Md Nadim

dblp:358/9337 · DBLP profile ↗
← Back
4ranked-venue papers
1as first author
4since 2021 · last 2025
0009-0006-6453-2403ORCID · verified

Domains — the database's venue-derived domains; a paper can count in several

Computer networks · 4 · 1 first-author · 4 since 2021

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer networks
3 papers
Cellular and mobile networks · 42% Wireless networking · 24% Internet architecture and protocols · 19%

Topics — the 11 heaviest of 14, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Wireless networking
wireless testbed
1.422024
Demo: Ara Pawr Wireless Living Lab for Smart and Connected Rural Communities · ICNP 2024
ARA PAWR: Wireless Living Lab for Smart and Connected Rural Communities · MobiCom 2023
Cellular and mobile networks › radio access networks
Open RAN
1.022024
Demo: Ara Pawr Wireless Living Lab for Smart and Connected Rural Communities · ICNP 2024
AraSync: Precision Time Synchronization in Rural Wireless Living Lab · MobiCom 2024
Internet architecture and protocols
network synchronization
0.812024
AraSync: Precision Time Synchronization in Rural Wireless Living Lab · MobiCom 2024
Cellular and mobile networks
next-generation wireless
0.812024
Demo: Ara Pawr Wireless Living Lab for Smart and Connected Rural Communities · ICNP 2024
Internet architecture and protocols › network synchronization
precision time protocol
0.812024
AraSync: Precision Time Synchronization in Rural Wireless Living Lab · MobiCom 2024
Cellular and mobile networks
radio access networks
0.812024
AraSync: Precision Time Synchronization in Rural Wireless Living Lab · MobiCom 2024
Internet of things and sensor networks
time synchronization
0.812024
AraSync: Precision Time Synchronization in Rural Wireless Living Lab · MobiCom 2024
Cellular and mobile networks
5g
0.712023
ARA PAWR: Wireless Living Lab for Smart and Connected Rural Communities · MobiCom 2023
Physical-layer communications › MIMO
MU-MIMO
0.212024
Demo: Ara Pawr Wireless Living Lab for Smart and Connected Rural Communities · ICNP 2024
Wireless networking › cognitive radio › white space communication
TV white space
0.212024
Demo: Ara Pawr Wireless Living Lab for Smart and Connected Rural Communities · ICNP 2024
Cellular and mobile networks
wireless backhaul
0.212023
ARA PAWR: Wireless Living Lab for Smart and Connected Rural Communities · MobiCom 2023

