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Rate Control based on Queuing State Observer for Visual-Haptic Communication

机译:基于排队状态观测器的速率控制,用于视觉触觉通信

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Recently visual-haptic communication has been attracted attention. From the viewpoint of visual communication, a high packet-sending rate is required to achieve a high control performance. However, a high packet-sending rate often causes a buffer overflow in a queue of a communication device. Because the buffer overflow induces a long communication delay, a haptic communication system becomes unstable as a consequence. This paper therefore proposes a Queuing State Observer which estimates a packet-processing rate of a communication device in real time. The estimated packet-processing rate is applied to a rate controller which selects a suitable packet-sending rate. Because the rate controller achieves both of a high packet-sending rate and a short communication delay, a control performance of visual-haptic communication is improved. The validity of the proposed algorithm is confirmed by experiments.
机译:最近,视觉触觉沟通受到引起的关注。从视觉通信的角度来看,需要高的数据包发送速率来实现高控制性能。然而,高分分组发送速率通常导致通信设备的队列中的缓冲区溢出。因为缓冲器溢出引起了长通信延迟,所以触觉通信系统因结果而变得不稳定。因此,本文提出了排队状态观察者,其实时估计通信设备的分组处理速率。估计的分组处理速率应用于选择合适的分组发送速率的速率控制器。因为速率控制器实现了高分辨率发送率和短期通信延迟,所以改善了视觉触觉通信的控制性能。通过实验确认了所提出的算法的有效性。

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