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Leakage current alleviation in solar energy conversion system enabling power quality improvement

机译:太阳能转换系统泄漏电流缓解,实现了电能质量改进

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This work presents a generalised integrator-based control algorithm for power quality (PQ) amelioration of the grid in the presence of non-linear load enabling leakage current suppression feature. Owing to the presence of stray capacitance between solar photovoltaic (PV) array and the ground, the variation in common-mode voltage across stray capacitance leads to potential safety issues, electromagnetic interference, and distortion into the injected grid currents. Furthermore, the PQ of the grid is highly deteriorated under the existence of non-linear loads. To solve the aforementioned issues, the harmonic compensation controller is presented herein to ensure the unity power factor operation, harmonic compensation, leakage current suppression using the grid-connected solar PV array system. Simulated results show the effectiveness of the control strategy under various operating scenario. In contrast to the state-of-the-art techniques, the grid currents are attained sinusoidal and balanced even in the presence of unbalanced non-linear load. Furthermore, the leakage current is suppressed within 300 mA as per the VDE-00126-01 standard. The comparative performance explicitly validates the effectiveness of the presented harmonic compensating strategy over the conventional schemes. Test results manifest the response of the solar PV array system for various operating conditions and follows the revised IEEE-519-2014 sand VDE-00126-01 standards.
机译:该工作介绍了在存在非线性负荷的存在下,漏电电流抑制特征存在的电力质量(PQ)改善基于广义积分器的控制算法。由于太阳能光伏(PV)阵列和地之间存在杂散电容,跨越杂散电容的共模电压的变化导致潜在的安全问题,电磁干扰和注入的网格电流中的失真。此外,在存在非线性载荷的存在下,该网格的PQ高度劣化。为了解决上述问题,谐波补偿控制器在此示出以确保Unity功率因数操作,谐波补偿,使用网格连接的太阳能光伏阵列系统进行呼出电流抑制。模拟结果表明了控制策略在各种操作场景下的有效性。与最先进的技术相比,即使在存在不平衡的非线性负载的情况下,栅格电流也能够正弦和平衡。此外,根据VDE-00126-01标准,泄漏电流在300mA内被抑制。比较表现明确验证了呈现谐波补偿策略对传统方案的有效性。测试结果表明了太阳能光伏阵列系统进行了各种操作条件的响应,并遵循修订的IEEE-519-2014 Sand VDE-00126-01标准。

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