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May 6, 2026Sensors0 citationsOpen Access

Joint Transmit–Receive Weight Optimization for FDA Radar to Balance Active Detection and RF Stealth

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HGH. R. GuanSZShunsheng ZhangWWW H Wang

Key Points

  • To balance active detection and RF stealth in frequency diverse array radar systems.
  • Proposed joint transmit–receive weight optimization scheme
  • Developed an efficient optimization method using block coordinate descent
  • Designed an initialization strategy for optimization
  • Achieved improved RF stealth performance
  • Maintained comparable active detection capability
  • Outperformed conventional FDA radar and existing benchmark methods

Abstract

Existing studies on frequency diverse array (FDA) radar sensing systems have primarily focused on radio-frequency (RF) stealth characteristics with limited attention to the balance between RF stealth and active detection performance. To address this issue, this paper proposes a joint transmit–receive weight optimization scheme for FDA radar systems to achieve an effective balance between active detection and RF stealth. The resulting optimization problem is non-convex, and a block coordinate descent (BCD)-based alternating optimization method with a carefully designed initialization strategy is developed to solve it efficiently. Simulation results demonstrate that the proposed method achieves improved RF stealth performance while maintaining comparable active detection capability, compared with conventional FDA radar and representative existing optimization-based benchmark methods. These results demonstrate the effectiveness of the proposed method for balancing active detection and RF stealth performance in FDA radar sensing systems.

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Cite This Study

Guan et al. (2026) studied this question.

synapsesocial.com/papers/69faa25e04f884e66b532f78https://doi.org/10.3390/s26092850
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