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Grid capacity and efficiency enhancement by operating medium voltage AC cables as DC links with modular multilevel converters

机译:通过将中压交流电缆作为直流母线与模块化多电平转换器配合使用,可提高电网容量和效率

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摘要

It is anticipated that with the thrust towards use of clean energy resources such as electric vehicles, future distribution grids will face a steep increase in power demand, forcing the utility operators to invest in enhancing the power delivering capacity of the grid infrastructure. It is identified that the critical 5–20 km medium voltage (MV) underground ac distribution cable link, responsible for bulk power delivery to the inner urban city substation, can benefit the most with capacity and efficiency enhancement, if the existing infrastructure is reused and operated under dc. Quantification of the same is offered in this paper by incorporating all influencing factors like voltage regulation, dc voltage rating enhancement, capacitive leakage currents, skin and magnetic proximity effect, thermal proximity effect and load power factor. Results are presented for three different ac and dc system topologies for varying cable lengths and conductor cross-sections. The computed system efficiency is enhanced with use of modular multilevel converters that have lower losses due to lower switching frequency. A justified expectation of 50–60% capacity gains is proved along with a generalized insight on its variations that can be extrapolated for different network parameters and configurations. Conditions for achieving payback time of 5 years or lower due to energy savings are identified, while the socio-economic benefits of avoiding digging and installing new cable infrastructure are highlighted. The technical implications of refurbishing cables designed for ac to operate under dc conditions is discussed in terms of imposed electric fields, thermal profile and lifetime. A novel opportunity of temperature dependent dynamic dc voltage rating to achieve additional capacity and efficiency gains is presented.
机译:可以预见的是,随着使用清洁能源资源(如电动汽车)的努力,未来的配电网将面临电力需求的急剧增加,迫使公用事业运营商进行投资以提高电网基础设施的输电能力。可以确定的是,如果对现有基础设施进行再利用,则关键的5-20 km中压(MV)地下交流配电电缆链路(负责向市区内变电站提供大功率输电)可以最大程度地受益于容量和效率的提高。在直流下运行。通过合并所有影响因素,例如电压调节,直流额定电压提高,电容性漏电流,集肤和磁接近效应,热接近效应和负载功率因数,本文对此进行了量化。给出了针对不同电缆长度和导体横截面的三种不同交流和直流系统拓扑的结果。使用模块化多电平转换器可提高计算系统的效率,该模块化多电平转换器由于开关频率较低而具有较低的损耗。可以证明有合理的预期将获得50-60%的容量增长,并获得了对其变化的普遍了解,可以针对不同的网络参数和配置进行推断。确定了由于节省能源而实现5年或更短的投资回收期的条件,同时强调了避免挖掘和安装新的电缆基础设施的社会经济效益。根据施加的电场,热分布和寿命,讨论了为交流电在直流条件下工作而设计的翻新电缆的技术含义。提出了一种与温度有关的动态直流电压额定值的新机会,以实现额外的容量和效率增益。

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