With the rapid growth of threats, sophistication and diversity in the manner of intrusion, traditional belt barrier systems are now faced with a major challenge of providing high and concrete coverage quality to expand the guarding service market. Recent efforts aim at constructing a belt barrier by deploying bistatic radar(s) on a specific line regardless of the limitation on deployment locations, to keep the width of the barrier from going below a specific threshold and the total bistatic radar placement cost is minimized, referred to as the Minimum Cost Linear Placement (MCLP) problem. The existing solutions are heuristic, and their validity is tightly bound by the barrier width parameter that these solutions only work for a fixed barrier width value. In this work, we propose an optimal solution, referred to as the Opt_MCLP, for the "open MCLP problem" that works for full range of the barrier width. Through rigorous theoretical analysis and experimentation, we demonstrate that the proposed algorithms perform well in terms of placement cost reduction and barrier coverage guarantee.
翻译:随着威胁、复杂程度和入侵方式的多样性的迅速增长,传统的安全带屏障系统现在面临一项重大挑战,即提供高具体覆盖质量以扩大保护服务市场。最近的努力旨在通过在具体线路上部署双层雷达来建造安全带屏障,而不论部署地点的限制如何,以使屏障的宽度不低于特定阈值,并尽量减少整个双层雷达放置成本,称为最低成本线性定位问题。现有解决方案是超常的,其有效性受到屏障宽度参数的严格约束,即这些解决方案只能对固定的屏障宽度值起作用。在这项工作中,我们提出了一个最佳解决方案,称为“Opt_MCLP ”, 即“开放 MCLP ” 问题, 用于整个屏障宽度。我们通过严格的理论分析和实验,证明拟议的算法在降低安置成本和屏障覆盖保障方面效果良好。