PRODUCT

Tiangang Electromagnetic Signal Simulation Equipment (UAV Type)

Model DY-sdrSGU01

Reconfigurable Electromagnetic Signal Simulator (UAV Type) uses an unmanned aerial vehicle (UAV) as its carrier platform, carrying mission payload equipment that can ascend to an altitude of up to 500 meters, with a control range of approximately 1 kilometer. Wireless LoRa technology is employed for communication and control between the mission payload equipment and the ground-based payload control computer. It features GPS/BeiDou band output power limiting to ensure safe UAV takeoff.

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INTRODUCTION

Product Overview

The Tiangang Electromagnetic Signal Simulator (UAV Version) uses an unmanned aerial vehicle (UAV) as its carrier platform, mounting mission payload equipment capable of ascending to an altitude of 500 meters with a control range of approximately 1 kilometer. Communication and control between the mission payload equipment and the ground-based payload control computer are implemented using wireless LoRa technology.Ra The simulator features output power limiting for GPS/BeiDou frequency bands to ensure normal UAV takeoff.

This mission payload equipment is developed based on Software-Defined Radio (SDR) technology and can simulate signals of various types—including communications, navigation, radar, and jamming—and supports multi-unit networked coordination. Multiple units can transmit waveforms of different signal types at different times and frequencies.

The device offers a maximum instantaneous bandwidth of 40 MHz, making it suitable for applications such as education, scientific research, and training.


Key Features:

1. Capable of generating signals of multiple types—including communications, radar, navigation, and electronic warfare—with customizable waveform development;

2. Based on componentized waveform design technology, users can freely combine and edit sources, encoding, modulation, channels, and noise to generate custom waveforms;

3. Users can perform time-frequency coordination and scheduling—either for single or multiple devices—via the ground-based payload control computer;

4. Employs domestically developed, independently controllable software to support user-defined waveform secondary development;

5. Supports rapid battery removal and replacement.


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SPECIFICATIONS

Technical Specifications

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RESOURCES

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