The present document describes a system and method for controlling the movements of a motion platform in real-time based on the movements of a remote subject. The nanotubes are operatively associated with the hot-spot area to decrease any temperature gradient between the hot-spot area and at least one other area on the die defined by a temperature lower than the hot-spot area. The first synchronizer unit establishes and maintains synchronization of the first data stream with the 0-degree phase signal. Child nodes of like identity for the phenomenon are treated as a single node with multiple parameter relationships associated with at lest one parent node, whereas child nodes with differing identities are represented as separate nodes. The controller acquires an illumination value of the light, and compares whether the illumination value falls within the predetermined illumination range.