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Power supply overlaid communication and common clock delivery for cooperative motion control

机译:电源叠加通信和通用时钟传递,用于协作运动控制

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The aim of our research is to investigate how a common clock signal and control signals can coexist in a newly developed communication system in which various servo controllers are connected to a controlling master via a power supply line a bus topology. A major problem tackled by this research is how synchronized actions of the servo motors can be achieved. In order to synchronize the actions, the starting time of the actions must be accurately controlled. For this purpose, the transmission of a common clock signal is introduced which uses Direct sequence spread spectrum (SS) modulation in the same frequency band as the control signals. To avoid the interference of the common clock signal to the control signals, an interference cancellation method, in which a regenerated SS signal is subtracted prior to the demodulation of the control signals, is employed. Symbol error rate of the control signal, and probabilities of false alarm and miss detection of the common clock pulses are analyzed. The coexistence of the common clock and control signals is confirmed, under the experimentally obtained channel parameters.
机译:我们研究的目的是研究在新开发的通信系统中常见的时钟信号和控制信号如何共存,在该通信系统中,各种伺服控制器通过电源线和总线拓扑结构连接到控制主机。这项研究解决的主要问题是如何实现伺服电机的同步动作。为了同步动作,必须精确控制动作的开始时间。为此,引入了公共时钟信号的传输,该信号在与控制信号相同的频带中使用直接序列扩频(SS)调制。为了避免公共时钟信号对控制信号的干扰,采用了干扰消除方法,其中在控制信号的解调之前减去再生的SS信号。分析了控制信号的符号错误率,以及常见时钟脉冲的误报警和误检测的可能性。在实验获得的信道参数下,确认了公共时钟和控制信号的共存。

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