The intensity of radio waves decays rapidly with increasing propagation distance, and an edge server's antenna needs more power to form a larger signal coverage area. Therefore, the power of the edge server should be controlled to reduce energy consumption. In addition, edge servers with capacitated resources provide services for only a limited number of users to ensure the quality of service (QoS). We set the signal transmission power for the antenna of each edge server and formed a signal disk, ensuring that all users were covered by the edge server signal and minimizing the total power of the system. This scenario is a typical geometric set covering problem, and even simple cases without capacity limits are NP-hard problems. In this paper, we propose a primal-dual-based algorithm and obtain an $m$-approximation result. We compare our algorithm with two other algorithms through simulation experiments. The results show that our algorithm obtains a result close to the optimal value in polynomial time.
翻译:无线电波的强度随着传播距离的扩大而迅速衰减,而边缘服务器的天线需要更大的能量来形成更大的信号覆盖区。 因此, 边缘服务器的力量应该受到控制, 以减少能源消耗。 此外, 配有电能资源的边缘服务器只为数量有限的用户提供服务, 以确保服务的质量( QOS ) 。 我们为每个边缘服务器的天线设置了信号传输能力, 并形成了一个信号盘, 确保所有用户都受到边缘服务器信号的覆盖, 并尽量缩小系统的总功率 。 这个假设是一个典型的几何组合, 覆盖问题, 甚至没有容量限制的简单案例都是NP- 硬性问题 。 在本文中, 我们提出一个原始的基于二元的算法, 并获得一个以美元为代谢的结果。 我们通过模拟实验将我们的算法与其他两种算法进行比较。 结果显示, 我们的算法获得了接近多元时间最佳值的结果 。