Optimal Placement of Base Stations in Falling Point Measurement at Sea

Zhiwei Zhang, Ao Sun, Xu Zhang, Dan Zhang, Zhisheng Li
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引用次数: 1

Abstract

The falling point accuracy of high-speed target at sea is an important test index for assessing performance of flight target in water-entry test. When the measurement error remains unchanged, the base station placement will affect the falling point accuracy. In this paper, we take the typical four-base station as an example and study the influence of regular and irregular placement of multi-base stations on positioning accuracy based on TDOA system. By changing the length of baseline and the form of distribution station, the measurement accuracy of falling point in different areas under the condition of regular distribution station is analyzed. For irregular distribution station, an optimal placement method of acoustic array based on simulated annealing algorithm is proposed, which takes the deviation as objective function and obtains the optimal placement according to the simulation of high temperature annealing process. The simulation results show that the new placement mode of base station can obtain higher positioning accuracy compared with the regular shapes of placement. That is, the optimized placement method based on Simulated Annealing algorithm is reasonable and effective, which can provide some references for high-speed moving target falling point measurement system design at sea.
海上落点测量中基站的最佳放置
海上高速目标的落点精度是评估飞行目标入水性能的一项重要测试指标。在测量误差不变的情况下,基站放置位置会影响落点精度。本文以典型的四基站为例,研究了基于TDOA系统的多基站规则和不规则放置对定位精度的影响。通过改变基线的长度和配电站的形式,分析了常规配电站条件下不同区域落点的测量精度。针对不规则配电站,提出了一种基于模拟退火算法的声阵优化布置方法,该方法以偏差为目标函数,通过模拟高温退火过程得到最优布置。仿真结果表明,与常规布局方式相比,新型基站布局方式可以获得更高的定位精度。即基于模拟退火算法的优化放置方法是合理有效的,可为海上高速运动目标落点测量系统的设计提供一定的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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