J* E* C* N* U* N* S* ›› 2026, Vol. 2026 ›› Issue (2): 164-175.doi: 10.3969/j.issn.1000-5641.2026.02.015

• FMCW Radar and Signal Processing • Previous Articles    

Data-compression method for full-dimension data in FMCW radar systems and its hardware implementation

Zhixin YIN, Ying LIU, Beibei XING, Leilei HUANG*(), Runxi ZHANG   

  1. Institute of Microelectronic Circuits and Systems, East China Normal University, Shanghai 200241, China
  • Received:2025-09-24 Accepted:2026-01-06 Online:2026-03-25 Published:2026-04-03
  • Contact: Leilei HUANG E-mail:llhuang@cee.ecnu.edu.cn

Abstract:

This study proposes a full-dimension data-compression method and its corresponding hardware-implementation scheme for frequency-modulated continuous wave (FMCW) radar processing systems. In accommodating the continuously increasing demand for higher measurement accuracies and resolutions in FMCW radar, the processing system generates a rapidly increasing data volume, thus placing a significant burden on the data-transmission bandwidth and storage resources. Hence, a compression algorithm based on k-th-order exponential Golomb encoding (EGE) is introduced. The algorithm first performs data pre-compression using exponential Golomb encoding to reduce statistical redundancy and then optimizes the compressed output through adaptive significant-bit truncation, thus achieving efficient bit-width alignment. Suitable for full-dimension data formats in FMCW radar systems, the method demonstrates strong adaptability, high compression efficiency, and the ability to support real-time data processing with a hardware-friendly architecture. Experimental results indicate that the proposed algorithm reduces storage consumption by more than 50% while preserving data quality, thus significantly enhancing both processing efficiency and data-transmission capacity while demonstrating significant potential for practical engineering applications.

Key words: frequency-modulated continuous wave (FMCW) radar, exponential Golomb encoding (EGE), data compression, hardware implementation

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