TRANSMISSION POWER OF CARRIER WAVES FOR AMBIENT INTERNET OF THINGS (AIOT) DEVICES
Various aspects of the present disclosure relate to employing emitter nodes to excite Internet of Things (IoT) devices, such as ambient-powered IoT devices. For example, a base station may configure an emitter node, such as a user equipment (UE), and/or an AIoT device to implement adjustments of a carrier wave transmission power during excitation of the AIoT device by the emitter node.
1 . A network entity for wireless communication, comprising:
at least one memory; and
at least one processor coupled with the at least one memory and configured to cause the network entity to:
transmit, to an emitter node, a first configuration associated with a transmission power for a carrier wave transmission to an Internet of Things (IoT) device; and
transmit, to the IoT device, a second configuration comprising a request for information for adjusting the transmission power for the carrier wave transmission.
2 . The network entity of claim 1 , wherein the at least one processor is further configured to cause the network entity to:
receive, from the IoT device, via a backscatter transmission, the information for adjusting the transmission power for the carrier wave transmission.
3 . The network entity of claim 1 , wherein the first configuration indicates a guard band or a zero power reference signal between the carrier wave transmission and a frequency band, and wherein the at least one processor is further configured to cause the network entity to:
measure an interference level in the frequency band; and
adapt a length of the guard band based at least in part on the measured interference level in the frequency band.
4 . The network entity of claim 1 , wherein the first configuration indicates a threshold transmission power for the carrier wave transmission.
5 . The network entity of claim 4 , wherein the at least one processor is further configured to cause the network entity to transmit the first configuration in a radio resource control (RRC) message.
6 . The network entity of claim 4 , wherein the at least one processor is further configured to cause the network entity to transmit the first configuration in a system information block (SIB).
7 . The network entity of claim 1 , wherein the first configuration indicates a transmit power command (TPC) for the carrier wave transmission.
8 . The network entity of claim 7 , wherein the at least one processor is further configured to cause the network entity to transmit the TPC via a downlink control information (DCI) format 2_2.
9 . The network entity of claim 7 , wherein the first configuration comprises a TPC index for setting a transmission power of the carrier wave transmission.
10 . The network entity of claim 1 , wherein the at least one processor is further configured to cause the network entity to receive a downlink control information (DCI), including a single bit field that indicates the first configuration or the transmission power for the carrier wave transmission.
11 . The network entity of claim 1 , wherein the at least one processor is further configured to cause the network entity to receive a downlink control information (DCI), including a multi-bit field that indicates different transmission powers for the carrier wave transmission.
12 . The network entity of claim 1 , wherein the at least one processor is further configured to cause the network entity to transit the first configuration via an F1 or an X2 interface.
13 . The network entity of claim 1 , wherein the second configuration comprises a resource allocation or a bit field that indicates to provide assistance information via the backscatter transmission.
14 . A method performed by a network entity, the method comprising:
transmitting, to an emitter node, a first configuration associated with a transmission power for a carrier wave transmission to an Internet of Things (IoT) device; and
transmitting, to the IoT device, a second configuration comprising a request for information for adjusting the transmission power for the carrier wave transmission.
15 . An Internet of Things (IoT) device for wireless communication, comprising:
at least one memory; and
at least one processor coupled with the at least one memory and configured to cause the IoT device to:
receive, from a network entity, a configuration comprising a request for information associated with adjusting transmission power of a carrier wave transmission received from an emitter node; and
transmit, to the network entity via a backscatter transmission, the information associated with adjusting transmission power of a carrier wave transmission.
16 . The IoT device of claim 15 , wherein the at least one processor is further configured to cause the IoT device to:
receive the carrier wave transmission from the emitter node; and
transmit the backscatter transmission in response to the received carrier wave transmission.
17 . The IoT device of claim 15 , wherein the configuration comprises a threshold level of stored energy associated with adjusting the transmission power of the carrier wave transmission.
18 . The IoT device of claim 15 , wherein the at least one processor is configured to cause the IoT device to transmit multiple bits to indicate different transmission powers of the carrier wave transmission received from the emitter node.
19 . The IoT device of claim 15 , wherein the at least one processor is configured to cause the IoT device to transmit multiple bits to indicate different levels of stored energy at the IoT device.
20 . A method performed by an Internet of Things (IoT) device, the method comprising:
receiving, from a network entity, a configuration comprising a request for information associated with adjusting transmission power of a carrier wave transmission received from an emitter node; and
transmitting, to the network entity via a backscatter transmission, the information associated with adjusting transmission power of a carrier wave transmission.