Abstract

Industrial Internet of things (IIOT) applications comprises the wearable sensor devices for human activity monitoring; these devices generate the continuous data at higher data rate and it is powered through the battery. Hence, it restricts the uses of wireless protocol such as IEEE 802.15.4 and BLE (Bluetooth Low Energy). Moreover, there are promising technologies such as TSCH (Time Slotted Channel Hoping) MAC (Medium Access Control) which can be deployed in the different environment, which are prone to interference. In this research work we focus on overcoming the issue for designing the AS (Adaptive Scheduling) for TSCH – MANET (Mobile Adhoc Network); furthermore it is very difficult to design scheduling technique considering the unpredictable nature of data source location and wireless link, this results in waste of reserve resource. Moreover proposed Adaptive Scheduling model allows the both slots i.e. shared and dedicated slots, it also allows the communicating device to active the assigned slots adaptively. Hence, our proposed AS model achieves the higher overall access fairness, minimal idle listening overhead, higher packet deliver rate; further to cope up with the higher traffic load MANET device can activate the additional slots dynamically. Moreover, the outcome of Adaptive Scheduling model shows the higher data transmission and lower energy consumption.

Highlights

  • Modern applications service of communication requires different characteristics such as scalability, adaptability, dependability and low idleness, to develop such model it requires high maintenance and high cost

  • In 6TiSCH model, the data link layer is available on the IEEE 802.15.4-TSCH, in 802.15.4 TSCH MAC, MANET adopts the scheduling technique and it synchronizes on the frame organization

  • This paper presents the novel AS aka Adaptive Scheduling model for mobile Adhoc Network that is TSCH enabled

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Summary

INTRODUCTION

Modern applications service of communication requires different characteristics such as scalability, adaptability, dependability and low idleness, to develop such model it requires high maintenance and high cost. Retransmission amount is random, further In case of High Bandwidth Network the packet reception capability of the MANET Device is utilized to its full potential This phenomena occurs mainly due to the various aspects, first aspect is that it is highly improbable to forecast the data rate and mobile location, second aspect is that it is very difficult to adopt and deal with dynamic nature of the wireless network, www.ijacsa.thesai.org (IJACSA) International Journal of Advanced Computer Science and Applications, Vol 11, No 3, 2020 third it is very difficult to find the change in route. The main advantage of Adaptive Scheduling is that it provisions for the high traffic application and this does not have any effect on the energy consumption of MANET, this is achieved through activating the additional slots dynamically and it does not require the reorganizing of new schedule. The conclusion with future research direction of work is discussed

ADAPTIVE SCHEDULING MODEL FOR TSCH ENABLED MOBILE ADHOC NETWORK
System Model
Energy Consumption Model
Energy Minimization Tradeoff Model
AND DISCUSSION
Energy Consumption Perforamcne Evaluation
Throughput and Packet Delivery Rate Perforamcne Evaluation
Access Fairness Performance Perforamcne Evaluation
Comparision with Existing Model
Findings
CONCLUSION
Full Text
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