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Energy Efficient Hierarchical Key Management Protocol

机译:节能等级管理协议

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A wireless sensor network (WSN) is a group of resource-constrained, inexpensive, tiny, and homogeneous or heterogeneous sensor nodes. The inherent nature of WSNs such that it makes them deployable in a variety of circumstances, which increases the interest towards them but at the same time poses tremendous challenges such as resource-constrained nodes, unattended operations, unknown topology and wireless communication links. Security in WSNs can be achieved with the help of various cryptographic operations. The strength of cryptographic system depends on the secrecy of the key it uses. So, a solid strong key management frame work is the prerequisite for the cryptographic primitive upon which other security primitives are built. To improve the energy efficiency and increase the resilience more effectively, an Energy Efficient Hierarchical Key management Protocol (EEHKMP) for hierarchical homogeneous WSN is proposed. In this protocol, a Differentiated random KPD (DKPD) process is employed for randomly deployed distributed WSN. Its main objective is to distribute different number of keys which are chosen randomly to different sensors in order to enhance the resilience of certain links such that the nodes can route through those links with higher resilience. This DKPD process divides the sensor nodes into different classes and pre-distributes the keys according to each class. Nodes with maximum residual energy and minimum distance are elected as cluster heads (CHs). The CH sets up the intra-cluster and inter-cluster routes with nodes having more shared keys. CH generates multiple random key shares to generate pair-wise key and transmits each key share to source and destination on each hop route, which is selected based on the cost function. Key shares are hop-by-hop encrypted / decrypted by a combination of all shared pre-distributed keys on that hop. Finally, a key update mechanism is presented to update the keys.
机译:无线传感器网络(WSN)是一组资源受限,廉价,微小和均匀或异质的传感器节点。 WSN的固有性质使其使它们能够在各种情况下部署,这增加了对它们的兴趣,但同时造成巨大的挑战,例如资源受限的节点,无人值守,未知的拓扑和无线通信链路。可以在各种加密操作的帮助下实现WSN中的安全性。密码系统的强度取决于它使用的密钥的保密。因此,坚实的强大重点管理框架工作是建立其他安全基元的加密原语的先决条件。为了提高能量效率并更有效地提高弹性,提出了一种用于分层均匀WSN的能量有效的分层关键管理协议(EEHKMP)。在该协议中,使用差异化随机KPD(DKPD)过程用于随机部署的分布式WSN。其主要目标是将随机选择的不同数量的键分布到不同的传感器,以增强某些链接的弹性,使得节点可以通过具有更高弹性的链接来路由。该DKPD进程将传感器节点划分为不同的类,并根据每个类预先分配键。具有最大剩余能量和最小距离的节点被选为群集头(CHS)。 CH设置具有具有更多共享密钥的节点的群集内部和群集间路由。 CH生成多个随机密钥共享,以生成对WISE键,并在每个跳路线上传输到源和目标的每个密钥共享,基于成本函数选择。按HOP-BY-HOP的跳跃/解密,通过该跳跃的所有共享预分布式密钥的组合进行加密/解密。最后,提出了一个关键更新机制以更新密钥。

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