Gupta Osho, Goyal Nitin, Anand Divya, Kadry Seifedine, Nam Yunyoung, Singh Aman
Chitkara University Institute of Engineering and Technology, Chitkara UniversityPunjabIndia.
Department of Computer Science and EngineeringLovely Professional UniversityPhagwara144411India.
IEEE Access. 2020 Jul 6;8:122959-122974. doi: 10.1109/ACCESS.2020.3007502. eCollection 2020.
Underwater wireless sensor networks (UWSNs) is emerging as an advance terminology for monitoring and controlling the underwater aquatic life. This technology determines the undiscovered resources present in the water through computational intelligence (CI) techniques. CI here pertains to the capability of a system to acquire a specific task from data or experimental surveillance below the water. In today's time data is considered as the identity for everything that exists in nature, whether that data is related to human beings, machines or any type of device like internet of underwater things (IoUT). The collected data should be correct, complete and fulfill the requirements of a particular task to be done. Underwater data collection is very tough because of sensors mobility due to water drift 3 meters/sec, crest and trough. A lot of packet drop also exists due to underwater conditions that hurdles the data collection process. Various techniques already exists for efficient collection of data below the water but these are not properly classified. This manuscript has summarized the concept of data collection in UWSN along with its classification based on routing. Also, a short discussion about existence of CORONA below the water along with water purification is carried out. Furthermore, some data routing approaches are also analyzed on the basis of quality of service parameters and the current challenges to be tackled during data collection are also discussed.
水下无线传感器网络(UWSNs)作为一种用于监测和控制水下水生生物的先进术语正在兴起。这项技术通过计算智能(CI)技术确定水中存在的未被发现的资源。这里的CI指的是系统从水下的数据或实验监测中获取特定任务的能力。在当今时代,数据被视为自然界中存在的一切事物的标识,无论该数据是与人类、机器还是任何类型的设备(如水下物联网(IoUT))相关。收集到的数据应该是正确、完整的,并且满足要完成的特定任务的要求。由于传感器因每秒3米的水流漂移、波峰和波谷而具有移动性,水下数据收集非常困难。由于水下条件导致大量数据包丢失,这阻碍了数据收集过程。已经存在各种用于在水下高效收集数据的技术,但这些技术没有得到恰当的分类。本手稿总结了水下无线传感器网络中数据收集的概念及其基于路由的分类。此外,还对水下冠状病毒的存在以及水净化进行了简短讨论。此外,还根据服务质量参数分析了一些数据路由方法,并讨论了数据收集过程中要应对的当前挑战。