DSP / SDR Receiver Engineer — Navigation & Communications
About Us: Swan delivers the future of defense and industry through scalable autonomous products. Swan is backed by leading defense VCs including a16z's American Dynamism fund.
DSP / SDR RECEIVER ENGINEER — NAVIGATION & COMMUNICATIONS
We are looking for a DSP / SDR engineer to help design, implement, and test software-defined radio receivers for navigation and communications applications. The role is focused on signal-processing receiver design: acquisition, tracking, synchronization, Doppler estimation, timing recovery, and real-time processing of RF signals.
The ideal candidate has hands-on experience building receiver signal-processing chains for GNSS, satellite communications, radar, wireless PHY, spectrum monitoring, or related RF systems.
RESPONSIBILITIES
- Design and implement SDR receiver algorithms for real-world RF signals.
- Develop acquisition, tracking, synchronization, and measurement-generation pipelines.
- Estimate Doppler, carrier phase, timing, delay, and signal quality metrics.
- Work with SDR platforms such as USRP/UHD, GNU Radio, RFSoC, or FPGA-based systems.
- Analyze collected RF data and debug receiver performance in lab and field environments.
- Evaluate waveform structure, modulation, channel behavior, and receiver implementation tradeoffs.
- Support navigation and communications experiments using GNSS, LEO satellite downlinks, or other opportunistic signals.
DESIRED BACKGROUND
Strong candidates may come from one or more of the following areas:
- GNSS / PNT receiver design
- Satellite communications modem or PHY development
- Radar signal processing
- Electronic warfare, ELINT, SIGINT, or spectrum monitoring
- Wireless PHY / LTE / 5G baseband processing
- Real-time SDR or FPGA-based signal processing
USEFUL SKILLS
- SDR development with GNU Radio, USRP/UHD, RFSoC, or FPGA SDR platforms
- Real-time DSP implementation
- Signal acquisition and tracking loops
- PLL / FLL / DLL design
- Doppler estimation and tracking
- Carrier recovery and timing recovery
- Matched filtering and correlation-based detection
- Frame synchronization and preamble detection
- OFDM, TDMA, DVB-S2/DVB-S2X, or other modem PHY experience
- GNSS observables such as pseudorange, carrier phase, Doppler, clocks, and ephemerides
- Navigation filtering, EKFs, factor graphs, or INS/GNSS integration
- Python, C/C++, MATLAB, or similar signal-processing tools
IDEAL CANDIDATE
The strongest candidate combines practical SDR implementation experience with deep receiver signal-processing intuition. They should be comfortable working with imperfect real-world RF data, debugging acquisition/tracking behavior, and turning signal-processing algorithms into working receiver software.
Experience with GNSS, LEO satellite signals, satcom downlinks, radar, EW, SIGINT, or wireless PHY systems is especially relevant.