Single wire earth return (SWER) electric distribution feeders are used extensively in remote parts of Queensland and other states, as an economic means to deliver electrical energy to small customer loads, scattered sparsely over vast areas. These SWER systems are normally supplied from very long (>100 km) three phase distribution feeders. Due to recent strong load growth, voltage quality issues have arisen in these systems including voltage regulation, voltage unbalance, and phase unbalance. Excessive system power losses are also experienced. There are several available methods to combat these issues; however, some have not been applied to this type of distribution system before. Developing simple, economic solutions to these problems is l...
The existing low voltage distribution systems have various single and three phase loads with dynami...
This research project aimed to determine if the impacts of decentralised battery storage systems on ...
Single wire earth return systems, (SWER), are widely used in sparsely settled regions and are a very...
Single wire earth return (SWER) electric distribution feeders are used extensively in remote parts o...
Single Wire Earth Return (SWER) electric distribution feeders are used extensively in remote parts ...
Single wire earth return (SWER) electric distribution feeders are used extensively in remote parts o...
Long distribution feeders connected to Single Wire Earth Return (SWER) systems are unique sub-system...
Long distribution feeders connected to Single Wire Earth Return (SWER) systems are unique sub-system...
The attached document may provide the author's accepted version of a published work
Single Wire Earth Return (SWER) systems are used for supplying electricity at low cost, where electr...
Single Wire Earth Return (SWER) systems are used for supplying electricity at low cost, where electr...
The supply of electricity to customers dispersed across wide geographical areas using the Single Wir...
The single wire earth return, (SWER), system is a low cost power distribution method that finds inte...
Single Wire Earth Return (SWER) systems are used for supplying electricity at low cost, where electr...
Single Wire Earth Return (SWER) systems are a widely applied, low cost electrification method used i...
The existing low voltage distribution systems have various single and three phase loads with dynami...
This research project aimed to determine if the impacts of decentralised battery storage systems on ...
Single wire earth return systems, (SWER), are widely used in sparsely settled regions and are a very...
Single wire earth return (SWER) electric distribution feeders are used extensively in remote parts o...
Single Wire Earth Return (SWER) electric distribution feeders are used extensively in remote parts ...
Single wire earth return (SWER) electric distribution feeders are used extensively in remote parts o...
Long distribution feeders connected to Single Wire Earth Return (SWER) systems are unique sub-system...
Long distribution feeders connected to Single Wire Earth Return (SWER) systems are unique sub-system...
The attached document may provide the author's accepted version of a published work
Single Wire Earth Return (SWER) systems are used for supplying electricity at low cost, where electr...
Single Wire Earth Return (SWER) systems are used for supplying electricity at low cost, where electr...
The supply of electricity to customers dispersed across wide geographical areas using the Single Wir...
The single wire earth return, (SWER), system is a low cost power distribution method that finds inte...
Single Wire Earth Return (SWER) systems are used for supplying electricity at low cost, where electr...
Single Wire Earth Return (SWER) systems are a widely applied, low cost electrification method used i...
The existing low voltage distribution systems have various single and three phase loads with dynami...
This research project aimed to determine if the impacts of decentralised battery storage systems on ...
Single wire earth return systems, (SWER), are widely used in sparsely settled regions and are a very...