@ARTICLE{Yağcıoğlu_Mert_Next_2019, author={Yağcıoğlu, Mert and Bayat, Oğuz}, volume={vol. 65}, number={No 3}, journal={International Journal of Electronics and Telecommunications}, pages={441-448}, howpublished={online}, year={2019}, publisher={Polish Academy of Sciences Committee of Electronics and Telecommunications}, abstract={Orthogonal frequency division multiple access (OFDMA) in Long Term Evolution (LTE) can effectively eliminate intra-cell interferences between the subcarriers in a single serving cell. But, there is more critical issue that, OFDMA cannot accomplish to decrease the inter-cell interference. In our proposed method, we aimed to increase signal to interference plus noise ratio (SINR) by dividing the cells as cell center and cell edge. While decreasing the interference between cells, we also aimed to increase overall system throughput. For this reason, we proposed a dynamic resource allocation technique that is called Experience-Based Dynamic Soft Frequency Reuse (EBDSFR). We compared our proposed scheme with different resource allocation schemes that are Dynamic Inter-cellular Bandwidth Fair Sharing FFR (FFRDIBFS) and Dynamic Inter-cellular Bandwidth Fair Sharing Reuse-3 (Reuse3DIBFS). Simulation results indicate that, proposed EBDSFR benefits from overall cell throughput and obtains higher user fairness than the reference schemes.}, type={Artykuły / Articles}, title={Next Generation Dynamic Inter-Cellular Scheduler}, URL={http://ochroma.man.poznan.pl/Content/113301/PDF/59.pdf}, doi={10.24425/ijet.2019.129797}, keywords={Frequency Reuse, Inter-Cell Interference Coordination, LTE, OFDMA, throughput, SINR, Capacity, Scheduling, Load Balancing}, }