The goal of this research is to devise guaranteed defense policies that allow to protect a given region from the entrance of smart mobile invaders by detecting them using a team of defending agents equipped with identical line sensors. By designing cooperative defense strategies that ensure all invaders are detected, conditions on the defenders' speed are derived. Successful accomplishment of the defense task implies invaders with a known limit on their speed cannot slip past the defenders and enter the guarded region undetected. The desired outcome of the defense protocols is to defend the area and additionally to expand it as much as possible. Expansion becomes possible if the defenders' speed exceeds a critical speed that is necessary to only defend the initial region. We present results on the total search time, critical speeds and maximal expansion possible for two types of novel pincer-movement defense processes, circular and spiral, for any even number of defenders. The proposed spiral process allows to detect invaders at nearly the lowest theoretically optimal speed, and if this speed is exceeded, it also allows to expand the protected region almost to the maximal area.
翻译:这项研究的目标是制定有保障的国防政策,通过使用配备相同线感应器的防御人员队伍来探测它们,从而保护某一区域不受智能机动入侵者进入某一区域。通过设计合作防御战略,确保所有入侵者都被发现,可以得出关于维权者速度的条件。成功完成防务任务意味着,速度受已知限制的入侵者不能越过维权者,进入守卫区域时不能被察觉。防御协议的预期结果是保护该地区,并尽可能扩大范围。如果维权者的速度超过保卫初始区域所需的关键速度,扩大就有可能实现。我们介绍了两种新型针锋相对防御进程的总搜索时间、临界速度和最大可能的扩展,循环和螺旋式。拟议的螺旋式进程允许以近最低的理论上最佳速度探测入侵者,如果超过这一速度,还可以将保护区几乎扩大到最大区域。