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July 2017 Project: IEEE P802.15 Working Group for Wireless Personal Area Networks (WPANs) Submission Title: [Suitability Evaluation of MAC Schemes] Date.

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Presentation on theme: "July 2017 Project: IEEE P802.15 Working Group for Wireless Personal Area Networks (WPANs) Submission Title: [Suitability Evaluation of MAC Schemes] Date."— Presentation transcript:

1 July 2017 Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title: [Suitability Evaluation of MAC Schemes] Date Submitted: [9 July, 2017] Source: [Joerg ROBERT] Company [Friedrich-Alexander University Erlangen-Nuernberg] Address [Am Wolfsmantel 33, Erlangen, Germany] Voice:[ ], FAX: [ ], Re: [] Abstract: [This document presents the suitability evaluation for different MAC schemes that may be used for LPWAN.] Purpose: [Presentation within IG LPWA] Notice: This document has been prepared to assist the IEEE P It is offered as a basis for discussion and is not binding on the contributing individual(s) or organization(s). The material in this document is subject to change in form and content after further study. The contributor(s) reserve(s) the right to add, amend or withdraw material contained herein. Release: The contributor acknowledges and accepts that this contribution becomes the property of IEEE and may be made publicly available by P Joerg ROBERT, FAU Erlangen-Nuernberg

2 Suitability Evaluation of MAC Schemes
July 2017 Suitability Evaluation of MAC Schemes Joerg Robert, FAU Erlangen-Nuernberg Joerg Robert, FAU Erlangen-Nuernberg

3 doc.: IEEE 802.15-<doc#>
<month year> doc.: IEEE <doc#> July 2017 ALOHA ( I / II ) Device immediately starts transmission when it has data to transmit, it does not do listen before talk (LBT) Performance can be improved is used in addition to diversity techniques (e.g. DSSS, FHSS) Pros Very simple No coordination required Cons High probability of collisions, especially in case of long data LBT may be required by frequency regulation <author>, <company>

4 ALOHA ( II / II ) Interference Model Dense Medium Low None
July 2017 ALOHA ( II / II ) Interference Model Dense Medium Low None Frequency Regulation ETSI FCC ETSI/FCC None Data Length <= 16 bytes <= 64 bytes <= 256 bytes > 256 bytes Data Period Occasionally, less than 1/day Occasionally 1/day Occasionally 1/hour Occasionally, more than 1/hour Periodically 1/day Periodically 1/hour Periodically, more than 1/hour July 2017 Active Interfering Users Very High High Medium Low Communication Mode Uplink Downlink/Uplink Uplink / Broadcast Downlink Power Supply CR 2025 2xAA Energy Harvesting External Joerg Robert, FAU Erlangen-Nuernberg

5 doc.: IEEE 802.15-<doc#>
<month year> doc.: IEEE <doc#> July 2017 Slotted ALOHA ( I / II ) When the device has data to transmit it starts the transmission in the next slot Pros Improved performance wrt. ALOHA Cons High probability of collisions, especially in case of long data Synchronization of the network required  additional power consumption <author>, <company>

6 Slotted ALOHA ( II / II ) Interference Model Dense Medium Low None
July 2017 Slotted ALOHA ( II / II ) Interference Model Dense Medium Low None Frequency Regulation ETSI FCC ETSI/FCC None Data Length <= 16 bytes <= 64 bytes <= 256 bytes > 256 bytes Data Period Occasionally, less than 1/day Occasionally 1/day Occasionally 1/hour Occasionally, more than 1/hour Periodically 1/day Periodically 1/hour Periodically, more than 1/hour July 2017 Active Interfering Users Very High High Medium Low Communication Mode Uplink Downlink/Uplink Uplink / Broadcast Downlink Power Supply CR 2025 2xAA Energy Harvesting External Joerg Robert, FAU Erlangen-Nuernberg

7 doc.: IEEE 802.15-<doc#>
<month year> doc.: IEEE <doc#> July 2017 CSMA ( I / II ) Device senses whether the channel is used to avoid collisions, it only transmits if it senses the channel as free Pros Improved performance wrt. (Slotted) ALOHA Required by regulation (e.g. ETSI) Cons Performance in LPWAN limited due to hidden node problem Requires receiver in node <author>, <company>

8 CSMA ( II / II ) Interference Model Dense Medium Low None
July 2017 CSMA ( II / II ) Interference Model Dense Medium Low None Frequency Regulation ETSI FCC ETSI/FCC None Data Length <= 16 bytes <= 64 bytes <= 256 bytes > 256 bytes Data Period Occasionally, less than 1/day Occasionally 1/day Occasionally 1/hour Occasionally, more than 1/hour Periodically 1/day Periodically 1/hour Periodically, more than 1/hour July 2017 Active Interfering Users Very High High Medium Low Communication Mode Uplink Downlink/Uplink Uplink / Broadcast Downlink Power Supply CR 2025 2xAA Energy Harvesting External Add: unpredictable latency Joerg Robert, FAU Erlangen-Nuernberg

9 Fully Synchronized Network ( I / II )
<month year> doc.: IEEE <doc#> July 2017 Fully Synchronized Network ( I / II ) Base-station fully synchronizes controls the network, e.g. by using a super-frame structure with beacons Pros Collision can be controlled by the network Cons High synchronization overhead Traffic of base-station may get in conflict with frequency regulations Devices have to listen for beacons  increased energy consumption Unclear behavior is base-station is interfered by other users Potentially complex configuration <author>, <company>

10 Fully Synchronized Network ( II / II )
July 2017 Fully Synchronized Network ( II / II ) Interference Model Dense Medium Low None Frequency Regulation ETSI FCC ETSI/FCC None Data Length <= 16 bytes <= 64 bytes <= 256 bytes > 256 bytes Data Period Occasionally, less than 1/day Occasionally 1/day Occasionally 1/hour Occasionally, more than 1/hour Periodically 1/day Periodically 1/hour Periodically, more than 1/hour July 2017 Active Interfering Users Very High High Medium Low Communication Mode Uplink Downlink/Uplink Uplink / Broadcast Downlink Power Supply CR 2025 2xAA Energy Harvesting External Joerg Robert, FAU Erlangen-Nuernberg

11 Any Questions or Comments?
July 2017 Any Questions or Comments? Joerg Robert, FAU Erlangen-Nuernberg


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