用PLC技术调试AMR原型系统

S. Haghgoo, H. Monsef
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引用次数: 1

摘要

1980年,新颖的PLC系统作为一种新系统被用于建筑物内多台计算机的通信。然后,开发了PLC通信可靠性和高达1600 bps的传输速率。PLC通信可以在具有不可预测参数和长距离的环境中工作(Nunn, 1997)。目前,这种通信信道被用于高速传输,称为宽频电力线(BPL)。PLC的主要优点是其基础设施在电网中的可用性。此外,通过该网络的扩展形式,所有消费者,即使在远距离,都可以访问。因此,它具有成本效益。该频道的最佳频率范围为70- 160khz。但是,也有一些问题。噪声被认为是主要的制约因素(Abraham, 1992)。噪声的主要来源如下:a)在高速数据传输中引起最大干扰的50 Hz谐波,并且在频率超过30 kHz时大多衰减并变为窄带。B)家用设备产生的背景噪音,c)工业负荷引起的突发噪音。一般来说,PLC通道的噪声在较高的频率被降低。损耗和衰减是信号色散的其他限制因素。信号的提供受实际信道限制,如带宽限制和非线性导致信号的延迟失真。自动抄表(AMR)是PLC通信通道可以实现的领域之一。本文描述了除上述约束外的一种AMR系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Commissioning of an AMR Prototype System by PLC Technology
In 1980, the novel PLC system was used as a new system to communicate several computers in a building. Then, the PLC communication reliability and transfer rate up to 1600 bps was developed. PLC communication can work in environments with unpredictable parameters and long distances (Nunn, 1997). Nowadays, this communication channel is used in high speed transfer called broad power line (BPL). The main advantage of PLC is availability of its infrastructures in electrical network. In addition, by the extended form of this network, all consumers, even at long distance, can be accessed. Therefore, it is cost effective. Its optimum frequency range of this channel is 70-160 KHz. But, there are some problems. Noise is considered as the main constraint (Abraham, 1992). The main recourses of noise are as follows: a) 50 Hz harmonics that cause maximum disturbance in high speed data transferring and mostly attenuate and become narrow band at frequencies more than 30 kHz. B) The background noise that generated by household equipments, c) burst noise caused by industrial loads. Generally, noise of PLC channel is reduced in higher frequencies. Loss and attenuation are the other constraints as well as signal dispersion. Signal provides by actual channel limitation like bandwidth limitations and non-linearity leading to delay distortion of signal. Automatic meter reading (AMR) is one of the fields that can be performed by PLC communication channel. In this paper an AMR system besides of the above constraints is described.
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