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Wireless Sensor Networks’ Challenges and Future Prospects

机译:无线传感器网络的挑战和未来前景

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'Application should shape and form the technology' this statement is consistent with fact or reality for Wireless Sensor Network (WSN). WSN has become one of the technologies for the future. Advancements in communication and computing technologies make it possible to fabricate sensor nodes, which are small in size and reduced in cost and at the same time consume very less energy while operational. It is also possible to deploy them very easily. Such sensor nodes are involved in almost every field of life. These sensor nodes can cooperate with each other and can give their mutual consent to form WSN in an ad-hoc mode to achieve particular objective. WSNs are special case of wireless ad-hoc network. In this paper, overview of WSN is given before explaining wireless networks. WSNs support various monitoring and tracking applications. Details of the application domain is also given to understand the wide spectrum of applications supported by WSNs. Resource constraints pertaining to WSNs is also discussed while considering various applications. Apart from resource constraints, lower power consumption, prolonged network lifetime, accurate localization, lower delay, and lower cost are the key design requirements of WSNs. As WSN is a special case of wireless ad-hoc networks some of the challenges pertaining to ad-hoc networks are common with WSNs while due to resource constraints of WSNs some of them are not. Due to resource constraint nature of the WSNs there are few other challenges that are needed to be dealt with. These challenges are listed with its details so reader can understand how to deal with them. Finally, some open research issues are examined for further research. Applications of WSN use random deployment method as most of the time phenomenon is inaccessible and thus replacing batteries is not possible. For this reason energy is the scarce and invaluable resource for WSNs. Concern is given to this scarce resource during fabrication of sensor nodes but still energy efficiency is the prime concern for WSNs. This paper gives comprehensive review of WSN’s application, challenges and its future prospects.
机译:“应用程序应塑造并形成技术”这一说法与无线传感器网络(WSN)的事实或事实相符。 WSN已成为未来的技术之一。通信和计算技术的进步使得制造传感器节点成为可能,这些传感器节点尺寸小且成本降低,同时在运行时消耗的能量非常少。也可以非常容易地部署它们。这样的传感器节点几乎涉及生活的每个领域。这些传感器节点可以彼此协作,并且可以相互同意以临时模式形成WSN以实现特定目的。 WSN是无线自组织网络的特例。本文在解释无线网络之前先概述了WSN。 WSN支持各种监视和跟踪应用程序。还提供了应用程序域的详细信息,以了解WSN支持的各种应用程序。在考虑各种应用的同时,还讨论了与WSN相关的资源约束。除了资源限制,更低的功耗,更长的网络寿命,准确的定位,更低的延迟和更低的成本是WSN的关键设计要求。由于WSN是无线ad-hoc网络的特例,与ad-hoc网络有关的一些挑战在WSN中很常见,而由于WSN的资源限制,其中一些挑战并非如此。由于WSN的资源限制性质,几乎没有其他需要解决的挑战。这些挑战及其详细信息已列出,因此读者可以了解如何应对。最后,对一些未解决的研究问题进行了研究,以进行进一步研究。 WSN的应用使用随机部署方法,因为在大多数情况下无法访问现象,因此无法更换电池。因此,能源是WSN的稀缺资源和宝贵资源。在传感器节点的制造过程中,这种稀缺资源引起了人们的关注,但能源效率仍然是WSN的主要关注点。本文全面回顾了WSN的应用,挑战和未来前景。

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