Remote area microgrids (MG) can experience overloading or power deficiency throughout their dynamic operations due to load and generation uncertainties. Under such conditions, load-shedding is traditionally considered as the first successful mechanism to prevent system instability. To minimize load-shedding, islanded neighboring MGs can be connected to each other in remote areas to provide a self-healing capability. For this, extra generation capacity needs to be available in the distributed energy resources (DER) of one of the MGs to supply the extra demand in the other MG. In this way, the total load in the system of interconnected MGs will be shared by all the DERs within those MGs. This process falls within the network tertiary controll...
Large remote areas may consist of multiple microgrids (MG), each owned and operated by a different o...
Coupling remote microgrids (MGs) is a promising technique to handle power deficiency in such systems...
This paper discusses how two islanded microgrids, when connected together, can support each other du...
Remote area microgrids (MG) can experience overloading or power deficiency throughout their dynamic ...
Power deficiency management is an important factor in the operation of remote microgrids (MG). Load-...
© 2015 IEEE. Power deficiency management is an important factor in the operation of remote microgrid...
This paper proposes a self-healing strategy for two neighboring islanded microgrids (MGs) that are c...
This paper proposes a self-healing strategy for two neighboring islanded microgrids (MGs) that are c...
Enhancing the self-healing capability of the isolated AC microgrids (MGs) through mutual support of ...
This paper shows how multiple interconnected microgrids can operate in autonomous mode in a self-hea...
Load-shedding is a mechanism to prevent overloading of the autonomous microgrids (MG). To minimize l...
Load-shedding is a mechanism to prevent overloading of the autonomous microgrids (MG). To minimize l...
This paper shows how multiple interconnected microgrids can operate in autonomous mode in a self–hea...
This paper shows how multiple interconnected microgrids can operate in autonomous mode in a self–hea...
Microgrid is expected to supply its local loads independently. But, due to intermittency of wind and...
Large remote areas may consist of multiple microgrids (MG), each owned and operated by a different o...
Coupling remote microgrids (MGs) is a promising technique to handle power deficiency in such systems...
This paper discusses how two islanded microgrids, when connected together, can support each other du...
Remote area microgrids (MG) can experience overloading or power deficiency throughout their dynamic ...
Power deficiency management is an important factor in the operation of remote microgrids (MG). Load-...
© 2015 IEEE. Power deficiency management is an important factor in the operation of remote microgrid...
This paper proposes a self-healing strategy for two neighboring islanded microgrids (MGs) that are c...
This paper proposes a self-healing strategy for two neighboring islanded microgrids (MGs) that are c...
Enhancing the self-healing capability of the isolated AC microgrids (MGs) through mutual support of ...
This paper shows how multiple interconnected microgrids can operate in autonomous mode in a self-hea...
Load-shedding is a mechanism to prevent overloading of the autonomous microgrids (MG). To minimize l...
Load-shedding is a mechanism to prevent overloading of the autonomous microgrids (MG). To minimize l...
This paper shows how multiple interconnected microgrids can operate in autonomous mode in a self–hea...
This paper shows how multiple interconnected microgrids can operate in autonomous mode in a self–hea...
Microgrid is expected to supply its local loads independently. But, due to intermittency of wind and...
Large remote areas may consist of multiple microgrids (MG), each owned and operated by a different o...
Coupling remote microgrids (MGs) is a promising technique to handle power deficiency in such systems...
This paper discusses how two islanded microgrids, when connected together, can support each other du...