Tsuda Soichiro, Aono Masashi, Gunji Yukio-Pegio
Graduate School of Science and Technology, Kobe University Nada, Kobe 657-8501, Japan.
Biosystems. 2004 Jan;73(1):45-55. doi: 10.1016/j.biosystems.2003.08.001.
There have been many attempts for realization of emergent computing, but the notion of emergent computing is still ambiguous. In an open system, emergence and an error cannot be specified distinctly, because they are dependent on the dis-equilibration process between local and global behaviors. To manifest such an aspect, we implement a Boolean gate as a biological device made of slime mold Physarum polycephalum. A Physarum (slime mold) Boolean gate could be an internally instable machine, while it has the potential for emergent computing. First, we examined whether Physarum Boolean gate works properly, and then examined its behaviors when the gate is collapsed in terms of hardware. The behavior of Physarum changes and self-repairing computing is achieved as a result. The self-repairing against internal failure is one of attributes of emergent and robust computing.
为实现涌现计算已经进行了许多尝试,但涌现计算的概念仍然模糊不清。在一个开放系统中,涌现和错误无法明确区分,因为它们取决于局部和全局行为之间的失衡过程。为了体现这一方面,我们将布尔门实现为由多头绒泡菌制成的生物设备。一个多头绒泡菌布尔门可能是一个内部不稳定的机器,同时它具有涌现计算的潜力。首先,我们检查了多头绒泡菌布尔门是否能正常工作,然后检查了该门在硬件方面崩溃时的行为。结果,多头绒泡菌的行为发生了变化,并实现了自我修复计算。针对内部故障的自我修复是涌现和稳健计算的属性之一。