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Adaptability Research and Construction Scheme of DC Distribution Network Topologies

机译:直流配电网拓扑适应性研究与建设方案

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T332 paper investigates the adaptability and application scenarios of the radial structure, single-terminal ring structure and two-terminal structure, as well as the construction schemes and restricting factors, and the scheduling of renewable energy sources in DC distribution system is studied. Analysis results show that radial topology is mainly applicable to LVDC distribution network and low power reliability areas, and the construction scheme should be selected according to the distributed power permeability, the cost of DC circuit breakers and the load distribution. Single-terminal ring structure is mainly used for centralized sending of distributed power supply, and the converters can be used to isolate the faults, whereas the voltage recovery is relatively slow after fault. Two-terminal and multi-terminal structures can be used for the power supply of the DC load concentrated area. The power flow can be optimized by adjusting the converter control instructions, and the speed of voltage recovery is relatively fast. The electric cable is generally used, and the fault location is accurately judged by DC breakers and optical fiber communication technology.
机译:T332论文研究了径向结构,单端环结构和两端结构的适应性和应用场景,以及构造方案和限制因素,并研究了直流配电系统中可再生能源的调度。分析结果表明,径向拓扑结构主要适用于LVDC配电网和低功率可靠性区域,应根据分布式功率导磁率,直流断路器的成本和负载的分布选择施工方案。单端子环形结构主要用于分布式电源的集中发送,转换器可用于隔离故障,而故障后电压恢复相对较慢。两端子和多端子结构可用于直流负载集中区域的电源。可以通过调整转换器控制指令来优化功率流,并且电压恢复的速度相对较快。通常使用电缆,通过直流断路器和光纤通信技术可以准确判断故障位置。

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