论文标题
3-D动态无人机基站位置问题
3-D Dynamic UAV Base Station Location Problem
论文作者
论文摘要
我们解决了无人机基站(UAV-BS)的动态覆盖位置问题,其中确定了无线通信网络中单个UAV-B的位置顺序,以满足地面用户产生的数据需求。在智能电网和救灾的背景下,此问题尤其重要。 UAV-BS和非凸的垂直运动能力涵盖了无线通信中的功能,限制了经典的平面覆盖位置方法。因此,我们在有限的时间范围内为这个新兴问题开发了新的配方,以最大程度地提高总覆盖范围。特别是,我们开发了一种混合企业的非线性编程公式,该公式本质上是非凸的,并提出了Lagrangean分解算法(LDA)来解决此公式。由于问题的复杂性,LDA仍无法找到大规模问题的良好本地解决方案。因此,我们开发了连续近似(CA)模型,并表明CA在计算时间和解决方案准确性方面都是有希望的方法。我们的数值研究还表明,CA模型可以是为精确溶液算法建立有效初始解决方案的一种补救措施。
We address a dynamic covering location problem of an Unmanned Aerial Vehicle Base Station (UAV-BS), where the location sequence of a single UAV-BS in a wireless communication network is determined to satisfy data demand arising from ground users. This problem is especially relevant in the context of smart grid and disaster relief. The vertical movement ability of the UAV-BS and non-convex covering functions in wireless communication restrict utilizing classical planar covering location approaches. Therefore, we develop new formulations to this emerging problem for a finite time horizon to maximize the total coverage. In particular, we develop a mixed-integer non-linear programming formulation which is non-convex in nature, and propose a Lagrangean Decomposition Algorithm (LDA) to solve this formulation. Due to high complexity of the problem, the LDA is still unable to find good local solutions to large-scale problems. Therefore, we develop a Continuum Approximation (CA) model and show that CA would be a promising approach in terms of both computational time and solution accuracy. Our numerical study also shows that the CA model can be a remedy to build efficient initial solutions for exact solution algorithms.