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Analysis of the Converter Synchronizing Method for the Contribution of Battery Energy Storage Systems to Inertia Emulation

机译:电池储能系统对惯性仿真贡献的转换器同步方法分析

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摘要

This paper presents a comprehensive analysis of the effect of the converter synchronizing methods on the contribution that Battery Energy Storage Systems (BESSs) can provide for the support of the inertial response of a power system. Solutions based on phase-locked loop (PLL) synchronization and virtual synchronous machine (VSM) synchronization without PLL are described and then compared by using time-domain simulations for an isolated microgrid (MG) case study. The simulation results showed that inertial response can be provided both with and without the use of a PLL. However, the behavior in the first moments of the inertia response differed. For the PLL-based solutions, the transient response was dominated by the low-level current controllers, which imposed fast under-damped oscillations, while the VSM systems presented a slower response resulting in a higher amount of energy exchanged and therefore a greater contribution to the support of the system inertial response. Moreover, it was demonstrated that PLL-based solutions with and without derivative components presented similar behavior, which significantly simplified the implementation of the PLL-based inertia emulation solutions. Finally, results showed that the contribution of the BESS using VSM solutions was limited by the effect of the VSM-emulated inertia parameters on the system stability, which reduced the emulated inertia margin compared to the PLL-based solutions.
机译:本文介绍了转换器同步方法对电池储能系统(贝斯)可以提供电力系统的惯性响应的贡献的贡献的综合分析。描述基于锁相环(PLL)同步和虚拟同步机(VSM)同步的溶液,然后通过使用用于孤立的微电网(MG)案例研究的时域模拟来进行比较。仿真结果表明,可以在不使用PLL的情况下提供惯性响应。然而,惯性响应的第一矩中的行为不同。对于基于PLL的解决方案,瞬态响应由低电平电流控制器主导,该低电平电流控制器施加快速的振荡振荡,而VSM系统呈现较慢的响应,导致更高的能量交换,因此更大的贡献系统惯性响应的支持。此外,据证明,具有和不具有衍生成分的基于PLL的溶液呈现了类似的行为,这显着简化了PLL的惯性仿真解决方案的实现。最后,结果表明,BESS使用VSM溶液的贡献受VSM仿真惯性参数对系统稳定性的影响的限制,与基于PLL的溶液相比减少了模拟的惯性边缘。

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