反螺线波浪被使用一个本地不同类在一个摆动的系统控制。不同类充当波浪来源,并且产生宣传飞机波浪。有没有波浪根本将在下面被创造的一种批评步调调整的领域尺寸,这被发现。订的波浪(目标波浪和旅行波浪) 的二种类型被创造取决于本地不同类的几何学。在反螺线波浪和订的波浪之间的比赛被讨论。二不同比赛机制被观察,它与从不同本地不同类获得的订的波浪有关。有也的旅行波浪降低频率或更高的频率罐头,这被发现两个都消除反螺线波浪,当仅仅目标与更低的绝对值飘动时频率能消除反螺线波浪。这个方法也适用于表面地旋转的螺线波浪。控制机制直觉地被解释,控制方法是容易起作用的。
Anti-spiral waves are controlled in an oscillatory system by using a local inhomogeneity. The inhomogeneity acts as a wave source, and gives rise to the propagating plane waves, tt is found that there is a critical pacemaking domain size below which no wave will be created at all. Two types of ordered waves (target waves and traveling waves) are created depending on the geometry of the local inhomogeneity. The competition between the anti-spiral waves and the ordered waves is discussed. Two different competition mechanisms were observed, which are related to the ordered waves obtained from different local inhomogeneities. It is found that traveling waves with either lower frequency or higher frequency can both eliminate the anti-spiral waves, while only the target waves with lower absolute value of frequency can eliminate the anti-spiral waves. This method also applies to outwardly rotating spiral waves. The control mechanism is intuitively explained and the control method is easily operative.