Method for controlling 5G antenna and electronic device therefor
An electronic device including a second wireless communication circuit providing second radio access technology (RAT) and a communication processor controlling the second wireless communication circuit are provided. The communication processor may allocate a detection symbol for detecting an external object, may detect the external object from the allocated symbol, and may control the second wireless communication circuit based on the detected external object.
1. An electronic device comprising:
a first wireless communication circuit configured to provide first radio access technology (RAT) corresponding to long term evolution (LTE);
a second wireless communication circuit electrically connected to at least one antenna array comprising a plurality of antenna elements and configured to provide a RAT corresponding to new radio (NR);
a communication processor operatively connected to the first wireless communication circuit and the second wireless communication circuit; and
a memory operatively connected to the communication processor,
wherein the memory stores one or more instructions that, when executed by at least one processor, cause the communication processor to:
allocate an uplink symbol or a flexible symbol among a plurality of symbols indicated by slot format information, as a detection symbol,
detect an object by transmitting a signal in the detection symbol and receiving a reflection signal of the transmitted signal, using the second wireless communication circuit,
when the detected object corresponds to a near area object, perform a power backoff for the first wireless communication circuit and control transmission of the second wireless communication circuit by suppressing a sidelobe or a backlobe of the at least one antenna array, and
when the detected object corresponds to a far area object, control transmission of the second wireless communication circuit by suppressing a mainlobe of the at least one antenna array.
2. The electronic device of claim 1 ,
wherein the first wireless communication circuit is configured to transmit and receive a signal of less than 6 gigahertz (GHz), and
wherein the second wireless communication circuit is configured to transmit and receive a signal of 6 GHz or more.
3. The electronic device of claim 1 ,
wherein the at least one antenna array further comprises a first antenna array and a second antenna array, and
wherein the one or more instructions, when executed by at least one processor, further cause the communication processor to:
transmit a signal in the detection symbol, using a first antenna element of the first antenna array;
receive a reflection signal of the transmitted signal using a second antenna element of the second antenna array; and
detect the object by comparing the transmitted signal and the reflection signal.
4. The electronic device of claim 3 , wherein antenna elements of the first antenna array are different in type from antenna elements of the second antenna array.
5. The electronic device of claim 1 ,
wherein the at least one antenna array comprises a first antenna array comprising a plurality of patch antenna elements,
wherein the one or more instructions, when executed by the at least one processor, further cause the communication processor to:
transmit a signal in the detection symbol through a first transmission/reception chain connected to a first antenna element of the first antenna array,
receive a reflection signal of the transmitted signal through a second transmission/reception chain connected to the first antenna element, and
detect the object by comparing the transmitted signal and the reflection signal, and
wherein polarization associated with the first transmission/reception chain is substantially perpendicular to polarization associated with the second transmission/reception chain.
6. The electronic device of claim 1 ,
wherein the at least one antenna array further comprises a first antenna array comprising a plurality of antenna elements, and
wherein the one or more instructions, when executed by the at least one processor, further cause the communication processor to:
transmit a signal in the detection symbol through a first transmission/reception chain connected to a first antenna element of the first antenna array,
receive a reflection signal of the transmitted signal through the first transmission/reception chain connected to the first antenna element, and
detect the object by receiving and comparing the transmitted signal and the reflection signal through a coupler connected to the first antenna element.
7. The electronic device of claim 1 , wherein the one or more instructions, when executed by the at least one processor, further cause the communication processor to:
perform the power backoff by adjusting transmission power of the first wireless communication circuit to be less than or equal to a set power.
8. The electronic device of claim 1 , wherein the one or more instructions, when executed by the at least one processor, further cause the communication processor to:
transmit a signal in the detection symbol, using some of a plurality of antenna elements of the at least one antenna array by using the second wireless communication circuit to detect the object.
9. A transmission control method of an electronic device, the transmission control method comprising:
allocating an uplink symbol or a flexible symbol among a plurality of symbols indicated by slot format information, as a detection symbol;
detecting an object by transmitting a signal in the detection symbol and receiving a reflection signal of the transmitted signal, using a second wireless communication circuit electrically connected to at least one antenna array comprising a plurality of antenna elements and configured to provide second radio access technology (RAT) corresponding to new radio (NR);
when the detected object corresponds to a near area object, performing a power backoff for a first wireless communication circuit of the electronic device and controlling transmission of the second wireless communication circuit by suppressing a sidelobe or a backlobe of the at least one antenna array, the first wireless communication circuit configured to provide a first RAT corresponding to long term evolution (LTE); and
when the detected object corresponds to a far area object, controlling transmission of the second wireless communication circuit by suppressing a mainlobe of the at least one antenna array.
10. The transmission control method of claim 9 ,
wherein the at least one antenna array further comprises a first antenna array comprising a plurality of patch antenna elements, and
wherein the detecting of the object comprises:
transmitting a signal through a first transmission/reception chain connected to a first antenna element of the first antenna array;
receiving a reflection signal of the transmitted signal through the first transmission/reception chain connected to the first antenna element; and
detecting the object by receiving and comparing the transmitted signal and the reflection signal through a coupler connected to the first antenna element.
11. The transmission control method of claim 9 ,
wherein the detecting of the object by transmitting the signal in the detection symbol, and
wherein receiving the reflection signal of the transmitted signal by using the second wireless communication circuit comprises:
transmitting a signal in the detection symbol, using some of a plurality of antenna elements of the at least one antenna array by using the second wireless communication circuit to detect the object.
12. The transmission control method of claim 9 ,
wherein the first wireless communication circuit is configured to transmit and receive a signal of less than 6 gigahertz (GHz), and
wherein the second wireless communication circuit is configured to transmit and receive a signal of 6 GHz or more.
13. The transmission control method of claim 9 ,
wherein the at least one antenna array further comprises a first antenna array and a second antenna array, and
wherein the detecting of the object comprises:
transmitting a signal, using a first antenna element of the first antenna array;
receiving a reflection signal of the transmitted signal, using a second antenna element of the second antenna array; and
detecting the object by comparing the transmitted signal and the reflection signal.
14. The transmission control method of claim 13 , wherein the first antenna array and the second antenna array comprise different types of antenna elements from each other.
15. The transmission control method of claim 9 ,
wherein the at least one antenna array comprises a first antenna array comprising a plurality of patch antenna elements,
wherein the detecting of the object comprises:
transmitting a signal through a first transmission/reception chain connected to a first antenna element of the first antenna array;
receiving a reflection signal of the transmitted signal through a second transmission/reception chain connected to the first antenna element; and
detecting the object by comparing the transmitted signal and the reflection signal, and
wherein polarization associated with the first transmission/reception chain is substantially perpendicular to polarization associated with the second transmission/reception chain.