| 2024 | AINA | A Fuzzy-Based System for Assessment of Performance Error in VANETs. | Ermioni Qafzezi, Kevin Bylykbashi, Shunya Higashi, Phudit Ampririt, Keita Matsuo, Leonard Barolli |
| 2023 | AINA | Implementation of a Fuzzy-Based Testbed for Assessment of Neighbor Vehicle Processing Capability in SDN-VANETs. | Ermioni Qafzezi, Kevin Bylykbashi, Elis Kulla, Makoto Ikeda, Keita Matsuo, Leonard Barolli |
| 2023 | CISIS | A Fuzzy-Based Error Driving System for Improving Driving Performance in VANETs. | Ermioni Qafzezi, Kevin Bylykbashi, Shunya Higashi, Phudit Ampririt, Keita Matsuo, Leonard Barolli |
| 2022 | AINA | A Fuzzy-Based Scheme for Slice Priority Assessment in 5G Wireless Networks. | Phudit Ampririt, Ermioni Qafzezi, Kevin Bylykbashi, Makoto Ikeda, Keita Matsuo, Leonard Barolli |
| 2022 | AINA | Mesh Routers Placement by WMN-PSODGA Simulation System: Effect of Number of Mesh Routers Considering Stadium Distribution and RDVM Method. | Admir Barolli, Kevin Bylykbashi, Shinji Sakamoto, Elis Kulla, Leonard Barolli |
| 2022 | AINA | A Fuzzy-Based System for Determining Driver Stress in VANETs Considering Driving Experience and History. | Kevin Bylykbashi, Ermioni Qafzezi, Phudit Ampririt, Makoto Ikeda, Keita Matsuo, Leonard Barolli |
| 2022 | AINA | A Survey on Advances in Vehicular Networks: Problems and Challenges of Architectures, Radio Technologies, Use Cases, Data Dissemination and Security. | Ermioni Qafzezi, Kevin Bylykbashi, Phudit Ampririt, Makoto Ikeda, Keita Matsuo, Leonard Barolli |
| 2022 | CISIS | A Fuzzy-Based System for Handover in 5G Wireless Networks Considering Network Slicing Constraints. | Phudit Ampririt, Ermioni Qafzezi, Kevin Bylykbashi, Makoto Ikeda, Keita Matsuo, Leonard Barolli |
| 2022 | CISIS | Unnecessary Maneuvers as a Determinant of Driver Impatience in VANETs: Implementation and Evaluation of a Fuzzy-based System. | Kevin Bylykbashi, Ermioni Qafzezi, Phudit Ampririt, Elis Kulla, Leonard Barolli |
| 2021 | AINA | A Fuzzy-Based Scheme for Admission Control in 5G Wireless Networks: Improvement of Slice QoS Considering Slice Reliability as a New Parameter. | Phudit Ampririt, Ermioni Qafzezi, Kevin Bylykbashi, Makoto Ikeda, Keita Matsuo, Leonard Barolli |
| 2021 | AINA | A QoS-Aware Fuzzy-Based System for Assessment of Edge Computing Resources in SDN-VANETs. | Ermioni Qafzezi, Kevin Bylykbashi, Phudit Ampririt, Makoto Ikeda, Keita Matsuo, Leonard Barolli |
| 2021 | CISIS | A New Scheme for Slice Overloading Cost in 5G Wireless Networks Considering Fuzzy Logic. | Phudit Ampririt, Ermioni Qafzezi, Kevin Bylykbashi, Makoto Ikeda, Keita Matsuo, Leonard Barolli |
| 2020 | CISIS | Resource Management in SDN-VANETs Using Fuzzy Logic: Effect of Data Complexity on Coordination of Cloud-Fog-Edge Resources. | Ermioni Qafzezi, Kevin Bylykbashi, Makoto Ikeda, Keita Matsuo, Leonard Barolli, Makoto Takizawa |
| 2019 | AINA | A Secure and Trustworthy Intelligent System for Clustering in VANETs Using Fuzzy Logic. | Kevin Bylykbashi, Yi Liu, Donald Elmazi, Keita Matsuo, Makoto Ikeda, Leonard Barolli |
| 2019 | AINA | Performance Evaluation of Routing Protocols in DTNs Considering Different Mobility Models. | Evjola Spaho, Klodian Dhoska, Kevin Bylykbashi, Leonard Barolli, Vladi Kolici, Makoto Takizawa |
| 2019 | CISIS | Implementation of a Fuzzy-Based Simulation System and a Testbed for Improving Driving Conditions in VANETs. | Kevin Bylykbashi, Donald Elmazi, Keita Matsuo, Makoto Ikeda, Leonard Barolli |
| 2018 | AINA | A Fuzzy-Based System for Selection of IoT Devices in Opportunistic Networks Considering IoT Device Storage, Waiting Time and Node Centrality Parameters. | Miralda Cuka, Donald Elmazi, Kevin Bylykbashi, Evjola Spaho, Makoto Ikeda, Leonard Barolli |
| 2018 | AINA | Selection of Actor Nodes in Wireless Sensor and Actor Networks: A Fuzzy-Based Approach Considering Number of Obstacles as New Parameter. | Donald Elmazi, Miralda Cuka, Kevin Bylykbashi, Evjola Spaho, Makoto Ikeda, Leonard Barolli |
| 2018 | AINA | Implementation of an IoT-Based E-Learning Testbed: Performance Evaluation Using Mean-Shift Clustering Approach Considering Four Types of BrainWaves. | Keita Matsuo, Masafumi Yamada, Kevin Bylykbashi, Miralda Cuka, Yi Liu, Leonard Barolli |