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"An Incentivised and Optimised Dynamic Mechanism for Demand Response fo" by Md Moktadir Rahman, Ali Arefi et al.

The voltage regulation in distribution networks is one of the major obstacles when increasing the penetration of distributed generators (DGs) such as solar photovoltaics (PV), specially during cloud transients, causing potential stress on network voltage regulations. Residential demand response (DR) is one of the cost-effective solutions for voltage management in distribution networks. However, the main barriers of DR implementation are the complexities of controlling a large number and different types of residential loads, satisfying customers’ preferences and providing them fair incentives while identifying the optimum DR implementation locations and sizing as well as cooperating with the existing network equipment for the effective voltage management in the networks. A holistic and practical approach of DR implementation is missing in the literature. This study proposes a dynamic fair incentive mechanism using a multi-scheme load control algorithm for a large number of DR particip ....

Cloud Transients , Consumer Comfort , Demand Response , Distributed Generation , Distribution Networks , Ynamic Fair Incentive , Home Appliances , Road Control , Oad Flow Control , Reactive Power , Solar Photovoltaics , Olar Power Generation , Voltage Control , Oltage Management ,

"High-Frequency Ripple Injection Signals for the Effective Utilization " by Kashem M. Muttaqi, Obaidur Rahman et al.

The electrification of the transport industry is expected to have a major impact on the operation of future distribution grids which includes overloading of components, voltage unbalance and power quality issues. This paper proposes a novel approach to utilize the ripple injection load control signals for the control of EV charging load, considering a large integration of PV systems in the grid. Currently, ripple injection signals are widely used by distribution network service providers (DNSPs) around the world for control of loads such as streetlights and hot water systems. Ripple Injection Signals or Audio Frequency Injection Control (AFIC) signals are the applications of a high-frequency signal superimposed on the 50/60 Hz supply. The proposed control will make use of the existing infrastructure and offers a viable solution where a smart grid solution is not available. AFIC signals can be encoded in binary to carry different information which can be used to set the maximum allowabl ....

Injection Signals , Audio Frequency Injection Control , Afic Signals , Electric Vehicle Charging , V Charging Stations , Road Control , Oad Modeling , Ipple Injection Signals , Vehicle To Grid , Voltage Control ,

"Impact of Sustained Supply Voltage Magnitude on Consumer Appliance Beh" by Sean Elphick, Duane Robinson et al.

Voltage rise caused by high levels of distributed generation is manifesting as voltage regulation challenges for many electricity network operators. In this environment it would be ideal to reduce supply voltage magnitudes, however, many network operators are hesitant to do so due to concerns related to appliance operation at reduced voltage magnitudes. Voltage regulation requirements are defined by network standards and network service providers must ensure voltages remain within specified limits. Through an extensive evaluation of domestic appliance performance when supplied at various voltage magnitudes this paper examines the impact of varying voltage levels on residential appliances. Equipment energy demand, operation and actuation were monitored for each applied voltage magnitude. While no equipment failures were recorded, appliance behaviour varied significantly with applied voltage level. Individual appliance conservation voltage reduction factors were also established. The res ....

Distribution Networks , Home Appliances , Road Behaviour , Load Management , Power Quality , Voltage Control , Voltage Regulation ,