KPL/FK Comet-Interceptor Spacecraft Frames Kernel ============================================================================= This frame kernel contains complete set of frame definitions for the Comet-Interceptor including definitions for the Comet-Interceptor fixed and Comet-Interceptor science instrument frames. This kernel also contains NAIF ID/name mapping for the Comet-Interceptor science instruments and s/c structures (see the last section of the file). Version and Date ----------------------------------------------------------------------------- Version 2.0 -- April 7, 2022 -- Jaime Fernandez Diz, ESAC/ESA Alfredo Escalante Lopez, ESAC/ESA Added body-fixed reference frames for sub-spacecrafts B1 and B2. Added NAIF body/ID associations for spacecraft instruments. Version 1.0 -- June 21, 2021 -- Alfredo Escalante Lopez, ESAC/ESA Corrected INTERCEPTOR NPO frame secondary axis to Interceptor velociry in order to avoid computation error when secondary axis is 180 degrees from primary axis. Version 0.0 -- January 2, 2019 -- Marc Costa Sitja, ESAC/ESA Preliminary Version. Only basic ID and frame definitions. References ----------------------------------------------------------------------------- 1. ``Frames Required Reading'' 2. ``Kernel Pool Required Reading'' 3. ``C-Kernel Required Reading'' 4. The Comet Interceptor Mission HAL open science - Geraint Jones, Colin Snodgrass, Cecilia Tubiana, Michael Küppers, Hideyo Kawakita, et al.. The Comet Interceptor Mission. Space Science Reviews, 2024, 220 (1), pp.9. ⟨10.1007/s11214-023-01035-0⟩. ⟨insu-04423938⟩, 29 June 2024 Contact Information ----------------------------------------------------------------------------- If you have any questions regarding this file contact the ESA SPICE Service at ESAC: Alfredo Escalante Lopez (+34) 91-8131-429 spice@cosmos.esa.int Implementation Notes ----------------------------------------------------------------------------- This file is used by the SPICE system as follows: programs that make use of this frame kernel must "load" the kernel normally during program initialization. Loading the kernel associates the data items with their names in a data structure called the "kernel pool". The SPICELIB routine FURNSH loads a kernel into the pool as shown below: FORTRAN: (SPICELIB) CALL FURNSH ( frame_kernel_name ) C: (CSPICE) furnsh_c ( frame_kernel_name ); IDL: (ICY) cspice_furnsh, frame_kernel_name MATLAB: (MICE) cspice_furnsh ( 'frame_kernel_name' ) PYTHON: (SPICEYPY)* furnsh( frame_kernel_name ) In order for a program or routine to extract data from the pool, the SPICELIB routines GDPOOL, GIPOOL, and GCPOOL are used. See [2] for more details. This file was created and may be updated with a text editor or word processor. * SPICEPY is a non-official, community developed Python wrapper for the NAIF SPICE toolkit. Its development is managed on Github. It is available at: https://github.com/AndrewAnnex/SpiceyPy Comet-Interceptor Mission NAIF ID Codes ----------------------------------------------------------------------------- The following names and NAIF ID codes are assigned to the Comet-Interceptor spacecraft, its structures and science instruments (the keywords implementing these definitions are located in the section "Comet-Interceptor Mission NAIF ID Codes -- Definition Section" at the end of this file): Comet-Interceptor A Spacecraft and Spacecraft Structures names/IDs: INTERCEPTOR -309 INTERCEPTOR_SPACECRAFT -309000 INTERCEPTOR_SC -309000 CoCa names/IDs: INTERCEPTOR_COCA -309100 SCIENA names/IDs: INTERCEPTOR_DFP_SCIENA -309200 LEES names/IDs: INTERCEPTOR_DFP_LEES -309300 MIRMIS names/IDs: INTERCEPTOR_MIRMIS_NIR -309400 INTERCEPTOR_MIRMIS_MIR -309401 INTERCEPTOR_MIRMIS_TIRI -309402 Comet-Interceptor B1 Spacecraft and Spacecraft Structures names/IDs: INTERCEPTOR_B1 -30901 B1 PS (Plasma Suite) names/IDs: INTERCEPTOR_B1_PS -30901100 B1 HI names/IDs: INTERCEPTOR_B1_HI -30901200 B1 W/NAC names/IDs: INTERCEPTOR_B1_NAC -30901300 INTERCEPTOR_B1_WAC -30901400 Comet-Interceptor B2 Spacecraft and Spacecraft Structures names/IDs: INTERCEPTOR_B2 -30902 B2 ENVISS names/IDs: INTERCEPTOR_B2_ENVISS -30902100 B2 OPIC names/IDs: INTERCEPTOR_B2_OPIC -30902200 Comet-Interceptor Mission Frames ----------------------------------------------------------------------------- The following Comet-Interceptor frames are defined in this kernel file: Name Relative to Type NAIF ID ====================== ======================== ========== ========= Spacecraft frames: ------------------ INTERCEPTOR_SPACECRAFT J2000 CK(3) -309000 INTERCEPTOR_TUTTLE_NPO Dynamic(5) -309010 INTERCEPTOR_TUTTLE_DUST Dynamic(5) -309011 INTERCEPTOR_TUTTLE_ION Dynamic(5) -309012 CoCa frames: ------------ INTERCEPTOR_COCA -309100 SCIENA frames: -------------- INTERCEPTOR_DFP_SCIENA -309200 LEES frames: ------------ INTERCEPTOR_DFP_LEES -309300 MIRMIS frames: -------------- INTERCEPTOR_MIRMIS_NIR -309400 INTERCEPTOR_MIRMIS_MIR -309401 INTERCEPTOR_MIRMIS_TIRI -309402 B1 frames: ---------- INTERCEPTOR_B1 -30901 B1 PS frames: ------------- INTERCEPTOR_B1_PS -30901100 B1 HI frames: ------------- INTERCEPTOR_B1_HI -30901200 B1 W/NAC frames: ---------------- INTERCEPTOR_B1_NAC -30901300 INTERCEPTOR_B1_WAC -30901400 B2 frames: ---------- INTERCEPTOR_B2 -30902 B2 ENVISS frames: ------------- INTERCEPTOR_B2_ENVISS -30902100 B2 OPIC frames: ------------- INTERCEPTOR_B2_OPIC -30902200 Comet-Interceptor Frames Hierarchy ----------------------------------------------------------------------------- The diagram below shows the Comet-Interceptor spacecraft and its structures frame hierarchy (not including science instrument frames.) "J2000" INERTIAL +------------------------------------+ | | |<-pck | | | V | "EARTH_FIXED" | ------------- | | |<-ck | V "INTERCEPTOR_SPACECRAFT" --------------------- . . . . V Individual instrument frame trees are provided in the corresponding sections of this file Comet-Interceptor Spacecraft and Spacecraft Structures Frames ======================================================================== This section of the file contains the definitions of the spacecraft and spacecraft structures frames. Comet-Interceptor Spacecraft Frame -------------------------------------- The Comet-Interceptor spacecraft frame is defined as follows: - +Z axis is along the nominal boresight direction of the science deck; - +X axis is along the nominal boresight direction of the HGA; - +Y axis completes the right-hand frame; - the origin of this frame is the launch vehicle interface point. These diagrams illustrate the INTERCEPTOR_SPACECRAFT frame: +X s/c side (HGA side) view: ---------------------------- ^ | toward comet | Science Deck ._____________. .__ _______________. | ._____. | .______________ ___. | \ \ \ | .' `. | / \ \ | | / / \ |/ | \| / / / | | \ \ `. . | . .' \ \ | | / / | o| o |o | / / | | \ \ .' . .' `. . `. \ \ | | / / / |\ +Zsc^ ` /| \ / / | .__\ \_______________/ | `. | .' | \_______________\ \__. -Y Solar Array .