A key aspect of the fifth-generation wireless communication network will be the integration of different services and technologies to provide seamless connectivity. In this paper, we consider using massive multiple-input multiple-output (mMIMO) to provide backhaul links to a dense deployment of self-backhauling (s-BH) small cells (SCs) that provide cellular access within the same spectrum resources of the backhaul. Through a comprehensive system-level simulation study, we evaluate the interplay between access and backhaul and the resulting end-to-end user rates. Moreover, we analyze the impact of different SCs deployment strategies, while varying the time resource allocation between radio access and backhaul links. We finally compare the ab...
© 2016 IEEE.This letter investigates self-backhauling with dual antenna selection at multiple small ...
Urban (and suburban) informal settlements in emerging markets will be the fastest growing population...
The ever increasing demand for wireless data services has given a starring role to dense small cell ...
A key aspect of the fifth-generation wireless communication network will be the integration of diffe...
A key aspect of the fifth-generation wireless communication network will be the integration o...
In this paper, we focus on one of the key technologies for the fifth-generation wireless communicat...
This work analyzes a heterogeneous network (Het- Net), which comprises a macro base station (BS) equ...
Mobile data tra_c is predicted to grow 1000x from now until 2030 [1, 2], and dense small cell networ...
The ultra-dense network (UDN) has been considered as a promising candidate for future 5G networks to...
With the dense deployment of small cell networks, low-cost backhaul schemes for small cell base stat...
Millimeter-wave self-backhauled small cells are a key component of next-generation wireless networks...
Ultra dense small cell networks represent a key future network solution that can help meet the expo...
One of the main challenges for wide-scale deployment and timely adoption of ultra-dense networks (UD...
Abstract We study the problem of joint load balancing and interference mitigation in heterogeneous n...
Abstract—Millimeter wave (mmW) cellular systems will re-quire high gain directional antennas and den...
© 2016 IEEE.This letter investigates self-backhauling with dual antenna selection at multiple small ...
Urban (and suburban) informal settlements in emerging markets will be the fastest growing population...
The ever increasing demand for wireless data services has given a starring role to dense small cell ...
A key aspect of the fifth-generation wireless communication network will be the integration of diffe...
A key aspect of the fifth-generation wireless communication network will be the integration o...
In this paper, we focus on one of the key technologies for the fifth-generation wireless communicat...
This work analyzes a heterogeneous network (Het- Net), which comprises a macro base station (BS) equ...
Mobile data tra_c is predicted to grow 1000x from now until 2030 [1, 2], and dense small cell networ...
The ultra-dense network (UDN) has been considered as a promising candidate for future 5G networks to...
With the dense deployment of small cell networks, low-cost backhaul schemes for small cell base stat...
Millimeter-wave self-backhauled small cells are a key component of next-generation wireless networks...
Ultra dense small cell networks represent a key future network solution that can help meet the expo...
One of the main challenges for wide-scale deployment and timely adoption of ultra-dense networks (UD...
Abstract We study the problem of joint load balancing and interference mitigation in heterogeneous n...
Abstract—Millimeter wave (mmW) cellular systems will re-quire high gain directional antennas and den...
© 2016 IEEE.This letter investigates self-backhauling with dual antenna selection at multiple small ...
Urban (and suburban) informal settlements in emerging markets will be the fastest growing population...
The ever increasing demand for wireless data services has given a starring role to dense small cell ...