Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

LC-DFSA: Low Complexity Dynamic Frame Slotted Aloha Anti-Collision Algorithm for RFID System

View through CrossRef
With the rapid development of the Internet of Things (IoT), the radio frequency identification (RFID) system becomes increasingly important. Tag identification is a basic problem of the RFID system, whose purpose is to inventory tags. However, in recent years, it requires a very short time for massive tag identification, which brings serious challenges. The traditional Aloha based anti-collision algorithms have disadvantages of either low efficiency or high complexity. Therefore, this article proposes a low complexity dynamic frame slotted Aloha (DFSA) anti-collision algorithm, named LC-DFSA. The reader can estimate the range of tag numbers according to the last frame size, the number of successful slots and the ratio of idle slots. Then the optimal frame size can be calculated. Complexity analysis is deployed in this article, and we validate the correctness of the analysis. Through our simulations, LC-DFSA outperforms other schemes in both the average access efficiency and the algorithm complexity. It also can be conveniently applied to engineering implementations.
Title: LC-DFSA: Low Complexity Dynamic Frame Slotted Aloha Anti-Collision Algorithm for RFID System
Description:
With the rapid development of the Internet of Things (IoT), the radio frequency identification (RFID) system becomes increasingly important.
Tag identification is a basic problem of the RFID system, whose purpose is to inventory tags.
However, in recent years, it requires a very short time for massive tag identification, which brings serious challenges.
The traditional Aloha based anti-collision algorithms have disadvantages of either low efficiency or high complexity.
Therefore, this article proposes a low complexity dynamic frame slotted Aloha (DFSA) anti-collision algorithm, named LC-DFSA.
The reader can estimate the range of tag numbers according to the last frame size, the number of successful slots and the ratio of idle slots.
Then the optimal frame size can be calculated.
Complexity analysis is deployed in this article, and we validate the correctness of the analysis.
Through our simulations, LC-DFSA outperforms other schemes in both the average access efficiency and the algorithm complexity.
It also can be conveniently applied to engineering implementations.

Related Results

Towards zero-power wireless machine-to-machine networks
Towards zero-power wireless machine-to-machine networks
This thesis aims at contributing to overcome two of the main challenges for the deployment of M2M networks in data collection scenarios for the Internet of Things: the management o...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
ALOHA Protocols
ALOHA Protocols
Abstract ALOHA protocols deal with largely uncoordinated packet transmissions by multiple senders, where the senders all learn of success or collision via a common feedba...
LoRaWAN Anti-collision Algorithm Based on Dynamic Frame-slotted ALOHA
LoRaWAN Anti-collision Algorithm Based on Dynamic Frame-slotted ALOHA
Abstract With the exponential growth of IoT devices, new challenges have been placed on the scalability and reliability of LoRa networks. At present, the collision p...
Business value of RFID‐enabled healthcare transformation projects
Business value of RFID‐enabled healthcare transformation projects
PurposeThis paper aims to assess the business value realised from radio frequency identification (RFID)‐enabled healthcare transformation projects as compared with other industries...
Design of a UAV for Autonomous RFID-Based Dynamic Inventories Using Stigmergy for Mapless Indoor Environments
Design of a UAV for Autonomous RFID-Based Dynamic Inventories Using Stigmergy for Mapless Indoor Environments
Unmanned aerial vehicles (UAVs) and radio frequency identification (RFID) technology are becoming very popular in the era of Industry 4.0, especially for retail, logistics, and war...
Aloha State Apparatuses
Aloha State Apparatuses
The spirit of aloha is pervasive in Hawai’i, and it is mobilized to sell everything from hula skirts to fantasies of diversity to plumbing services. Loosely defined as love, aloha ...
Managing Tag Collision in RFID Data Streams using Smart Tag Anti-Collision Techniques
Managing Tag Collision in RFID Data Streams using Smart Tag Anti-Collision Techniques
Radio Frequency Identification (RFID) is considered an emerging technology for advancing a wide range of applications, such as supply chain management and distribution. However, de...

Back to Top