___` -|- '___. +Y Solar Array / | \ `-o-----> +Ysc +Xsc +Xsc is out of the page +Z s/c side (science deck side) view: ------------------------------------- ._____________. | | | | | +Zsc +Ysc o==/ /==================o | o----->|o==================/ /==o -Y Solar Array | | | +Y Solar Array | | | .______|______. .--V +Xsc HGA .' `. /___________\ `.|.' +Zsc is out of the page Since the orientation of the INTERCEPTOR_SPACECRAFT frame is computed on-board, sent down in telemetry, and stored in the s/c CK files, it is defined as a CK-based frame. \begindata FRAME_INTERCEPTOR_TUTTLE_NPO = -309010 FRAME_-309010_NAME = 'INTERCEPTOR_TUTTLE_NPO' FRAME_-309010_CLASS = 5 FRAME_-309010_CLASS_ID = -309010 FRAME_-309010_CENTER = -1000099 FRAME_-309010_RELATIVE = 'J2000' FRAME_-309010_DEF_STYLE = 'PARAMETERIZED' FRAME_-309010_FAMILY = 'TWO-VECTOR' FRAME_-309010_PRI_AXIS = 'Z' FRAME_-309010_PRI_VECTOR_DEF = 'OBSERVER_TARGET_POSITION' FRAME_-309010_PRI_OBSERVER = 'INTERCEPTOR' FRAME_-309010_PRI_TARGET = 'TUTTLE' FRAME_-309010_PRI_ABCORR = 'NONE' FRAME_-309010_SEC_AXIS = 'X' FRAME_-309010_SEC_VECTOR_DEF = 'OBSERVER_TARGET_VELOCITY' FRAME_-309010_SEC_OBSERVER = 'INTERCEPTOR' FRAME_-309010_SEC_TARGET = 'SUN' FRAME_-309010_SEC_ABCORR = 'LT+S' FRAME_-309010_SEC_FRAME = 'J2000' \begintext \begindata FRAME_INTERCEPTOR_SPACECRAFT = -309000 FRAME_-309000_NAME = 'INTERCEPTOR_SPACECRAFT' FRAME_-309000_CLASS = 3 FRAME_-309000_CLASS_ID = -309000 FRAME_-309000_CENTER = -309000 CK_-309000_SCLK = -309000 CK_-309000_SPK = -309000 \begintext Comet-Interceptor Subspacecraft B1 Frame ---------------------------------------- The Comet-Interceptor spacecraft frame is defined as follows: - +Z axis is along the nominal boresight direction of the science deck; - +X axis is along the nominal boresight direction of the HGA; - +Y axis completes the right-hand frame; - the origin of this frame is the launch vehicle interface point. These diagrams illustrate the INTERCEPTOR_B1 frame: #TODO prepare ascii diagrams ┌───┐ │MAG│ └─┬─┘ │ │ │ │ ╔═══════════╗ ┌─────┴─────┐ ╔═══════════╗ ║ ▓ ▓ ▓ ▓ ▓ ║───│ │───║ ▓ ▓ ▓ ▓ ▓ ║ ║ ▓ ▓ ▓ ▓ ▓ ║ │ │ ║ ▓ ▓ ▓ ▓ ▓ ║ ║ ▓ ▓ ▓ ▓ ▓ ║ │ │ ║ ▓ ▓ ▓ ▓ ▓ ║ ╚═══════════╝ │ │ ╚═══════════╝ │ │ │ ◉ ● │ │ NAC WAC │ │ HI CIMS│ └───────────┘ Since the orientation of the INTERCEPTOR_B1 frame is computed on-board, sent down in telemetry, and stored in the s/c CK files, it is defined as a CK-based frame. \begindata FRAME_INTERCEPTOR_B1_NPO = -30901010 FRAME_-30901010_NAME = 'INTERCEPTOR_B1_NPO' FRAME_-30901010_CLASS = 5 FRAME_-30901010_CLASS_ID = -30901010 FRAME_-30901010_CENTER = -30901010 FRAME_-30901010_RELATIVE = 'J2000' FRAME_-30901010_DEF_STYLE = 'PARAMETERIZED' FRAME_-30901010_FAMILY = 'TWO-VECTOR' FRAME_-30901010_PRI_AXIS = 'Z' FRAME_-30901010_PRI_VECTOR_DEF = 'OBSERVER_TARGET_POSITION' FRAME_-30901010_PRI_OBSERVER = 'INTERCEPTOR_B1' FRAME_-30901010_PRI_TARGET = 'TUTTLE' FRAME_-30901010_PRI_ABCORR = 'NONE' FRAME_-30901010_SEC_AXIS = 'X' FRAME_-30901010_SEC_VECTOR_DEF = 'OBSERVER_TARGET_VELOCITY' FRAME_-30901010_SEC_OBSERVER = 'INTERCEPTOR_B1' FRAME_-30901010_SEC_TARGET = 'SUN' FRAME_-30901010_SEC_ABCORR = 'LT+S' FRAME_-30901010_SEC_FRAME = 'J2000' \begintext Comet-Interceptor Subspacecraft B2 Frame ---------------------------------------- The Comet-Interceptor spacecraft frame is defined as follows: - +Z axis is along the nominal boresight direction of the science deck; - +X axis is along the nominal boresight direction of the HGA; - +Y axis completes the right-hand frame; - the origin of this frame is the launch vehicle interface point. These diagrams