Methods — techniques the papers use, named apart from their topics

software-defined radio · 0.8measurement · 0.8clock offset analysis · 0.8COTS systems · 0.8TV white space · 0.7MU-MIMO · 0.7
YearPublicationVenuePosition
2025 Design and implementation of ARA wireless living lab for rural broadband and applications
Taimoor Ul Islam, Joshua Ofori Boateng, Md Nadim, Guoying Zu, Mukaram Shahid, Tianyi Zhang 0016, Salil Reddy, Wei Xu 0056, Ataberk Atalar, Vincent Lee, Yung-fu Chen, Evan Gossling, Elisabeth Permatasari, Christ Somiah, Owen Perrin, Zhibo Meng, Reshal Afzal, Sarath Babu 0001, Mohammed Soliman, Ali Hussain, Daji Qiao, Mai Zheng, Ozdal Boyraz, Anish Arora, Mohamed Y. Selim, Arsalan Ahmad, Myra B. Cohen, Mike Luby, Ranveer Chandra, James Gross, Kate Keahey, Hongwei Zhang 0001
Comput. Networks3
2024 Demo: Ara Pawr Wireless Living Lab for Smart and Connected Rural Communities
abstract
ARA is an at-scale Platform for Advanced Wireless Research (PAWR), specifically tailored to the unique community, application, and economic context of rural regions. It features the first-of-its-kind real-world implementation of long-distance, high-capacity wireless backhaul and access systems spanning over 30 km in diameter. Leveraging both software-defined radios and programmable Commercial Off-The-Shelf (COTS) systems, ARA orchestrates the wireless resources alongside the networking and compute resources for enabling end-to-end experiments involving user equipment, base stations, edge computing, and cloud infrastructure. Such an integration facilitates the coevolution of rural-focused wireless innovation and applications, while helping to advance the frontiers of advanced Next-G wireless systems such as Open RAN. As of summer 2024, ARA is publicly accessible with 7 base stations (BSes) and over 30 user equipment (UEs). In this demo, we share advanced wireless research experiments enabled by ARA, involving MU-MIMO in TV White Space (TVWS) bands, long-range mmWave and microwave backhaul communications, and open-source 5G NR protocol stacks such as srsRAN and OpenAirInterface (OAI).
Taimoor Ul Islam, Joshua Ofori Boateng, Md Nadim, Guoying Zu, Mukaram Shahid, Tianyi Zhang 0016, Salil Reddy, Wei Xu 0056, Ataberk Atalar, Vincent Lee, Evan Gossling, Elisabeth Permatasari, Zhibo Meng, Sarath Babu 0001, Mohammed Soliman, Ali Hussain, Daji Qiao, Mai Zheng, Ozdal Boyraz, Anish Arora, Mohamed Y. Selim, Arsalan Ahmad, Myra B. Cohen, Hongwei Zhang 0001
ICNP3
2024 AraSync: Precision Time Synchronization in Rural Wireless Living Lab
abstract
Time synchronization is a critical component in network operation and management, and it is also required by Ultra-Reliable, Low-Latency Communications (URLLC) in next-generation wireless systems such as those of 5G, 6G, and Open RAN. In this context, we design and implement AraSync as an end-to-end time synchronization system in the ARA wireless living lab to enable advanced wireless experiments and applications involving stringent time constraints. We make use of Precision Time Protocol (PTP) at different levels to achieve synchronization accuracy in the order of nanoseconds. Along with fiber networks, AraSync enables time synchronization across the AraHaul wireless x-haul network consisting of long-range, high-capacity mmWave and microwave links. In this paper, we present the detailed design and implementation of AraSync, including its hardware and software components and the PTP network topology. Further, we experimentally characterize the performance of AraSync from spatial and temporal dimensions. Our measurement and analysis of the clock offset and mean path delay show the impact of the wireless channel and weather conditions on the PTP synchronization accuracy.
Md Nadim, Taimoor Ul Islam, Salil Reddy, Tianyi Zhang 0016, Zhibo Meng, Reshal Afzal, Sarath Babu 0001, Arsalan Ahmad, Daji Qiao, Anish Arora, Hongwei Zhang 0001
MobiCom1
2023 ARA PAWR: Wireless Living Lab for Smart and Connected Rural Communities
abstract
As the Platform for Advanced Wireless Research (PAWR) in rural broadband, the ARA wireless living lab features the deployment of first-of-its-kind wireless access and backhaul platforms in real-world agriculture and rural settings, and preliminary experiments have demonstrated very promising results, e.g., up to 3.2 Gbps wireless access throughput and more than 10 Gbps throughput across a wireless backhaul link of over 10 km. ARA is expected to be publicly released for broad community use starting in September 2023. Through this demo, we plan to share, for the first time, with the wireless research community the transformative research experiments enabled by ARA. To stimulate discussion and community participation, we will demonstrate a few example experiments ranging from MU-MIMO in TV White Space (TVWS) bands to long-range mmWave and microwave backhaul communications, as well as open-source 5G NR protocol stacks such as srsRAN and OpenAirInterface.
Taimoor Ul Islam, Joshua Ofori Boateng, Guoying Zu, Mukaram Shahid, Md Nadim, Wei Xu 0056, Tianyi Zhang 0016, Salil Reddy, Ataberk Atalar, Yung-fu Chen, Sarath Babu 0001, Hongwei Zhang 0001, Daji Qiao, Mai Zheng, Ozdal Boyraz, Anish Arora, Mohamed Y. Selim, Myra B. Cohen
MobiCom5