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Proceedings ArticleDOI

Max-min d-cluster formation in wireless ad hoc networks

TLDR
A heuristic to form d-clusters in a wireless ad hoc network that tends to re-elect existing clusterheads even when the network configuration changes and has a tendency to evenly distribute the mobile nodes among the clusterheads, and evently distribute the responsibility of acting as clusterheads among all nodes.
Abstract
An ad hoc network may be logically represented as a set of clusters. The clusterheads form a d-hop dominating set. Each node is at most d hops from a clusterhead. Clusterheads form a virtual backbone and may be used to route packets for nodes in their cluster. Previous heuristics restricted themselves to 1-hop clusters. We show that the minimum d-hop dominating set problem is NP-complete. Then we present a heuristic to form d-clusters in a wireless ad hoc network. Nodes are assumed to have a non-deterministic mobility pattern. Clusters are formed by diffusing node identities along the wireless links. When the heuristic terminates, a node either becomes a clusterhead, or is at most d wireless hops away from its clusterhead. The value of d is a parameter of the heuristic. The heuristic can be run either at regular intervals, or whenever the network configuration changes. One of the features of the heuristic is that it tends to re-elect existing clusterheads even when the network configuration changes. This helps to reduce the communication overheads during transition from old clusterheads to new clusterheads. Also, there is a tendency to evenly distribute the mobile nodes among the clusterheads, and evently distribute the responsibility of acting as clusterheads among all nodes. Thus, the heuristic is fair and stable. Simulation experiments demonstrate that the proposed heuristic is better than the two earlier heuristics, namely the LCA and degree-based solutions.

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Proceedings ArticleDOI

Connected D-Hop Dominating Sets in Mobile Ad Hoc Networks

TL;DR: It is shown that the minimum d-hop connected dominating set problem is NP-complete for planar unit disk graphs with maximum degree 4.
Proceedings ArticleDOI

Limiting the impact of mobility on ad hoc clustering

TL;DR: A generalization of DMAC (GDMAC), a typical clustering protocol for mobile ad hoc networks, is considered where rules are established to decrease the number of cluster updates, and it is observed that GDMAC is effective in reducing the clustering overhead imposed by mobility, and hence its maintenance cost.
Journal ArticleDOI

A Single Mobile Target Tracking in Voronoi-based Clustered Wireless Sensor Network

TL;DR: An optimized barrier coverage and an energy-efficient clustering algorithm for forming Vonoroi-based Wireless Sensor Networks (WSN) and a mobile target tracking scheme (CTT&MAV) that takes full advantage of Voronoi-diagram boundary to improve detectability are proposed.
Journal ArticleDOI

Enhancement techniques incorporated in LEACH- a survey

TL;DR: A survey of various improvements made in LEACH that has produced different routing protocols for WSNs and highlight their features and addresses the other challenges of cluster-based routing protocols that need to be considered in future designs.

A Survey of Clustering Schemes for Mobile Ad-Hoc Network (MANET)

TL;DR: A comprehensive survey and classification of recently published clustering algorithm, which are classified based on their objectives for MANET's and highlights the defining clustering, the design goals of clustering algorithms, advantages and challenges facing clustering including cost issues.
References
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