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Improved voltage-based protection scheme for an LVDC distribution network interfaced by a solid state smart transformer

机译:固态智能变压器与LVDC配电网络的基于电压的改进保护方案

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摘要

The increasing electrification of transport and heat will place increasing demand on low voltage (LV) networks with the potential to overload medium voltage (MV)/LV transformers and LV cables. Deployment of a solid-state transformer (SST) at MV/LV substations and using LV direct current (LVDC) distribution systems offer great potential to address such challenges. However, the SST deployment in addition to the introduction of LVDC will fundamentally change LV fault behaviour and protection requirements due to the limited short-circuit capabilities of such technologies. The SST will deliver limited fault currents, making current-based protection (widely used in LV networks) less reliable. Therefore, this study presents an advanced communication-less protection scheme which can effectively detect and locate DC faults even with reduced fault levels. The developed protection scheme overcomes the selectivity limitations in LVDC voltage-based protection solutions by using a combination of DC voltage magnitude, voltage concavity (sign of d(2)v/dt(2)) and the sign of the rate of change of current (di/dt) regardless of the current magnitudes. The credibility of the developed protection algorithm is tested against different fault scenarios applied on an active LVDC network model built in PSCAD/EMTDC. Noise signals have been included in the simulation to appraise the resilience of the developed scheme.
机译:运输和热量电气化的不断增长将对低压(LV)网络提出越来越高的要求,可能会使中压(MV)/ LV变压器和LV电缆过载。在MV / LV变电站中部署固态变压器(SST)并使用LV直流(LVDC)配电系统具有解决此类挑战的巨大潜力。但是,由于引入了LVDC,因此SST的部署会从根本上改变LV故障行为和保护要求,因为此类技术的短路能力有限。 SST将提供有限的故障电流,从而使基于电流的保护(广泛用于LV网络)可靠性较低。因此,本研究提出了一种先进的无通信保护方案,该方案即使在故障级别降低的情况下也可以有效地检测和定位直流故障。所开发的保护方案通过结合使用直流电压幅度,电压凹度(d(2)v / dt(2)的符号)和电流变化率的符号,克服了基于LVDC电压的保护解决方案中的选择性限制。 (di / dt),与当前幅度无关。针对在PSCAD / EMTDC中内置的活动LVDC网络模型上应用的不同故障场景,测试了开发的保护算法的可靠性。噪声信号已包含在仿真中,以评估开发方案的弹性。

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