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Base station

About: Base station is a research topic. Over the lifetime, 85883 publications have been published within this topic receiving 1019303 citations. The topic is also known as: Mobile phone base stations & BS.


Papers
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Proceedings ArticleDOI
05 Sep 2004
TL;DR: The results show how, for different capacity requirements, the costs can be minimized by a proper selection of macro, micro and pico base stations, indicating that the coverage (cell range) is an important parameter when designing wireless systems.
Abstract: A simple method for estimating the costs of building and operating a cellular mobile network is proposed. Using the empirical data from a third generation mobile system (WCDMA), it is shown that the cost is driven by different factors depending on the characteristics of the base stations deployed. When the site density increased, the operational and transmission costs tend to dominate rather than the radio equipment and site costs. The results also show how, for different capacity requirements, the costs can be minimized by a proper selection of macro, micro and pico base stations. In many scenarios, the macro base stations yield the lowest cost, indicating that the coverage (cell range) is an important parameter when designing wireless systems.

148 citations

Patent
Dilip Krishnaswamy1
19 Mar 2010
TL;DR: In this article, the authors provide communication services utilizing a combination of non-white spaces (NWS) and white spaces (WS) networks, where the first base station (BS) receives a communication request for network access from a wireless access terminal (AT) and determines at least one available unlicensed frequency corresponding to a location of the wireless AT.
Abstract: The described apparatus and methods provide communication services utilizing a combination of non-white space (NWS) and white space (WS) networks. For example, in an aspect, the described apparatus and methods receive, at a first base station (BS) and on a licensed frequency, a communication request for network access from a wireless access terminal (AT). The aspects also determine at least one available unlicensed frequency corresponding to a location of the wireless AT. Further, the aspects partition at least a portion of the network access for the wireless AT to be via the at least one available unlicensed frequency. Additionally, the aspects inform the wireless AT of the at least one available unlicensed frequency for use to obtain at least the portion of the network access. Additional aspects relate to NWS BS assisted handoffs of WS calls, dynamic caching of WS information, peer-to-peer WS communication, and WS BS venue-specific broadcasting.

148 citations

Patent
13 Oct 1993
TL;DR: In this paper, a frequency hopping spread spectrum wireless data communications network is described, where each base station transmits time mark frames at a regular cadence and each time mark frame contains all information necessary to determine the hopping sequence of channels, a subset of possible channels in use, and the particular channel upon which the time mark was transmitted.
Abstract: A frequency hopping spread spectrum wireless data communications network is disclosed. Time mark frames are transmitted by each base station at a regular cadence and each time mark frame contains all information necessary to determine the hopping sequence of channels, a sub-set of possible channels in use, and the particular channel upon which the time mark was transmitted. Receipt of the time mark resynchronizes a slot clock that is used by the wireless terminals in implementing a media access protocol with defined synchronous time slots. The base station to roaming terminal radio link is half duplex. Each base station broadcasts an end-of-message frame during a hop period that indicates that it has no more data to send during that hop. If there are no inbound messages a roaming terminal needs to send, it puts its receiver in a low power mode until the next hop time approaches. Look ahead acquisition of the hopping sequence for a nearby base station when the received signal level for the current base station drops is also disclosed.

148 citations

Patent
27 May 1993
TL;DR: In this paper, the authentication check in a mobile telephone system in which an authentic base station serves a plurality of mobile stations is discussed. But the authentication checks are carried out in a bi-directional manner.
Abstract: Methods for carrying out an authentication check in a mobile telephone system in which an authentic base station serves a plurality of mobile stations. A prior method carried out a unidirectional check from the base to a calling mobile, permitting a false base to carry out a false authentication check by collecting a number of so-called RAND-Response pairs. To avoid this problem, another unidirectional, base-to-mobile, authentication check and an authentication check from the mobile to the base are carried out. In one embodiment, only the bi-directional authentication check is carried out.

148 citations

Proceedings ArticleDOI
01 Dec 2017
TL;DR: An in-depth analysis of the coverage probability of the downlink of a cellular network that serves both aerial and ground users is provided, which includes the effect of base stations (BSs) height, antenna pattern and drone altitude for various types of urban environments.
Abstract: Enabling the integration of aerial mobile users into existing cellular networks would make possible a number of promising applications. However, current cellular networks have not been designed to serve aerial users, and hence an exploration of design parameters is required in order to allow network providers to modify their current infrastructure. As a first step in this direction, this paper provides an in-depth analysis of the coverage probability of the downlink of a cellular network that serves both aerial and ground users. We present an exact mathematical characterization of the coverage probability, which includes the effect of base stations (BSs) height, antenna pattern and drone altitude for various types of urban environments. Interestingly, our results show that the favorable propagation conditions that aerial users enjoy due to their altitude is also their strongest limiting factor, as it leaves them vulnerable to interference. This negative effect can be substantially reduced by optimizing the flying altitude, the base station height and antenna down-tilt angle. Moreover, lowering the base station height and increasing down-tilt angle are in general beneficial for both terrestrial and aerial users, pointing out a possible path to enable their coexistence.

148 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
20231,277
20222,829
20211,823
20203,484
20194,001
20184,426