activity
20182021
collaborators

7 papers

cs.IT2021

Rate-Splitting Random Access Mechanism for Massive Machine Type Communications in 5G Cellular Internet-of-Things

Yeduri Sreenivasa Reddy, Garima Chopra, Ankit Dubey +3

The cellular Internet-of-Things has resulted in the deployment of millions of machine-type communication (MTC) devices. These massive number of devices must communicate with a sing…

cs.NI2019

A Probabilistic Approach to Model SIC based RACH mechanism for Massive Machine Type Communications in Cellular Networks

Yeduri Sreenivasa Reddy, Ankit Dubey, Abhinav Kumar +1

In a cellular Internet of Things, burst transmissions from millions of machine type communications (MTC) devices can result in channel congestion. The main bottleneck in such scena…

eess.SP2019

Sampling Free TDOA Localization in Millimeter Wave Networks

Shree Prasad M., Trilochan Panigrahi, Mahbub Hassan +1

Time difference of arrival (TDOA) is a widely used technique for localizing a radio transmitter from the difference in signal arrival times at multiple receivers. For TDOA to work,…

eess.SP2018

Classifying the Order of Higher Derivative Gaussian Pulses in Terahertz Wireless Communications

Shree Prasad M, Trilochan Panigrahi, Mahbub Hassan

The terahertz band is considered the last frontier for wireless communications and expected to play a significant role in beyond 5G networks. Besides supporting extremely high data…

eess.SP2018

Direction of Arrival and Center Frequency Estimation for Impulse Radio Millimeter Wave Communications

Shree Prasad M., Trilochan Panigrahi, Mahbub Hassan

The 30-300GHz millimeter wave (mmWave) band is currently being pursued to combat the rising capacity demands in 5G, WiFi, and IoT networks. Due to the high frequency, impulse radio…

eess.SP2018

Energy Efficient Event Localization and Classification for Nano IoT

Shree Prasad M., Trilochan Panigrahi, Mahbub Hassan

Advancements in nanotechnology promises new capabilities for Internet of Things (IoT) to monitor extremely fine-grained events by deploying sensors as small as a few hundred nanome…