illustrate the INTERCEPTOR_B2 frame: #TODO prepare ascii diagrams Since the orientation of the INTERCEPTOR_B2 frame is computed on-board, sent down in telemetry, and stored in the s/c CK files, it is defined as a CK-based frame. \begindata FRAME_INTERCEPTOR_B2_NPO = -30902010 FRAME_-30902010_NAME = 'INTERCEPTOR_B2_NPO' FRAME_-30902010_CLASS = 5 FRAME_-30902010_CLASS_ID = -30902010 FRAME_-30902010_CENTER = -30902010 FRAME_-30902010_RELATIVE = 'J2000' FRAME_-30902010_DEF_STYLE = 'PARAMETERIZED' FRAME_-30902010_FAMILY = 'TWO-VECTOR' FRAME_-30902010_PRI_AXIS = 'Z' FRAME_-30902010_PRI_VECTOR_DEF = 'OBSERVER_TARGET_POSITION' FRAME_-30902010_PRI_OBSERVER = 'INTERCEPTOR_B2' FRAME_-30902010_PRI_TARGET = 'TUTTLE' FRAME_-30902010_PRI_ABCORR = 'NONE' FRAME_-30902010_SEC_AXIS = 'X' FRAME_-30902010_SEC_VECTOR_DEF = 'OBSERVER_TARGET_VELOCITY' FRAME_-30902010_SEC_OBSERVER = 'INTERCEPTOR_B2' FRAME_-30902010_SEC_TARGET = 'SUN' FRAME_-30902010_SEC_ABCORR = 'LT+S' FRAME_-30902010_SEC_FRAME = 'J2000' \begintext Comet-Interceptor Subspacecraft B2 Rotating Frame ---------------------------------------- The Comet-Interceptor spacecraft frame is defined as follows: - +Z axis is along the nominal boresight direction of the science deck; These diagrams illustrate the INTERCEPTOR_B2 frame: #TODO prepare ascii diagrams Since the orientation of the INTERCEPTOR_B2 frame is computed on-board, sent down in telemetry, and stored in the s/c CK files, it is defined as a CK-based frame. \begindata FRAME_INTERCEPTOR_B2_SPIN = -30902011 FRAME_-30902011_NAME = 'INTERCEPTOR_B2_SPIN' FRAME_-30902011_CLASS = 5 FRAME_-30902011_CLASS_ID = -30902011 FRAME_-30902011_CENTER = -30902011 FRAME_-30902011_RELATIVE = 'INTERCEPTOR_B2_NPO' FRAME_-30902011_DEF_STYLE = 'PARAMETERIZED' FRAME_-30902011_FAMILY = 'EULER' FRAME_-30902011_EPOCH = @2035-MAR-10/12:00:00 FRAME_-30902011_AXES = ( 3 2 1) FRAME_-30902011_UNITS = 'DEGREES' FRAME_-30902011_ANGLE_1_COEFFS = (0.0 57) FRAME_-30902011_ANGLE_2_COEFFS = (0.0) FRAME_-30902011_ANGLE_3_COEFFS = (0.0) \begintext INTERCEPTOR TUTTLE Comet Dust Coma (INTERCEPTOR_TUTTLE_DUST) ------------------------------------------------------------------------ Definition: ----------- The Tuttle Comet Dust Coma frame is defined as follows: - the velocity of TUTTLE relative to the Sun is the primary vector: +Z axis points to the velocity direction; - the position of TUTTLE relative to the Sun is the secondary vector: the projection of the TUTTLE-SUN vector perpendicular to the +Z axis defines the +X axis; - +Y axis completes the right-handed system; - the origin of this frame is the center of mass of the TUTTLE nucleus. All vectors are geometric: no aberration corrections are used. Required Data: -------------- This frame is defined as a two-vector frame using two different types of specifications for the primary and secondary vectors. The primary and secondary vectors are defined as 'observer-target position' and 'observer-target velocity' vectors, therefore, the ephemeris data required to compute the Sun-TUTTLE position vector in the J2000 reference frame must be loaded before using this frame. Remarks: -------- This frame is defined based on SPK data: different planetary ephemerides for Mars, Mars's Barycenter, the Sun, the Solar System Barycenter and the TUTTLE comet will lead to different frame orientation at a given time. It is strongly recommended to indicate what data have been used in the evaluation of this frame when referring to it, e.g. INTERCEPTOR_TUTTLE_DUST using the IAU 