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Power line communications over time-varying frequency-selective power line channels for smart home applications

机译:通过时变频率选择电力线通道进行电力线通信,用于智能家居应用

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摘要

Many countries in the world are developing the next generation power grid, the smart grid, to combat the ongoing severe environmental problems and achieve e�cient use of the electricity power grid. Smart metering is an enabling technology in the smart grid to address the energy wasting problem. It monitors and optimises the power consumption of consumers' devices and appliances. To ensure proper operation of smart metering, a reliable communication infrastructure plays a crucial role. Power line communication (PLC) is regarded as a promising candidate that will ful�l the requirements of smart grid applications. It is also the only wired technology which has a deployment cost comparable to wireless communication. PLC is most commonly used in the low-voltage (LV) power network which includes indoor power networks and the outdoor LV distribution networks. In this thesis we consider using PLC in the indoor power network to support the communication between the smart meter and a variety of appliances that are connected to the network. Power line communication (PLC) system design in indoor power network is challenging due to a variety of channel impairments, such as time-varying frequency-selective channel and complex impulsive noise scenarios. Among these impairments, the timevarying channel behaviour is an interesting topic that hasn't been thoroughly investigated. Therefore, in this thesis we focus on investigating this behaviour and developing a low-cost but reliable PLC system that is able to support smart metering applications in indoor environments. To aid the study and design of such a system, the characterisation and modelling of indoor power line channel are extensively investigated in this thesis. In addition, a exible simulation tool that is able to generate random time-varying indoor power line channel realisations is demonstrated. Orthogonal frequency division modulation (OFDM) is commonly used in existing PLC standards. However, when it is adopted for time-varying power line channels, it may experience signi�cant intercarrier interference (ICI) due to the Doppler spreading caused by channel time variation. Our investigation on the performance of an ordinary OFDM system over time-varying power line channel reveals that if ICI is not properly compensated, the system may su�er from severe performance loss. We also investigate the performance of some linear equalisers including zero forcing (ZF), minimum mean squared error (MMSE) and banded equalisers. Among them, banded equalisers provide the best tradeo� between complexity and performance. For a better tradeo� between complexity and performance, time-domain receiver windowing is usually applied together with banded equalisers. This subject has been well investigated for wireless communication, but not for PLC. In this thesis, we investigate the performance of some well-known receiver window design criteria that was developed for wireless communication for time-varying power line channels. It is found that these criteria do not work well over time-varying power line channels. Therefore, to �ll this gap, we propose an alternative window design criterion in this thesis. Simulations have shown that our proposal outperforms the other criteria.
机译:世界上许多国家正在开发下一代电网,即智能电网,以应对持续的严峻环境问题并实现对电网的有效利用。智能计量是智能电网中解决能源浪费问题的一项使能技术。它监视并优化消费者设备和电器的功耗。为了确保智能电表的正常运行,可靠的通信基础设施起着至关重要的作用。电力线通信(PLC)被认为将满足智能电网应用的需求。它也是唯一一种具有与无线通信相当的部署成本的有线技术。 PLC最常用于低压(LV)电力网络,其中包括室内电力网络和室外LV配电网络。在本文中,我们考虑在室内电网中使用PLC来支持智能电表与连接到网络的各种设备之间的通信。由于各种信道障碍(例如时变频率选择信道和复杂的脉冲噪声场景),室内电网中的电力线通信(PLC)系统设计面临挑战。在这些损害中,时变信道行为是一个有趣的话题,尚未进行彻底研究。因此,在本文中,我们着重于研究这种行为并开发一种低成本但可靠的PLC系统,该系统能够支持室内环境中的智能计量应用。为了帮助系统的研究和设计,本文对室内电力线通道的特性和建模进行了广泛的研究。此外,还演示了一种可行的仿真工具,该工具能够生成随时间变化的室内电力线信道实现。正交频分调制(OFDM)通常用于现有的PLC标准中。但是,当将其用于时变电力线信道时,由于信道时间变化引起的多普勒扩展,可能会遇到明显的载波间干扰(ICI)。我们对随时间变化的电力线信道的普通OFDM系统性能的调查表明,如果ICI得不到适当的补偿,则系统可能会遭受严重的性能损失。我们还研究了一些线性均衡器的性能,包括零强迫(ZF),最小均方误差(MMSE)和带状均衡器。其中,带区均衡器在复杂性和性能之间提供了最佳平衡。为了在复杂性和性能之间取得更好的平衡,通常将时域接收器窗口与带状均衡器一起使用。对于无线通信,已经对该主题进行了深入研究,但对于PLC,尚未进行充分研究。在本文中,我们研究了一些众所周知的接收器窗口设计标准的性能,该标准是为时变电力线信道的无线通信而开发的。发现这些标准在时变电源线通道上无法很好地工作。因此,为了弥补这一差距,我们在本文中提出了另一种窗口设计准则。仿真表明,我们的建议优于其他标准。

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    Zhu W;

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  • 年度 2000
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