Investigations on Service Extensions of Solid State Transformer

R. B. Jeyapradha, V. Rajini
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Abstract

Solid State Transformers (SSTs) are receiving significant research attention in recent years as the countries around the world gear up for low carbon future. Though SSTs are contemplated as a prospective replacement to line frequency transformers (LFTs), they are far more superior to the latter in extending their services besides isolation and voltage conversion. They are multifunctional with all power quality conditioning functions embodied in a single entity. This paper investigates the possible service additions that could be offered by the SSTs deployed in power distribution systems. The additional services include harmonic reduction, mitigation of sag/swell/load transients, compensation for outage, power factor correction, voltage regulation under unbalanced loads, capacity addition to LFTs and provision of low and medium voltage dc output. The investigations are carried out by modeling a three-stage SST with two-switch bridgeless boost power factor correction (BBPFC) converter for the front end, Dual Half-bridge (DHB) converter for the isolation stage followed by a full bridge SPWM inverter for the final stage. The choice of converter topologies for the three stages of the SST is justified on the basis of active part count, control performance and operational simplicity. Further, the modeled SST is modular providing room for extended power and voltage levels, fault isolation and easy maintenance. Simulation results are presented in support of the investigations.
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固态变压器服务扩展的研究
近年来,随着世界各国为低碳未来做准备,固态变压器(SSTs)受到了极大的研究关注。虽然sst被认为是线频变压器(LFTs)的潜在替代品,但它们在扩展隔离和电压转换之外的服务方面远优于后者。它们是多功能的,所有的电能质量调节功能都体现在一个单一的实体中。本文研究了部署在配电系统中的SSTs可能提供的附加服务。额外的服务包括减少谐波、缓解暂降/膨胀/负载瞬变、停电补偿、功率因数校正、不平衡负载下的电压调节、lft的容量增加以及提供中低压直流输出。研究人员通过对一个三级SST进行建模,该SST的前端为双开关无桥升压功率因数校正(BBPFC)转换器,隔离级为双半桥(DHB)转换器,最后级为全桥SPWM逆变器。转换器拓扑的选择为三个阶段的SST是合理的基础上,有效的部分计数,控制性能和操作简单性。此外,建模的SST是模块化的,为扩展功率和电压水平,故障隔离和易于维护提供了空间。仿真结果支持了研究结果。
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