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Transient Angle Stability Comparison of Paralleled VSGs system and Hybrid System Comprised by VSG and Diesel Generator

机译:VSG和柴油发电机包括并联VSGS系统和混合系统的瞬态角度稳定性比较

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This paper investigates transient angle stability of parallel system of two virtual synchronous generators (VSGs) and hybrid system comprised by VSG and diesel generator (DG). Compared to single grid-connected VSG, the paralleled VSGs system and hybrid system are facing larger challenges on stability aspect during serious faults. Although there exist several publications on transient stability, the transient instability mechanism is rather ambiguous, especially for paralleled systems. Besides, swing equations of paralleled VSGs system and paralleled DG-VSG system are established to discuss the dynamic characteristics of the system during short-circuit fault. The increase of power angle between DG and VSG is caused by the different angular accelerations, which deteriorates the transient angle stability of paralleled DG-VSG system. Thus, paralleled DG-VSG system is more prone to instability than paralleled VSGs system, which can be illustrated by power angle (P-δ) characteristic curves. Finally, simulation results validate the correctness of theoretical analyses.
机译:本文研究了VSG和柴油发电机(DG)构成的两个虚拟同步发电机(VSGS)和混合系统的并联系统的瞬态角度稳定性。与单网连接的VSG相比,并联VSGS系统和混合系统在严重故障期间对稳定性方面面临更大的挑战。虽然存在几个关于瞬态稳定性的出版物,但是瞬态不稳定机制是相当暧昧的,特别是对于并行系统。此外,建立了并联VSGS系统的摆动方程和并联DG-VSG系统,以讨论短路故障期间系统的动态特性。 DG和VSG之间的电源角的增加是由不同的角度加速度引起的,该角度加速度劣化了并联DG-VSG系统的瞬态角度稳定性。因此,并联DG-VSG系统更容易易于不稳定,并且可以通过电源角(P-Δ)特性曲线来示出。最后,仿真结果验证了理论分析的正确性。

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