{"title":"Encryption Algorithms based on Security in IoT (Internet of Things)","authors":"Amanpreet Kaur, Gurpreet Singh","doi":"10.1109/ISPCC53510.2021.9609495","DOIUrl":null,"url":null,"abstract":"The Internet is evolving everywhere and expanding its entity globally. The IoT(Internet of things) is a new and interesting concept introduced in this world of internet. Generally it is interconnected computing device which can be embedded in our daily routine objects through which we can send and receive data. It is beyond connecting computers and laptops only although it can connect billion of devices. It can be described as reliable method of communication that also make use of other technologies like wireless sensor, QR code etc. IoT (Internet of Things) is making everything smart with use of technology like smart homes, smart cities, smart watches. In this chapter, we will study the security algorithms in IoT (Internet of Things) which can be achieved with encryption process. In the world of IoT, data is more vulnerable to threats. So as to protect data integrity, data confidentiality, we have Light weight Encryption Algorithms like symmetric key cryptography and public key cryptography for secure IoT (Internet of Things) named as Secure IoT. Because it is not convenient to use full encryption algorithms that require large memory size, large program code and larger execution time. Light weight algorithms meet all resource constraints of small memory size, less execution time and efficiency. The algorithms can be measured in terms of key size, no of blocks and algorithm structure, chip size and energy consumption. Light Weight Techniques provides security to smart object networks and also provides efficiency. In Symmetric Key Cryptography, two parties can have identical keys but has some practical difficulty. Public Key Cryptography uses both private and public key which are related to each other. Public key is known to everyone while private key is kept secret. Public Key cryptography method is based on mathematical problems. So, to implement this method, one should have a great expertise.","PeriodicalId":113266,"journal":{"name":"2021 6th International Conference on Signal Processing, Computing and Control (ISPCC)","volume":"5 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2021-10-07","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2021 6th International Conference on Signal Processing, Computing and Control (ISPCC)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/ISPCC53510.2021.9609495","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The Internet is evolving everywhere and expanding its entity globally. The IoT(Internet of things) is a new and interesting concept introduced in this world of internet. Generally it is interconnected computing device which can be embedded in our daily routine objects through which we can send and receive data. It is beyond connecting computers and laptops only although it can connect billion of devices. It can be described as reliable method of communication that also make use of other technologies like wireless sensor, QR code etc. IoT (Internet of Things) is making everything smart with use of technology like smart homes, smart cities, smart watches. In this chapter, we will study the security algorithms in IoT (Internet of Things) which can be achieved with encryption process. In the world of IoT, data is more vulnerable to threats. So as to protect data integrity, data confidentiality, we have Light weight Encryption Algorithms like symmetric key cryptography and public key cryptography for secure IoT (Internet of Things) named as Secure IoT. Because it is not convenient to use full encryption algorithms that require large memory size, large program code and larger execution time. Light weight algorithms meet all resource constraints of small memory size, less execution time and efficiency. The algorithms can be measured in terms of key size, no of blocks and algorithm structure, chip size and energy consumption. Light Weight Techniques provides security to smart object networks and also provides efficiency. In Symmetric Key Cryptography, two parties can have identical keys but has some practical difficulty. Public Key Cryptography uses both private and public key which are related to each other. Public key is known to everyone while private key is kept secret. Public Key cryptography method is based on mathematical problems. So, to implement this method, one should have a great expertise.
互联网在世界各地不断发展,并在全球范围内扩大其实体。物联网(Internet of things)是在互联网世界中引入的一个有趣的新概念。一般来说,它是一种相互连接的计算设备,可以嵌入到我们的日常物品中,通过它我们可以发送和接收数据。它不仅仅是连接电脑和笔记本电脑,尽管它可以连接数十亿台设备。它可以被描述为可靠的通信方法,也利用了其他技术,如无线传感器,QR码等。IoT(物联网)通过使用智能家居、智能城市、智能手表等技术,使一切变得智能。在本章中,我们将研究IoT(物联网)中的安全算法,这些算法可以通过加密过程实现。在物联网的世界里,数据更容易受到威胁。为了保护数据的完整性,数据的机密性,我们有轻量级的加密算法,如对称密钥加密和公钥加密,用于安全物联网,称为安全物联网。因为使用需要大内存、大程序代码和大执行时间的全加密算法不方便。轻量级算法满足内存小、执行时间短、效率高等资源约束。这些算法可以从密钥大小、块数和算法结构、芯片大小和能耗等方面来衡量。轻量级技术为智能对象网络提供了安全性,同时也提高了效率。在对称密钥加密中,双方可以拥有相同的密钥,但存在一些实际困难。公钥密码学使用的是相互关联的私钥和公钥。公钥是人人都知道的,私钥是保密的。公钥加密方法是基于数学问题的。因此,要实现这种方法,一个人应该有很好的专业知识。