HIVESYSTEMS

Heterogeneous Interlinked Vehicle Ecosystem

Connected. Resilient. Intelligent.

Advanced Software-Defined Radio & Wireless Communication Systems

Technology for aerospace, defence, autonomous systems and mission-critical applications.

FPGA · SDR · DSP · Custom Waveforms

About HIVE

We Build the Communication Layer

HIVE Systems develops high-performance wireless communication platforms combining Software Defined Radio, FPGA-based signal processing, digital communications and intelligent networking.

Our focus is on building flexible, scalable and reliable communication systems for demanding operating environments.

What We Build

Core Capabilities

01

Software Defined Radio

Programmable radio platforms for flexible and evolving communication requirements.

02

Digital Communications

Real-time PHY and DSP implementations optimized for high-performance wireless systems.

03

Custom Waveforms

Design, development and FPGA implementation of application-specific communication waveforms.

04

Resilient Networking

Communication architectures for connected, distributed and autonomous systems.

Technology

From RF to Network

HIVE develops across the communication stack, integrating RF systems, FPGA acceleration, digital signal processing and embedded networking into complete wireless communication platforms.

  1. L1RF Front End
  2. L2ADC / DAC
  3. L3FPGA
  4. L4Digital PHY
  5. L5MAC
  6. L6Network
  7. L7Application

Waveform Engineering

Built for the Contested Spectrum

Our waveforms are designed to keep the link alive when the spectrum is crowded or under attack, moving away from interference instead of fighting through it.

2200230024002500 MHz
COFDM channel, hoppingInterferenceNoise floor
  • COFDM

    Many narrow subcarriers share the load, so the link holds up against multipath and non-line-of-sight conditions.

  • Frequency hopping (FHSS)

    The channel moves across the band in a pattern only the link knows, leaving a jammer on a fixed frequency behind.

  • Direct sequence spreading (DSSS)

    Energy is spread across a wider band, lowering the chance of detection and interception.

  • Adaptive channel selection

    The radio scans the spectrum and settles on the cleanest available channel.

Radio Platform

Software-Defined Radio Platforms

HIVE develops programmable radio platforms designed to support flexible waveform architectures and demanding real-time communication requirements.

Discuss Your Requirement
  • 01FPGA-accelerated processing
  • 02Software-defined architecture
  • 03Flexible waveform integration
  • 04High-speed data interfaces
  • 05Real-time signal processing
  • 06Embedded system integration

Solutions

Custom Wireless Solutions

HIVE works with organizations to develop and integrate communication systems around specific operational and technical requirements.

  • 01Radio Platform Development
  • 02Custom Waveform Development
  • 03FPGA & DSP Implementation
  • 04Wireless System Integration
  • 05Communication System Prototyping
  • 06Technology Demonstration

Applications

Built for Demanding Environments

Aerospace

Advanced communication systems for airborne and aerospace applications.

Autonomous Systems

Wireless connectivity for UAVs and distributed autonomous platforms.

Defence & Security

Communication technologies for demanding operational environments.

Mission-Critical Systems

Reliable wireless connectivity for critical applications.

Communication Without Compromise.

Built for contested environments, demanding missions and evolving communication requirements. HIVE Systems develops software-defined radio platforms, advanced waveforms and resilient communication architectures for aerospace, defence and autonomous systems.

Contact

Let's Build the Connection.

Have a requirement for a radio platform, custom waveform or wireless communication system?

Websitehivesystems.co.in