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Traffic And Security Using Randomized Dispersive Routes In Heterogeneous Sensor Network

机译:异构传感器网络中使用随机分散路径的流量和安全性

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Generally traffic and the sensor network security have many challenges in the transmission of data in the network. The existing schemes consider homogeneous sensor networks which have poor performance and scalability. Due to many-to-one traffic pattern, sensors may communicate with small portion of its neighbours. Key management is the critical process in sensor nodes to secure the data. Most existing schemes establish shared keys for all the sensors no matter whether they are communicating or not. Hence it leads to large storage overhead. Another problem in sensor network is compromised node attack and denial of service attack which occurs because of its wireless nature. Existing multi path routing algorithms are vulnerable to these attacks. So once an adversary acquires the routing algorithm, it can compute the same routes known to the source, and hence endanger all information sent over these routes. If an adversary performs node compromise attack, they can easily get the encryption/ decryption keys used by that node and hence they can intercept the information easily. In this paper we are proposing a key management scheme which only establishes shared keys with their communicating neighbour and a mechanism to generate randomized multipath routes for secure transmission of data to the sink. Here we are adopting heterogeneous sensor networks and we are utilizing elliptic curve cryptography for efficient key management which is more efficient, scalable, and highly secure and reduces communication overhead. The routes generated by our mechanism are highly dispersive, energy efficient and making them quite capable of bypassing the back holes at low energy cost.
机译:通常,流量和传感器网络安全性在网络中的数据传输中面临许多挑战。现有方案考虑了性能和可伸缩性较差的同类传感器网络。由于多对一的流量模式,传感器可能会与其附近的一小部分进行通信。密钥管理是传感器节点中确保数据安全的关键过程。大多数现有方案都为所有传感器建立共享密钥,无论它们是否正在通信。因此,这导致大量的存储开销。传感器网络中的另一个问题是由于其无线特性而导致的节点攻击和拒绝服务攻击受到损害。现有的多路径路由算法容易受到这些攻击。因此,一旦对手获取了路由算法,它就可以计算出源已知的相同路由,从而危害通过这些路由发送的所有信息。如果对手进行节点入侵攻击,他们可以轻松获取该节点使用的加密/解密密钥,因此他们可以轻松拦截信息。在本文中,我们提出了一种密钥管理方案,该方案仅与与其通信的邻居建立共享密钥,并且提供了一种机制来生成随机的多路径路由,以将数据安全地传输到接收器。在这里,我们采用异构传感器网络,并且利用椭圆曲线密码术进行有效的密钥管理,从而更高效,可扩展,高度安全并减少了通信开销。我们的机制所产生的路线具有高度分散性,高能效,并使其能够以较低的能源成本绕过后孔。

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