Microturbines / 1.1 Background of Project

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bandwidth of harmonics with their inductance (L) and capacitance (C) values. However, because of their L and C constant parameters, they cannot mitigate harmonics efficiently. On the other hand, active filters have the ability to perform online monitoring of harmonics in distribution system current and removing them from the system at the same time. The use of active filter alone however can increase the initial cost of project. Hybrid filter constructed of passive and active filters with different structures are used for removing the operation limit of low pass passive filter and also the high initial cost of active filter. At the same time, it can use the advantage of both filters with lower costs [8]. The utilization of a hybrid filter in a microturbine generation system might be a successful solution in reducing the harmonic impact of the microturbine to the distribution system. 1.3 Objective of Project The followings are the objectives of the project: i. To investigate microturbine harmonic impact on a distribution system. ii. To investigate the effectiveness of a hybrid filter in reducing the microturbine harmonic impact on the distribution system compared to a passive and an active filter. 1.4 Scope of Project The project is carried out based on 4 scopes which are: i. Modelling of a microturbine generation system. ii. Modelling of a passive, active and hybrid filter. iii. Simulation of the microturbine generation system with each filter introduced in the system. 3

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