arXiv:2410.19772eess.SPeess.AS2024-10

仅用4个传感器和4个源即可实现3D空间定位,突破传统配置限制。

A Novel Numerical Method for Relaxing the Minimal Configurations of TOA-Based Joint Sensors and Sources Localization

  • 通过三角形与余弦定理建模,将定位问题转化为距离求解。
  • 理论与仿真证明4传感器+4源可实现3D联合定位,优于此前6:4要求。
  • 适合传感器资源受限的复杂环境定位应用。

本文提出一种新型数值方法,用于放松基于到达时间(TOA)的三维空间联合传感器与源定位(JSSL)的最小配置要求。传统方法要求有效方程数不少于未知变量数,现有最优配置需4至6个传感器与6至4个源。为克服资源不足场景的局限,本方法将JSSL建模为一系列三角形,利用余弦定理求解一对传感器与三对源的四个未知距离,并结合三角不等式确定这些距离的上下界。在此范围内搜索全局最优解,证明在仅4个传感器和4个源条件下仍可实现3D JSSL,显著降低配置门槛。理论分析与仿真结果验证了该方法的有效性与可行性。

原文摘要 · Abstract (English)

This work introduces a novel numerical method that relaxes the minimal configuration requirements for joint sensors and sources localization (JSSL) in 3D space using time of arrival (TOA) measurements. Traditionally, the principle requires that the number of valid equations (TOA measurements) must be equal to or greater than the number of unknown variables (sensor and source locations). State-of-the-art literature suggests that the minimum numbers of sensors and sources needed for localization are four to six and six to four, respectively. However, these stringent configurations limit the application of JSSL in scenarios with an insufficient number of sensors and sources. To overcome this limitation, we propose a numerical method that reduces the required number of sensors and sources, enabling more flexible JSSL configurations. First, we formulate the JSSL task as a series of triangles and apply the law of cosines to determine four unknown distances associated with one pair of sensors and three pairs of sources. Next, by utilizing triangle inequalities, we establish the lower and upper boundaries for these unknowns based on the known TOA measurements. The numerical method then searches within these boundaries to find the global optimal solutions, demonstrating that JSSL in 3D space is achievable with only four sensors and four sources, thus significantly relaxing the minimal configuration requirements. Theoretical proofs and simulation results confirm the feasibility and effectiveness of the proposed method.

定位算法三维定位传感器网络

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