S. Alsamhi, Hasan Mohsen Aljabali, Mohd Najim, A. Srivastava, Mohd Samar Ansari, Liang Zhao, Sau Van Nguyen Van, S. Gupta, Amr A. Alammari, Akram Hatem Saber, M. Hebah, Marwan Ahmed Abdullah Alasali
{"title":"Tethered Balloon Technology for Green Communication in Smart Cities and Healthy Environment","authors":"S. Alsamhi, Hasan Mohsen Aljabali, Mohd Najim, A. Srivastava, Mohd Samar Ansari, Liang Zhao, Sau Van Nguyen Van, S. Gupta, Amr A. Alammari, Akram Hatem Saber, M. Hebah, Marwan Ahmed Abdullah Alasali","doi":"10.1109/ICOICE48418.2019.9035189","DOIUrl":null,"url":null,"abstract":"The development and adopting of advanced communication technologies provide mobile users more convenience to connect any wireless network anytime and anywhere. Therefore, a large number of base stations (BS) are demanded keeping users connectivity, enhancing network capacity, and guarantee a sustained users Quality of Experiences (QoS). However, increasing the number of BS leads to an increase in the ecological ad radiation hazards. In order to green communication, many factors should be taken into consideration, i.e., saving energy, guarantee QoS, and reducing pollution hazards. Therefore, we propose tethered balloon technology that can replace a large number of BS and reduce ecological and radiation hazards due to its high altitude and feasible green and healthy broadband communication. The main contribution of this paper is to deploy tethered balloon technology at different altitude and measure the power density. Furthermore, we evaluate the measurement of power density from different height of tethered balloon comparison with traditional wireless communication technologies. The simulation results showed that tethered balloon technology can deliver green communication effectively and efficiently without any hazardous impacts.","PeriodicalId":109414,"journal":{"name":"2019 First International Conference of Intelligent Computing and Engineering (ICOICE)","volume":"19 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"11","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2019 First International Conference of Intelligent Computing and Engineering (ICOICE)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/ICOICE48418.2019.9035189","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 11
Abstract
The development and adopting of advanced communication technologies provide mobile users more convenience to connect any wireless network anytime and anywhere. Therefore, a large number of base stations (BS) are demanded keeping users connectivity, enhancing network capacity, and guarantee a sustained users Quality of Experiences (QoS). However, increasing the number of BS leads to an increase in the ecological ad radiation hazards. In order to green communication, many factors should be taken into consideration, i.e., saving energy, guarantee QoS, and reducing pollution hazards. Therefore, we propose tethered balloon technology that can replace a large number of BS and reduce ecological and radiation hazards due to its high altitude and feasible green and healthy broadband communication. The main contribution of this paper is to deploy tethered balloon technology at different altitude and measure the power density. Furthermore, we evaluate the measurement of power density from different height of tethered balloon comparison with traditional wireless communication technologies. The simulation results showed that tethered balloon technology can deliver green communication effectively and efficiently without any hazardous impacts.
先进通信技术的发展和采用为移动用户随时随地连接任何无线网络提供了更多的便利。因此,需要大量的基站来保持用户的连通性,增强网络容量,并保证用户持续的QoS (Quality of Experiences)。然而,BS数量的增加导致生态和辐射危害的增加。要实现绿色通信,需要考虑节能、保证QoS、减少污染危害等诸多因素。因此,我们提出系绳气球技术,该技术海拔高,可行的绿色健康宽带通信,可替代大量BS,减少生态和辐射危害。本文的主要贡献是在不同高度部署系留气球技术并测量功率密度。此外,我们评估了从不同高度的系留气球测量功率密度与传统无线通信技术的比较。仿真结果表明,系留气球技术能够有效、高效地实现绿色通信,且不会产生有害影响。