Foldable electronic device and antenna system for same
This application provides a foldable electronic device and an antenna system for same. The antenna system includes two same-band antennas disposed on a first body, a decoupling structure connected in series between the two antennas, and a parasitic structure disposed on a second body. The two antennas are spaced apart by a gap. In a folded state, the parasitic structure at least partially overlaps both the two antennas. The parasitic structure is a ½ wavelength antenna structure. The wavelength is an operating wavelength of the two same-band antennas. In the folded state, when any one of the two antennas is operating, the parasitic structure is coupled to the any one antenna to form resonance in a ½ wavelength mode, and an induced electric field is formed between one side of a middle of the parasitic structure and a reference ground.
1 . An antenna system, applied to a foldable electronic device, wherein the foldable electronic device comprises a first body and a second body that are connected to each other and are capable of being folded or unfolded relative to each other, and the antenna system comprises:
two same-band antennas, wherein the two same-band antennas comprise a first antenna having a first radiating branch and a second antenna having a second radiating branch, and the first radiating branch and the second radiating branch are disposed on the first body and are spaced apart by a first gap;
a decoupling structure, connected across the first gap in series between the two same-band antennas, wherein the decoupling structure is a band-stop filter, and the band-stop filter comprises an inductance element or a combination of an inductor and a capacitor; and
a parasitic structure disposed on the second body, wherein the parasitic structure is a linear antenna comprising a parasitic branch having a first radiator and a second radiator located on both sides of a middle of the parasitic branch, wherein the first radiator and the second radiator are an integral structure, and when the electronic device is in a folded state, the first radiator overlaps the first radiating branch and the second radiator overlaps the second radiating branch; and the parasitic structure is a ½ wavelength antenna structure, and a length of the parasitic branch is half of the operating wavelength of the two same-band antennas.
2 . The antenna system according to claim 1 , wherein when the electronic device is in the fully folded state, a middle of the parasitic branch is opposite to the first gap, and a distance from a projection of a center of the first gap on the parasitic branch to the middle of the parasitic branch is less than or equal to one-eighth of an operating wavelength of the two same-band antennas.
3 . The antenna system according to claim 1 , wherein the first radiating branch and the second radiating branch are separately spaced apart from a first reference ground on the first body by a first slot;
the parasitic branch is spaced apart from a second reference ground on the second body by a second slot; and
when the electronic device is in the folded state, the first slot is opposite to the second slot.
4 . The antenna system according to claim 3 , wherein when the electronic device is in the folded state and any one of the two same-band antennas is operating, the parasitic structure is coupled to the operating antenna to form resonance in a half-wavelength mode, and directions of induced currents respectively generated on the first radiator and the second radiator are the same; and a direction of an induced electric field generated in the second slot between the first radiator and the second reference ground is opposite to a direction of an induced electric field generated in the second slot between the second radiator and the second reference ground.
5 . The antenna system according to claim 4 , wherein when the electronic device is in the folded state and any one of the two same-band antennas is operating, an electric field in the first slot generated by exciting the operating antenna and an electric field in the first slot generated by inducing the other of the two same-band antennas are electric fields in a same direction.
6 . The antenna system according to claim 3 , wherein the parasitic structure is a linear antenna, and the first radiator and the second radiator are an integral structure; and
a length of the parasitic branch is half of the operating wavelength of the two same-band antennas.
7 . The antenna system according to claim 4 , wherein the parasitic structure is a linear antenna, and the first radiator and the second radiator are an integral structure; and
a length of the parasitic branch is half of the operating wavelength of the two same-band antennas.
8 . The antenna system according to claim 1 , wherein the linear antenna further comprises two matching circuits respectively coupled to both ends of the parasitic branch, and the two matching circuits are configured to adjust a resonant frequency of the parasitic structure.
9 . The antenna system according to claim 1 , wherein the parasitic structure is a slot antenna, the first radiator and the second radiator are spaced apart by a gap, one end, away from the second radiator, of the first radiator is grounded, and one end, away from the first radiator, of the second radiator is grounded; and
a length of the first radiator or the second radiator is a quarter of the operating wavelength of the two same-band antennas.
10 . The antenna system according to claim 1 , wherein the first radiating branch comprises a first coupling end adjacent to the first gap, and the second radiating branch comprises a second coupling end adjacent to the first gap;
the decoupling structure is connected in series between the first coupling end of the first radiating branch and the second coupling end of the second radiating branch; and
the decoupling structure is configured to cut off a coupling path that is between the two same-band antennas and that passes through the first gap.
11 . The antenna system according to claim 10 , wherein the decoupling structure is a band-stop filter, and the band-stop filter comprises an inductance element or a combination of an inductor and a capacitor.
12 . The antenna system according to claim 1 , wherein the first antenna further comprises a first feed point and a first grounding point that are coupled to the first radiating branch, wherein a minimum distance from the first feed point to a center of the first gap is less than a minimum distance from the first grounding point to the center of the first gap; and
the second antenna further comprises a second feed point and a second grounding point that are coupled to the second radiating branch, wherein a minimum distance from the second feed point to the center of the first gap is greater than a minimum distance from the second grounding point to the center of the first gap.
13 . The antenna system according to claim 12 , wherein the first antenna further comprises a first matching circuit coupled to the first feed point, and the first matching circuit is configured to implement impedance matching of the first antenna; and
the second antenna further comprises a second matching circuit coupled to the second feed point, and the second matching circuit is configured to implement impedance matching of the second antenna.
14 . The antenna system according to claim 13 , wherein the second antenna further comprises a third matching circuit coupled to the second grounding point, and the third matching circuit is configured to implement impedance matching of the second antenna.
15 . The antenna system according to claim 1 , wherein the first body further comprises a first middle frame, the first middle frame is partially or entirely made of a metal material, and both the first radiating branch and the second radiating branch are parts of a structure of the first middle frame; and
the second body further comprises a second middle frame, wherein the first middle frame overlaps the second middle frame when the electronic device is in the fully folded state; and the second middle frame is partially or entirely made of a metal material, and the parasitic branch is a part of a structure of the second middle frame.
16 . A foldable electronic device, comprising:
a first body and a second body, wherein the first body and the second body are connected to each other and are capable of being folded or unfolded relative to each other; and
an antenna system comprising:
two same-band antennas comprising a first antenna having a first radiating branch and a second antenna having a second radiating branch, wherein the first radiating branch and the second radiating branch are disposed on the first body and are spaced apart by a first gap;
a decoupling structure, connected across the first gap in series between the two same-band antennas, wherein the decoupling structure is a band-stop filter, and the band-stop filter comprises an inductance element or a combination of an inductor and a capacitor; and
a parasitic structure disposed on the second body, wherein the parasitic structure is a linear antenna comprising a parasitic branch having a first radiator and a second radiator located on both sides of a middle of the parasitic branch, wherein the first radiator and the second radiator are an integral structure, and when the electronic device is in a folded state, the first radiator overlaps the first radiating branch and the second radiator overlaps the second radiating branch; and the parasitic structure is a ½ wavelength antenna structure, and a length of the parasitic branch is half of the operating wavelength of the two same-band antennas.