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                    "value": "This paper presents an investigation of five-Level Cascaded H-bridge (CHB) inverter as Active Power Filter in Power System (PS) for compensation of reactive power and harmonics. The advantages of CHB inverter are low harmonic distortion, reduced number of switches and suppression of switching losses. The D- STACTOM helps to improve the power factor and eliminate the Total Harmonics Distortion (THD) drawn from a Non-Liner Diode Rectifier Load (NLDRL). The D-Q reference frame theory is used to generate them reference compensating currents for D-STACTOM while Fuzzy controller(FC) is used for capacitor dc voltage regulation. A CHB Inverter is considered for shunt compensation of a 11 kV distribution system. Finally a level shifted PWM (LSPWM) & Phase shifted PWM (PSPWM) technique adopted to investigate the performance of CHB Inverter. The results are obtained through Mat lab/ Simulink",
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                        "unstructured": "IEEE Recommended Practices and Requirements for Harmonics Control in Electric Power Systems, IEEE Std. 519, 1992"
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                        "doi": "10.1007/978-1-84628-772-5",
                        "unstructured": "A. Moreno-Munoz, Power Quality: Mitigation Technologies in a Distributed Environment. London, U.K.: Springer-Verlag, 2007"
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                        "doi": "10.1109/6.387140",
                        "unstructured": "N. G. Hingorani, “Introducing Custom Power,” IEEE Spectrum, Vol.32, n. 6, pp. 41-48, June 1995"
                    },
                    {
                        "key": "ref4",
                        "doi": "10.1007/978-1-4615-1153-3",
                        "unstructured": "Ghosh and G. Ledwich, Power quality enchancement using custom power devices, London, Kluwer Academic Publishers, 2002"
                    },
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                        "key": "ref5",
                        "doi": "10.1016/b978-075065126-4/50006-7",
                        "unstructured": "Acha, V.G. Agelidis, O. Anaya-Lara and T.J.E.Miller, Power ElectronicControl in Electrical systems, England, Newnes, 2002"
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                        "unstructured": "A Pandey, B Singh, B N Singh, A Chandra, K Al-Haddad, D P Kothari,“A Review of Multilevel Power C onverters”, IE (I) Journal.EL, vol. 86, pp.220-231, March, 2006"
                    },
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                        "key": "ref7",
                        "doi": "10.1109/63.988678",
                        "unstructured": "K.A Corzine, and Y.L Familiant, “A New Cascaded Multi-level H-Bridge Drive,” IEEE Trans. Power.Electron., vol.17, no.1, pp.125-131. Jan 2002"
                    },
                    {
                        "key": "ref8",
                        "doi": "10.1109/28.502161",
                        "unstructured": "J.S.Lai, and F.Z.Peng “Multilevel converters–A new breed of converters”, IEEE Trans. Ind.Appli., vol.32, no.3, pp.509-517. May/ Jun. 1996"
                    },
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                        "key": "ref9",
                        "doi": "10.1109/41.585833",
                        "unstructured": "T.A.Maynard, M.Fadel and N.Aouda, “Modelling of multilevel converter,” IEEE Trans. Ind.Electron., vol.44, pp.356-364. Jun.1997. www.jsr.org.in 39 | Page"
                    },
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                        "key": "ref10",
                        "doi": "10.1109/tia.1983.4504335",
                        "unstructured": "P.Bhagwat, and V.R.Stefanovic, “Generalized structure of a multilevel PWM Inverter,” IEEE Trans. Ind. Appln, Vol.1A-19, no.6, pp.1057-1069, Nov./Dec..1983"
                    },
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                        "key": "ref11",
                        "doi": "10.1109/tie.2002.801052",
                        "unstructured": "J.Rodriguez, Jih-sheng Lai, and F Zheng peng, “Multilevel Inverters; A Survey of Topologies, Controls, and A pplications,” IEEE Trans. Ind. Electron., vol.49, no4., pp.724-738. Aug.2002"
                    },
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                        "key": "ref12",
                        "doi": "10.1109/tpel.2008.921186",
                        "unstructured": "Roozbeh Naderi, and Abdolreza rahmati, “Phase-shifted carrier PWM technique for general cascaded inverters,” IEEE Trans. Power.Electron., vol.23, no.3, pp.1257-1269. May.2008"
                    },
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                        "key": "ref13",
                        "doi": "10.1109/41.793345",
                        "unstructured": "Bhim Singh, Kamal AlHaddad & Ambrish Chandra, 1999, A Review of Active Filter for Power Quality Improvements, IEEE Trans on Industrial Electronics, 46(5), pp.960970"
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                        "key": "ref14",
                        "doi": "10.1109/pesc.2007.4342382",
                        "unstructured": "Mauricio Angulo, Pablo Lezana, Samir Kouro, Jos´e Rodr´ıguez and Bin Wu,”Level-shifted PWM for Cascaded Multilevel Inverters with Even Power Distribution” IEEE Power Electronics specialist conference, 17-21 june 2007, pp.2373-2378"
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