This application claims priority to Taiwanese Application. No. 102131524, filed on Sep. 2, 2013.
1. Field of the Invention
The invention, relates to a method for communicating a signal, more particularly to a method of transmitting a downlink radio signal from a distributed antenna system to a mobile device.
2. Description of the Related Art
The control module 50 provides a downlink radio signal to each of the transceivers 51-54, which subsequently transmit the downlink radio signal to the mobile device 7.
However, the downlink radio signals transmitted respectively by the transceivers 51-54 are all received from the control module 50 and have the same frequency, and the transceivers 51-54 are generally not far apart from each other, resulting in co-channel interference among the downlink radio signals received by the mobile device 7 from respective transceivers 51-54. As a result, data throughput from the distributed antenna system 5 to the mobile device 7 may be adversely affected. For example, when, the mobile device 7 is moved to a position between the transceivers 51, 52, it may also receive the downlink radio signals from the transceivers 52-54, which may interfere with the downlink radio signal from the transceiver 51.
Therefore, an object of the present invention is to provide a method of transmitting a downlink radio signal from a distributed antenna system to a mobile device, which is capable of providing relatively large data throughput for the mobile device.
According to the present invention, there is provided a method of transmitting a downlink radio signal from a distributed antenna system to a mobile device. The distributed antenna system includes a plurality of transceivers and a control module. The method comprises the following steps of: a) receiving, by each of the transceivers, an uplink radio signal from the mobile device as a respective received signal; b) transmitting, by each of the transceivers, the received signal to the control module; c) providing to each of the transceivers, by the control module, the downlink radio signal with a respective intensity, which is determined by the control module according to an intensity of the received signal from the transceiver; and d) transmitting, by each of the transceivers, the downlink radio signal.
According to another aspect of this invention, there is provided a distributed antenna system for transmitting a downlink radio signal to a mobile device. The distributed antenna system comprises a plurality of transceivers and a control module. Each of the transceivers is configured to receive an uplink radio signal from the mobile device as a respective received signal. The control module is configured to receive the received signal from each of the transceivers, and is operable to provide to each of the transceivers the downlink radio signal with a respective intensity, which is determined by the control module according to an intensity of the received signal from the transceiver.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiments with reference to the accompanying drawings, of which:
Before the present invention is described in greater detail, it should be noted that like elements are denoted by the same reference numerals throughout the disclosure.
Referring to
In this embodiment, the path 2 may be a high speed railway, a train railway or the like, and the mobile device 3 may be a mobile communication device (such as a mobile phone or a tablet computer) disposed in a vehicle travelling along the path 2.
To reduce interference among radio signals transmitted from the transceivers 11-14, each of the transceivers 11-14 receives an uplink radio signal from the mobile device 3 as a respective received signal in step S11.
Each of the transceivers 11-14 is operable to transmit the received signal to the control module 10 in step S12, and the control module 15 is operable to determine a distance between the mobile device 3 and each of the transceivers 11-14 according to the intensity of the received signal from the transceiver 11-14 in step S13. In step S14, the control module 10 is operable to provide a downlink radio signal to each of the transceivers 11-14 with a respective intensity that negatively correlates with the distance between the respective one of the transceivers 11-14 and the mobile device 3. That is to say, the respective intensity of the downlink radio signal, provided to each of the transceivers 11-14 is determined by the control module 10 according to the intensity of the received signal from the transceiver 11-14. Then, in step S15, each of the transceivers 11-14 is operable to transmit the downlink radio signal to the mobile device 3.
Specifically, in step S13, the control module 10 is operable to determine which one of the transceivers 11-14 is proximate to the mobile device 3 among the remaining transceivers 11-14 according to the intensity (power) of the received signal from each of the transceivers 11-14. Then, in step S14, the control module 10 is operable to enhance the respective intensity of the downlink radio signal, which is provided to a proximate one of the transceivers 11-14, and/or to reduce the respective intensity of the downlink radio signal, which is provided to each of the remaining transceivers except for the proximate one, so as to increase data throughput to the proximate one of the transceivers 11-14.
For example, as shown in
As shown in
Alternatively, the control module 10 may enhance the intensity of the downlink radio signal provided to at least one of the transceivers 11-14 that are at a distance from the mobile device 3 smaller than a predetermined value. Taking
For example, as shown in
By this way, two of the transceivers 11-14 are always employed to transmit the downlink radio signals to the mobile device 3, thus ensuring communication stability between the mobile device 3 and the transceivers 11-14. Further, interference among the downlink radio signals received from transceivers 11-14 that are away from the mobile device 3 may be alleviated.
To sum up, in the present invention, each of the transceivers 11-14 first receives an uplink radio signal from the mobile device 3 as a respective received signal, and transmits the received signal to the control module 10. Next, the control module 10 determines a distance between the mobile device 3 and each of the transceivers 11-14 according to the intensity of the received signal from the respective one of the transceivers 11-14, and provides the downlink radio signal to each of the transceivers 11-14 with the respective intensity negatively correlating with the distance between the respective one of the transceivers 11-14 arid the mobile device 3. Finally, each of the transceivers 11-14 transmits the downlink radio signal to the mobile device 3. Therefore, the mobile device 3 may receive the downlink radio signal with relatively great intensity from the proximate one of the transceivers 11-14.
While the present invention has been described in connection with what are considered the most practical and preferred embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
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102131524 | Sep 2013 | TW | national |