Rising demand for electricity, the need for decreasingto decrease dependency on fossil fuels, increasing utilization of renewable energy, and an emphasis on environmental protection have led to the emergence of concepts of flexible loads and active distribution networks concepts. The electricity trade, enabled by active distribution networks, has created a new faceapproach in the electricity industry and poses, posing new challenges for future distribution networks. With the development of active distribution networks, interactions between customers and energy suppliers are expected to increase, and with the improvement of communication between consumers and producers and increasing consumer choiceschoice, the higher the participation of consumers Inin charge response programs and the optimal use of dispersed generation sources and renewable energy. It is now possible to save investment and operating costs, delay in the construction of new power plants, and curb siding. It is possible to accommodate the demand for time and incentives. With the introduction of new technologies in the distribution network, customers can change their consumption patterns without losing their welfare. This research has triedendeavored to investigate load response programs in active distribution networks.

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