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This paper presents new analytical expressions to efficiently capture the optimal power factor of each Distributed Generation (DG) unit for reducing energy losses and enhancing voltage stability over a given planning horizon. These expressions are based on the derivation of a multi-objective index (IMO), which is formulated as a combination of active and reactive power loss indices. The decision for...
This paper proposes a methodology for evaluating the impact of loss reduction on DG investment decisions. In this methodology, new analytical expressions are first proposed to quickly capture the optimal power factor of each DG unit to maximize loss reduction. The decision for the optimal location, size and number of DG units is then obtained through a benefit-cost analysis over a given planning horizon...
This paper proposes a simple analytical strategy for distributed generation (DG) integration considering the benefit for distribution network operator (DNO) under the unbundled environment where DG units are owned by DG developers. This benefit arises from network reinforcement deferral and loss reduction due to optimal DG size and operating power factor. The optimal size and power factor are strategically...
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