
FM Modulation with Python: Code and Explanation
Simulate Frequency Modulation (FM) using Python. Includes FM modulation and demodulation Python code with explanations.
Showing 20 posts (Page 2 of 4)
Advertisement
Simulate Frequency Modulation (FM) using Python. Includes FM modulation and demodulation Python code with explanations.
This article provides Python code for Frequency Shift Keying (FSK) modulation, generating an FSK modulated waveform from binary data.
Explore Frequency Shift Keying (FSK) modulation, its types (BFSK, MFSK, CPFSK), and diverse applications in communication systems. Learn about its benefits for reliable data transmission.
Explore IQ imbalance (gain, phase, DC offset), its impact on constellation diagrams, and compensation methods in communication systems.
Explore Iridium Next, the upgraded satellite constellation, its features like enhanced data speeds, IoT applications, and improvements over the original Iridium system.
LabVIEW VI examples for generating constellation diagrams for BPSK, QPSK, 16QAM, and 64QAM modulation techniques.
Explore the LDACS1 physical layer for air traffic control, focusing on OFDM modulation, frame structure, and transmitter/receiver functionalities between aircraft and ground stations.
Explore key modulation and demodulation concepts with these interview Q&As, covering AM, FM, PSK, QAM, and more for comms roles.
Understand the modulation index in communication systems, including formulas, calculations, and its importance in AM and FM modulation.
Explore the differences between narrowband and broadband, their key characteristics, applications, advantages, and disadvantages in communication systems.
Explore the functionality, advantages, and applications of Numerically Controlled Oscillators (NCOs) in modern digital signal processing and communication systems.
Explore a basic OFDM transmitter and receiver chain implemented in MATLAB, including code for modulation, IFFT, cyclic prefix, and more.
Explore the similarities and differences between OFDM and FBMC modulation techniques, including their complexity, advantages, and disadvantages.
Explore the differences between open loop and closed loop power control in cellular communication systems, highlighting their mechanisms and applications.
Learn the fundamentals of the Opensky Radio System, a digital radio technology by Harris, supporting voice and data via TDMA in the 700/800/900 MHz bands.
Explore the fundamentals of optical wireless networks, comparing short-range and long-range technologies, and examining the advantages and disadvantages of optical wireless systems.
Explore PDH (Plesiochronous Digital Hierarchy) and its encapsulation within SONET/SDH, covering rates like 2Mbps, 8Mbps, 34Mbps, and 140Mbps for efficient traffic transport.
Explore the benefits and drawbacks of Plastic Optical Fiber (POF), including cost, flexibility, attenuation, and temperature sensitivity.
This page compares POF and GOF, highlighting the differences, advantages, and disadvantages of Plastic Optical Fiber and Glass Optical Fiber.
Explore PSK (Phase Shift Keying) modulation with MATLAB code. Learn about its principles, implementation, and see example input/output.
Advertisement