This paper presents an analysis and design of an electronic load controller (ELC) for three-phase self-excited induction generators (SEIGs) suitable for stand-alone pico-hydro power generation with constant input power. Here, the SEIG can be used to generate constant voltage and frequency if the electrical load is maintained constant at its terminals. Moreover, under such operation, SEIG requires constant capacitance for excitation resulting in a fixed-point operation. For this purpose, a suitable control scheme has to be developed such that the load on the SEIG remains constant despite change in the consumer load. In such applications, water is freely available and, hence, a simple and cheap controller has to be developed, which can operat...
Abstract: This paper presents the design of a low cost voltage controller of a single phase Self-Exc...
AbstractConstant voltage and frequency can be generated by a stand-alone Self-Excited Induction Gene...
This article describes a controller for voltage and frequency control of self-excited induction gene...
The generation of electric power using self excited induction generation (SEIG) is a viable option i...
Abstract—This paper describes the mathematical modelling of self-excited induction generators (SEIGs...
This study presents design and implementation of a dynamic electronic load controller (DELC) for vol...
This paper presents a steady state analysis of self-excited induction generator (SEIG) operating wit...
A practical load controller is proposed as a simple and economical method for controlling a self-exc...
The paper presents a unique filed experience of a standalone power generating scheme using self-exci...
This paper presents a transient analysis of a self-excited induction generator (SEIG) with electroni...
This paper presents a transient analysis of a self-excited induction generator (SEIG) with electroni...
The modelling of an electronic load controller (ELC) for a self-excited induction generator (SEIG), ...
This paper is aimed at design and implementation of a modified electronic load controller (MELC) for...
This paper is aimed at design and implementation of a modified electronic load controller (MELC) for...
The objective of this thesis is to provide a throughout analysis of the possible use of an induction...
Abstract: This paper presents the design of a low cost voltage controller of a single phase Self-Exc...
AbstractConstant voltage and frequency can be generated by a stand-alone Self-Excited Induction Gene...
This article describes a controller for voltage and frequency control of self-excited induction gene...
The generation of electric power using self excited induction generation (SEIG) is a viable option i...
Abstract—This paper describes the mathematical modelling of self-excited induction generators (SEIGs...
This study presents design and implementation of a dynamic electronic load controller (DELC) for vol...
This paper presents a steady state analysis of self-excited induction generator (SEIG) operating wit...
A practical load controller is proposed as a simple and economical method for controlling a self-exc...
The paper presents a unique filed experience of a standalone power generating scheme using self-exci...
This paper presents a transient analysis of a self-excited induction generator (SEIG) with electroni...
This paper presents a transient analysis of a self-excited induction generator (SEIG) with electroni...
The modelling of an electronic load controller (ELC) for a self-excited induction generator (SEIG), ...
This paper is aimed at design and implementation of a modified electronic load controller (MELC) for...
This paper is aimed at design and implementation of a modified electronic load controller (MELC) for...
The objective of this thesis is to provide a throughout analysis of the possible use of an induction...
Abstract: This paper presents the design of a low cost voltage controller of a single phase Self-Exc...
AbstractConstant voltage and frequency can be generated by a stand-alone Self-Excited Induction Gene...
This article describes a controller for voltage and frequency control of self-excited induction gene...