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首页> 外文期刊>Indian Journal of Science and Technology >Power Line based Data Communication (as A Cost Effective Solution to Traditional System) and Interleave Division Multiple Access
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Power Line based Data Communication (as A Cost Effective Solution to Traditional System) and Interleave Division Multiple Access

机译:基于电力线的数据通信(作为传统系统的经济高效解决方案)和交错分区多路访问

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Objectives: This paper presents a novel generalized PLC transceiver architecture (in IDMA system) and also compares the Channel frequency response based performance of PLC (in IDMA system) by varying the number of channels. Methods: The Matlab software is used for Simulation of Power Line Communication model. Multipath channel model for PLC is the model employed for considering the effect of multipath fading, frequency selective fading, physical signal propagation effects in main network and effect of impedance mismatching. The dispersive nature of channel is the base approach used for considering the effect of Intersymbol Interference. Single carrier modulation, FSK, QPSK, or other modulation methods are used as the modulation technique for narrowband applications on power lines. Power Line model Simulated Result for 4 and 15 number of channels concludes the relation between the parameters frequency, magnitude and phase. Findings: It shows the improvement in attenuation (frequency-dependent) and the frequency selective fading in Power Line Channel. The deep notches in the Frequency Response of the channel get reduced hence resulting in the attenuation improvement. By using IDMA with PLC, we can achieve a communication system which inherits the advantages of both schemes IDMA as well as power line channel. Wide variation in the Data rates can be achieved using power line communication. PLC major advantage is that its uses an existing infrastructure, so the cost of communication will get reduced. With PLC which can work over the various frequencies, communication becomes easier and maximum bandwidth can be utilized. Power Line (carrier) Communication system can be preferred choice over wireless or other Home Networking technology because of its easy installation and availability. With PLC which can work over the various frequencies, communication becomes easier and maximum bandwidth can be utilized. PLC technology promotes data communication of medium and low voltage power lines. Application: It involves the delivery of Communication signal with maximum efficiency over PLC applications. Frequency selective fading gets improved with increase in the number of channels when the PLC is used as the media of communication in IDMA system.
机译:目标:本文介绍了一种新颖的通用PLC收发器体系结构(在IDMA系统中),并通过更改通道数比较了基于信道频率响应的PLC(在IDMA系统中)的性能。方法:Matlab软件用于电力线通信模型的仿真。 PLC的多径信道模型是用于考虑多径衰落,频率选择性衰落,主网络中物理信号传播效应和阻抗失配效应的模型。信道的色散特性是用于考虑符号间干扰影响的基本方法。单载波调制,FSK,QPSK或其他调制方法被用作电力线上窄带应用的调制技术。电力线模型的4和15个通道的模拟结果得出了参数频率,幅度和相位之间的关系。结果:它显示了电力线信道中衰减(取决于频率)和频率选择性衰减的改善。通道频率响应中的深陷波减少了,因此改善了衰减。通过将IDMA与PLC配合使用,我们可以实现一种通信系统,该系统继承了IDMA方案以及电力线通道这两种方案的优点。使用电力线通信可以实现数据速率的广泛变化。 PLC的主要优点是,它使用现有的基础结构,因此通信成本将降低。使用可以在各种频率上工作的PLC,通讯变得更加容易,并且可以利用最大带宽。电力线(载波)通信系统由于其易于安装和可用性,因此可能是无线或其他家庭网络技术的首选。使用可以在各种频率下工作的PLC,通讯变得更加容易,并且可以利用最大带宽。 PLC技术促进了中低压电力线的数据通信。应用:它涉及通过PLC应用以最高效率传送通信信号。当PLC用作IDMA系统中的通信媒体时,频率选择性衰落随着通道数量的增加而得到改善。

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