques such as MVDR/Capon and MUSIC are introduced and demonstrated using Python simulation examples. A phased array, a.k.a. electronically steered array, is an array/collection of antennas that can be used on the transmit or receive side in both communications and radar systems. You’ll find phased arrays on ground-based systems, airborne, and on satellites. We typically refer to the antennas that make up an array as elements, and sometimes the array is called a “sensor” instead. These array elements are most often omnidirectional antennas, equally spaced in either a line or across two dimensions. Beamforming is a signal processing operation used with antenna arrays to create a spatial filter; it filters out signals from all directions except the desired direction(s). Beam

Beamforming & DOA | PySDR: A Guide to SDR and DSP using Python 🎺 Announcement from Marc 🎺 IQEngine ! It's a web-based SDR toolkit for analyzing, processing, and sharing RF recordings. Checkout out our GitHub and Discord //--> PySDR now has a Patreon! Support the project and have your name added to the textbook on the bottom left of every page, plus get priority when emailing questions! × | English Dutch French Ukrainian Chinese Spanish Japanese PySDR: A Guide to SDR and DSP using Python By Dr. Marc Lichtman - [email protected] 1. Introduction 2. Frequency Domain 3. IQ Sampling 4.

Explore this link on the map →

saved by

related reading