An Augmentation of Topology Control Algorithm for Energy Saving in WSN Integrated into Street Lighting Control (original) (raw)

Energy Efficient Direction-Based Topology Control Algorithm for WSN

Wireless Sensor Network, 2020

A wireless sensor network consists of hundreds or thousands of small nodes which could either have a static or dynamic position. These nodes are deployed through normal or random distribution to report events of a particular area to the base station through sink nodes. Having limited onboard energy of sensor nodes, conservation of energy in wireless sensor network is necessary. For this purpose, a new algorithm is proposed titled Energy-Efficient-Direction-Based-Topology-Control-Algorithm (EEDBTC). In proposed algorithm, direction is the main concern whenever an event occurs the node will send data in the direction of base station so that less energy is consumed. The results of the same were compared with customary dense wireless sensor network, color based WSNs and it was observed that this algorithm is much better than previous topology control algorithms used.

Smart and Energy Efficient LED Street Light Control System using ZigBee Network

The world is converging towards wireless as a communication channel and at the same time facing energy and environmental problems. The solution is by mingling the information technology (IT) and power. Streetlights are among a city’s most important and expensive assets usually costs one third of the electricity bill. The proposed smart light control system outclasses the previous systems because it integrates the low power communication protocol ZigBee with the LED lights. The system reduces the power of the LED lights according to outside conditions of light intensity as it has the ability to dim the lights. The initial experimental results show that it saves remarkable power as compared to conventional systems. This efficiency increases even two fold by considering the advantage of remotely monitoring and controlling the lights through the centralized point. Thus the proposed system is the cost effective and efficient system satisfying the needs of the modern users.

Topology Control in Wireless Sensor Network: An Overview

International Journal of Computer Applications, 2014

Energy saving and improve the life time of the sensor node is main focus in the recent years. The most important technique used in wireless sensor networks to reduce energy consumption is Topology Control (i.e. control the topology by maintaining the communication links between network nodes to maintain the connectivity). In this article, first we overview the recent topology control techniques including future directions followed by performance metrics. Further, our overview help to identify a number of issues for achieving energy efficiency and network lifetime through topology control.

A COMPARATIVE STUDY OF PROPOSED TOPOLOGY CONTROL ALGORITHMS FOR ENERGY EFFICIENT WIRELESS SENSOR NETWORK

IJRET: International Journal of Research in Engineering and Technology eISSN: 2319-1163 | pISSN: 2321-7308, 2022

Recent years showed a wide range of applications in Wireless Sensor Networks (WSN). For a WSN, Topology Control is crucial to obtain an energy efficient network without affecting the connectivity and other properties. In this paper the sequence of strategies carried out to obtain a better scheme for a topology control in terms of energy is discussed. The results showed the effectiveness of the different approaches proposed. Comparison on one tier architecture and two tier architecture using the proposed methodology is also made. The future works discussed also gives a wider vision on the probabilities of the various schemas for the forthcoming years.

Reducing Energy Consumption in Single-Hop and Multi-Hop Topologies of Road Lighting Communication Network

2020

This study aims to make the wireless sensor network based on a linear topology required in road lighting energy-efficient using the proposed new methods. Because the physical installation of road lighting systems will result in costliness and time‐labour loss, the mentioned scenarios were cre‐ ated and analysed in a simulation design. Two new methods were proposed to organize the lighting sys‐ tem more quickly and to increase the speed perfor‐ mance of sensors that join the network and carrying the luminaire data. This is the proxy‐based network connection method and a new time‐division meth‐ od for the nodes’ common channel access. Energy consumption scenarios for lighting systems with 50, 100, 150, and 200 luminaires were analysed com‐ paratively during data exchange using wireless sen‐ sor networks. Accordingly, the classical method and the proposed novel method were evaluated for the single‐ and multi‐hop scenarios. In the communica‐ tion between luminaires, the proposed new met...

Flexible Wireless Sensor Network for smart lighting applications

2014 IEEE International Instrumentation and Measurement Technology Conference (I2MTC) Proceedings, 2014

Currently, there is a growing demand for energy efficient solutions in different areas. The improvement of the quality of service and the reduction of resource waste is the goal of new solutions. Smart grids, smart metering systems and smart distributed control systems are the most interesting results of the last years, going to the direction of a new concept: the Smart City. The smartness of these solutions relies of a pervasive communication infrastructure to move information from "production points" to "consuming points". This work is the description of the research project and development of enhance technologies for a smart, remotely controlled, street lighting system that is also able to include smart metering features. Even if a city delivers very different services, integrated, multi-service, systems have to be preferred thanks to their economical sustainability. The core of the project is an efficient routing strategy for large areas Wireless Sensor Network based on IEEE802.15.4 standard. This paper is focused on the development and performance assessment of the infrastructure for the remote control of the system and the validation in terms of average delivery delay of the measurement/control information.

An Energy Efficient WSN Based Traffic Safety And Lighting System

In this system we are providing the lighting and safety; also avoid the wastage of light energy. This paper describe the Wireless sensor network (WSN) in which system act as the node based controller that control the system using several node that we can control the whole system that uses other node as output and input consideration. In each module it has the system that has input/output controller section, controller section, communication section between the every node. The main concept of this paper is by using sensors we collect the data and further providing to microcontroller for processing purpose..

High Efficiency Hybrid In Telligent Street Lighting Using A Zigbee Network And Sensors 13 HIGH EFFICIENCY HYBRID IN TELLIGENT STREET LIGHTING USING A ZIGBEE NETWORK AND SENSORS

Zigbee based network devices which are efficient for street light management, measurement analysis of the performances of a control system. The combination of sensors used in public street lighting systems to control and maintain the street lighting system automatically. Different type of street light control systems are developed to reduce maintenance in operating light control system, so we designed intelligent street light control system by using Zigbee communication technique and combination of sensors The drawbacks of this conventional lighting system are its short transmission length, low transmission speed and that each street lighting area needs its own control unit which results in large numbers of modules needed so it will non-cost effectiveness for multi area lighting control .LED efficiency increase rapidly in recent years so we use LED for our street lighting since LEDs have the advantage as long-life low area utilizing the efficiency of lighting is 85 % and the conversion efficiency is 90 % the proposed Hybrid intelligent street lighting can optimize management and high efficiency of street lighting systems with the help of sensors.

Hierarchical lighting control in urban environments based on wireless sensor-actuator networks

Proceedings of the 6th WSEAS …, 2010

This paper proposes an efficient implementation of scalable and flexible street lighting control in urban environments. The purpose is to decrease the overall energy consumption without affecting safety. In a hierarchical three-level control strategy based on qualitative processing, the lower level is represented by wireless sensor-actuator network clusters that control individual street lamps, the second level and the highest, third-level, are represented by knowledge-based systems that implement efficient lighting strategies meant for different areas or for the entire city.

Remote-Control System of High Efficiency and Intelligent Street Lighting Using a ZigBee Network of Devices and Sensors

The proposed remote-control system can optimize management and efficiency of street lighting systems. It uses ZigBee-based wireless devices which enable more efficient street lamp-system management, thanks to an advanced interface and control architecture. It uses a sensor combination to control and guarantee the desired system parameters; the information is transferred point by point using ZigBee transmitters and receivers and is sent to a control terminal used to check the state of the street lamps and to take appropriate measures in case of failure.