Arrays of acoustic transducers for physical analysis of batteries
Systems and methods for analyzing physical characteristics of a battery include arrangements of two or more transducers coupled to the battery. A control module controls one or more of the two or more transducers to transmit acoustic signals through at least a portion of the battery, and one or more of the two or more transducers to receive response acoustic signals. Distribution of physical properties of the battery is determined based at least on the transmitted acoustic signals and the response acoustic signals.
1. A method of analyzing physical characteristics of a battery, the method comprising:
transmitting acoustic signals from two or more transducers coupled to a battery through at least a portion of the battery;
receiving response acoustic signals to the transmitted acoustic signals by one or more of the two or more transducers;
determining a distribution of physical properties of the battery based on analyzing the transmitted acoustic signals and the response acoustic signals;
determining an inversion model from the distribution of physical properties of the battery determined based on analyzing the transmitted acoustic signals and the response acoustic signals;
determining a forward model comprising expected response acoustic signals for one or more transmitted acoustic signals based on a preliminary physical structure of the battery;
comparing the inversion model and forward model to iteratively determine parameters which satisfy the forward model and the inversion model; and
upon determining parameters which satisfy the forward model and the inversion model, digitally reconstructing an image comprising physical properties of the battery.
2. The method of claim 1 comprising controlling relative timing between two or more pulses transmitted through two or more transducers based on a desired shape of a wavefront to be formed by the two or more pulses.
3. The method of claim 2 , comprising transmitting the two or more pulses simultaneously to generate the wavefront, wherein the desired shape of the wavefront is a synchronous beam.
4. The method of claim 2 , comprising transmitting the two or more pulses in sequence to generate the wavefront, wherein the desired shape of the wavefront is one of a focused beam, steered beam, or a focused and steered beam.
5. The method of claim 1 , further comprising disposing the two or more transducers at predetermined positions with respect to a cross section the battery, and determining a scattering of physical properties across the cross section of the battery based on relative positions of one or more transducers configured to transmit the acoustic signals and one or more transducers configured to receive the response acoustic signals.
6. The method of claim 1 , comprising arranging the two or more transducers in an array, wherein a shape of the array is based on a surface of the battery that the arrangement of the two or more transducers are coupled to or a direction of the distribution of the physical properties.
7. The method of claim 1 , comprising configuring a distance between two or more transducers in the arrangement of two or more transducers based on a tightly spaced arrangement or a sparsely spaced arrangement.
8. A non-transitory computer-readable medium having stored thereon instructions that, when executed by one or more processors, cause the one or more processors to:
transmit acoustic signals from two or more transducers coupled to a battery through at least a portion of the battery;
receive response acoustic signals to the transmitted acoustic signals by one or more of the two or more transducers; and
determine a distribution of physical properties of the battery based on analyzing the transmitted acoustic signals and the response acoustic signals;
determine an inversion model from the distribution of physical properties of the battery determined based on analyzing the transmitted acoustic signals and the response acoustic signals;
determine a forward model comprising expected response acoustic signals for one or more transmitted acoustic signals based on a preliminary physical structure of the battery;
compare the inversion model and forward model to iteratively determine parameters which satisfy the forward model and the inversion model; and
upon determining parameters which satisfy the forward model and the inversion model, digitally reconstruct an image comprising physical properties of the battery.