Simple and Practically Efficient Fault-tolerant 2-hop Cover Labelings
نویسندگان
چکیده
A labeling scheme is a method to retrieve some global property of a graph by exploiting (in a distributed fashion) the information stored, in the form of (short) labels, at its vertices. A classic question in the area is that of labeling the vertices in order to infer the distance between any pair of them, or alternatively to retrieve a corresponding shortest path. On such purpose, among the various solutions, a 2-hop cover distance/path-reporting labeling scheme is based on the idea of representing the shortest paths in a graph as the concatenation at an intermediate so-called hub vertex of the two shortest paths emanating from the corresponding end vertices. The difficult point here is to find a small-size set of hub vertices covering a shortest path for each pair of vertices in the graph, since in this way the corresponding labeling will be compact, but practical efficient solutions are known in the literature. In this paper, we present a simple and efficient way of enriching this successful scheme in order to make it resilient to the failure of a subset of at most k ≥ 1 edges in the graph, by exploiting the notion of so-called edge-independent spanning trees. Depending on k, we provide different strategies and analyze the corresponding performances. In addition, to assess the practical effectiveness of our method, we provide an experimental evaluation, conducted for the case k = 1. Our data confirms the new method to be really competitive when compared with the performance of the benchmark non-fault-tolerant scheme, equipped with a point-of-failure rerouting policy.
منابع مشابه
Novel efficient fault-tolerant full-adder for quantum-dot cellular automata
Quantum-dot cellular automata (QCA) are an emerging technology and a possible alternative for semiconductor transistor based technologies. A novel fault-tolerant QCA full-adder cell is proposed: This component is simple in structure and suitable for designing fault-tolerant QCA circuits. The redundant version of QCA full-adder cell is powerful in terms of implementing robust digital functions. ...
متن کاملNovel efficient fault-tolerant full-adder for quantum-dot cellular automata
Quantum-dot cellular automata (QCA) are an emerging technology and a possible alternative for semiconductor transistor based technologies. A novel fault-tolerant QCA full-adder cell is proposed: This component is simple in structure and suitable for designing fault-tolerant QCA circuits. The redundant version of QCA full-adder cell is powerful in terms of implementing robust digital functions. ...
متن کاملTopology control for fault-tolerant communication in wireless ad hoc networks
Fault-tolerant communication and energy efficiency are important requirements for future-generation wireless ad hoc networks, which are increasingly being considered also for critical application domains like embedded systems in automotive and aerospace. Topology control, which enables multi-hop communication between any two network nodes via a suitably constructed overlay network, is the prima...
متن کاملA Microprocessor-Based Hybrid Duplex Fault-Tolerant System
Reliability is one of the fundamental considerations in the design of industrial control equipment. The microprocessor-based Hybrid Duplex fault-tolerant System (HDS) proposed in this paper has high reliability to meet this demand although its hardware structure is simple. The hardware configuration of HDS and the fault tolerance of this system are described. The switching control strategies in...
متن کاملPower Efficient Wireless Sensor Networks with Distributed Transmission-Induced Space Spreading
Distributed multi-transmission is proposed for power-efficient and fault-tolerant multi-hop wireless sensor networks where a signal can be received and transmitted by multiple sensors. Multi-transmission with scrambling has advantages of both space-spreading and diversity. Efficient and robust blind equalization algorithms are developed. Network power efficiency can be greatly enhanced. Fault-t...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2017