1. Technical Field
The present invention relates to an in-vehicle device and a communication method.
2. Related Art
A so-called a passive entry system, which automatically performs predetermined controls such as opening and closing of a door of an automobile etc., or starting and stopping of an engine without inserting a key, is conventionally put to practical use. As shown in
In this case, whether the portable device 2 exists inside or outside the vehicle needs to be determined precisely to prevent the portable device 2 from being mislaid, or the like, and a technique of arranging a vehicle interior antenna 3 and a vehicle exterior antenna 4, requesting responses to the portable device 2 for plural times from each of the vehicle interior antenna 3 and the vehicle exterior antenna 4, and determining that the portable device 2 exists on the side with more responses is proposed (e.g., Japanese Unexamined Patent Publication No. 2003-3710).
A setting for having a communication area of the vehicle interior antenna 3 even is required with respect to the actual area in the vehicle to determine precisely that the portable device 2 exists inside the vehicle. As shown in
In the above conventional techniques, with a portion where communication areas of a plurality of vehicle interior antennas 3-1 and 3-2 overlap as one area, transmission data are divided into plurals and transmitted from a plurality of vehicle interior antennas 3-1 and 3-2, as shown in
To reduce the response time, consideration is made in simultaneously operating a plurality of vehicle interior antennas 3-1 and 3-2 with the portion where the communication areas of a plurality of vehicle interior antennas 3-1 and 3-2 overlap as the respective communication area, as shown in
One or more embodiments of the present invention provide an in-vehicle device and a communication method capable of reducing the processing time while suppressing the dead-band.
In accordance with one aspect of the present invention, the present invention relates to an in-vehicle device that transmits a response request signal to inside and outside of a vehicle, and performs a predetermined control when receiving a response signal from a specific portable device, the in-vehicle device including: a plurality of antennas installed inside the vehicle, a transmission unit for modulating the response request signal with a predetermined carrier wave and transmitting the signal from the plurality of antennas; and a phase difference control unit for shifting a phase of the carrier wave corresponding to each of the plurality of antennas when modulating the response request signal with the predetermined carrier wave in the transmission unit.
Further, according to one or more embodiments, the phase difference control unit performs a control of giving a phase difference of π/n (n=number of antennas) to the carrier wave corresponding to each of the plurality of antennas.
Further, according to one or more embodiments, the plurality of antennas is at least two.
Further, according to one or more embodiments, the response request signal is a low-frequency signal.
In accordance with another aspect of the present invention, the present invention relates to a communication method between an in-vehicle device and a specific portable device, the in-vehicle device transmitting a response request signal to inside and outside of a vehicle and performs a predetermined control when receiving a response signal from a specific portable device, the communication method comprising the steps of: modulating the response request signal with a predetermined carrier wave in the in-vehicle device and transmitting the signal from a plurality of antennas installed inside the vehicle; and shifting a phase of the carrier wave corresponding to each of the plurality of antennas when modulating the response request signal with the predetermined carrier wave.
Further, according to one or more embodiments, the step of shifting the phase includes giving a phase difference of π/n (n=number of antennas) to the carrier wave corresponding to each of the plurality of antennas when modulating the response request signal with the predetermined carrier wave.
Further, according to one or more embodiments, the plurality of antennas is at least two.
Further, according to one or more embodiments, the response request signal is a low-frequency signal.
According to this invention, an advantage in that the processing time can be reduced while suppressing the dead-band is obtained since a phase difference of π/n (n=number of antennas) from each other is provided to the response request signals transmitted from each of a plurality of vehicle interior antennas.
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
The control unit 11 controls the operation of each unit in transmission and reception of data, and performs a predetermined control such as opening and closing of a vehicle door, or starting and stopping of an engine according the position of the portable device 2 when receiving a response signal from the specific portable device 2. The phase control unit 12 controls a phase difference in the transmission and reception units 13-1 and 13-2 of the transmission data according to a control signal S1 from the control unit 11. When modulating the transmission data (LF signal; response request signal) from the control unit 11, the transmission and reception units 13-1 and 13-2 respectively transmit the transmission data from the corresponding vehicle interior antennas 14-1 and 14-2, with a phase difference of π/n (n=number of antennas) from each other, according to the control from the phase control unit 12.
The process in the phase control unit 12 and the transmission and reception units 13-1 and 13-2 described above can be generalized as the following. The phase difference of π/n is given to the LF signals (response request signal) transmitted at the same timing from each n vehicle interior antennas.
=180 degree
Example: When n=2, phase difference is 90 degree. When n=3, phase difference is 60 degrees.
In the present invention, as shown in
According to the embodiment described above, the interference of the magnetic field transmitted from a plurality of LF antennas can be reduced and lowering in current level can be reduced by shifting the phase of a carrier wave used in a plurality of vehicle interior antennas.
Number | Date | Country | Kind |
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2009-056568 | Mar 2009 | JP | national |