2009 constants, the DE405 ephemeris and the TUTTLE ephemeris version N. \begindata FRAME_INTERCEPTOR_TUTTLE_DUST = -309011 FRAME_-309011_NAME = 'INTERCEPTOR_TUTTLE_DUST' FRAME_-309011_CLASS = 5 FRAME_-309011_CLASS_ID = -309011 FRAME_-309011_CENTER = -309011 FRAME_-309011_RELATIVE = 'J2000' FRAME_-309011_DEF_STYLE = 'PARAMETERIZED' FRAME_-309011_FAMILY = 'TWO-VECTOR' FRAME_-309011_PRI_AXIS = '-Z' FRAME_-309011_PRI_VECTOR_DEF = 'OBSERVER_TARGET_VELOCITY' FRAME_-309011_PRI_OBSERVER = 'TUTTLE' FRAME_-309011_PRI_TARGET = 'SUN' FRAME_-309011_PRI_ABCORR = 'NONE' FRAME_-309011_PRI_FRAME = 'J2000' FRAME_-309011_SEC_AXIS = 'X' FRAME_-309011_SEC_VECTOR_DEF = 'OBSERVER_TARGET_POSITION' FRAME_-309011_SEC_OBSERVER = 'TUTTLE' FRAME_-309011_SEC_TARGET = 'SUN' FRAME_-309011_SEC_ABCORR = 'NONE' \begintext INTERCEPTOR TUTTLE Comet Ion Coma (INTERCEPTOR_TUTTLE_ION) ------------------------------------------------------------------------ Definition: ----------- The INTERCEPTOR TUTTLE Comet Ion Coma frame is defined as follows: - the position of TUTTLE relative to the Sun is the primary vector: +Z axis points from the TUTTLE to the Sun; - the velocity of TUTTLE relative to the Sun is the secondary vector: the projection of the velocity vector perpendicular to the +Z axis defines the +X axis; - +Y axis completes the right-handed system; - the origin of this frame is the center of mass of the TUTTLE nucleus. All vectors are geometric: no aberration corrections are used. Required Data: -------------- This frame is defined as a two-vector frame using two different types of specifications for the primary and secondary vectors. The primary and secondary vectors are defined as 'observer-target position' and 'observer-target velocity' vectors, therefore, the ephemeris data required to compute the Sun-TUTTLE position vector in the J2000 reference frame must be loaded before using this frame. Remarks: -------- This frame is defined based on SPK data: different planetary ephemerides for Mars, Mars's Barycenter, the Sun, the Solar System Barycenter and the TUTTLE comet will lead to different frame orientation at a given time. It is strongly recommended to indicate what data have been used in the evaluation of this frame when referring to it, e.g. INTERCEPTOR_TUTTLE_ION using the IAU 2009 constants, the DE405 ephemeris and the TUTTLE ephemeris version N. \begindata FRAME_INTERCEPTOR_TUTTLE_ION = -309012 FRAME_-309012_NAME = 'INTERCEPTOR_TUTTLE_ION' FRAME_-309012_CLASS = 5 FRAME_-309012_CLASS_ID = -309012 FRAME_-309012_CENTER = -309012 FRAME_-309012_RELATIVE = 'J2000' FRAME_-309012_DEF_STYLE = 'PARAMETERIZED' FRAME_-309012_FAMILY = 'TWO-VECTOR' FRAME_-309012_PRI_AXIS = 'Z' FRAME_-309012_PRI_VECTOR_DEF = 'OBSERVER_TARGET_POSITION' FRAME_-309012_PRI_OBSERVER = 'TUTTLE' FRAME_-309012_PRI_TARGET = 'SUN' FRAME_-309012_PRI_ABCORR = 'NONE' FRAME_-309012_SEC_AXIS = 'X' FRAME_-309012_SEC_VECTOR_DEF = 'OBSERVER_TARGET_VELOCITY' FRAME_-309012_SEC_OBSERVER = 'TUTTLE' FRAME_-309012_SEC_TARGET = 'SUN' FRAME_-309012_SEC_ABCORR = 'NONE' FRAME_-309012_SEC_FRAME = 'J2000' \begintext Comet-Interceptor NAIF ID Codes to Name Mapping ------------------------------------------------------------------------------ This section contains name to NAIF ID mappings for the Comet-Interceptor mission. Once the contents of this file is loaded into the KERNEL POOL, these mappings become available within SPICE, making it possible to use names instead of ID code in the high level SPICE routine calls. Spacecraft: ---------------------------------------------------------------- This table presents the Comet-Interceptor Spacecraft and its main structures' names. --------------------- ------- -------------------------- Name ID Synonyms --------------------- ------- -------------------------- INTERCEPTOR -309 INTERCEPTOR_SPACECRAFT -309000 INTERCEPTOR_SC INTERCEPTOR_B1 -30901 INTERCEPTOR_B2 -30902 --------------------- ------- -------------------------- Notes: -- 'INTERCEPTOR_SC' and 'INTERCEPTOR_SPACECRAFT' are synonyms and all map to the Comet-Interceptor s/c bus structure ID (-309000); \begindata NAIF_BODY_NAME += ( 'INTERCEPTOR' ) NAIF_BODY_CODE += ( -309 ) NAIF_BODY_NAME += ( 'COMET INTERCEPTOR' ) NAIF_BODY_CODE += ( -309 ) NAIF_BODY_NAME += ( 'INTERCEPTOR_SC' ) NAIF_BODY_CODE += ( -309000 ) NAIF_BODY_NAME += ( 'INTERCEPTOR_SPACECRAFT' ) NAIF_BODY_CODE += ( -309000 ) NAIF_BODY_NAME += ( 'INTERCEPTOR_TUTTLE_NPO' ) NAIF_BODY_CODE += ( -309010 ) NAIF_BODY_NAME += ( 'INTERCEPTOR_TUTTLE_DUST' ) NAIF_BODY_CODE += ( -309011 ) NAIF_BODY_NAME += ( 'INTERCEPTOR_TUTTLE_ION' ) NAIF_BODY_CODE += ( -309012 ) \begintext High resolution Comet Camera: ----------------------------- This table presents the High resolution Comet Camera (CoCa) instrument and structures' names and IDs: Name ID Synonyms --------------------- ------- ----------------------- INTERCEPTOR_COCA -309100 The mappings summarized in this table are implemented by the keywords below. \begindata NAIF_BODY_NAME += ( 'INTERCEPTOR_COCA' ) NAIF_BODY_CODE += ( -309100 ) \begintext Solar wind, cometary ions and energetic neutral atoms spectrometer: ------------------------------------------------------------------- This table presents the Solar wind, cometary ions and energetic neutral atoms spectrometer (SCIENA) suite and structures' names and IDs: Name ID Synonyms --------------------- ------- ----------------------- INTERCEPTOR_DFP_SCIENA -309200 The mappings summarized in this table are implemented by the keywords below. \begindata NAIF_BODY_NAME += ( 'INTERCEPTOR_DFP_SCIENA' ) NAIF_BODY_CODE += ( -309200 ) \begintext Low-energy electron spectrometer: --------------------------------- This table presents the Low-energy electron spectrometer (LEES) suite and structures' names and IDs: Name ID Synonyms --------------------- ------- ----------------------- INTERCEPTOR_DFP_LEES -309300 The mappings summarized in this table are implemented by the keywords below. \begindata NAIF_BODY_NAME += ( 'INTERCEPTOR_DFP_LEES' ) NAIF_BODY_CODE += ( -309300 ) \begintext Modular infrared molecules and ices sensor: ------------------------------------------- This table presents the Modular infrared molecules and ices sensor (MIRMIS) instrument and structures' names and IDs: Name ID Synonyms --------------------- ------- ----------------------- INTERCEPTOR_MIRMIS_NIR -309400 INTERCEPTOR_MIRMIS_MIR -309401 INTERCEPTOR_MIRMIS_TIRI -309402 The mappings summarized in this table are implemented by the keywords below. \begindata NAIF_BODY_NAME += ( 'INTERCEPTOR_MIRMIS_NIR' ) NAIF_BODY_CODE += ( -309400 ) NAIF_BODY_NAME += ( 'INTERCEPTOR_MIRMIS_MIR' ) NAIF_BODY_CODE += ( -309401 ) NAIF_BODY_NAME += ( 'INTERCEPTOR_MIRMIS_TIRI' ) NAIF_BODY_CODE += ( -309402 ) \begintext B1 spacecraft: -------------- This table presents the B1 structures' names and IDs: Name ID Synonyms --------------------- ------- ----------------------- INTERCEPTOR_B1 -30901 The mappings summarized in this table are implemented by the keywords below. \begindata NAIF_BODY_NAME += ( 'INTERCEPTOR_B1' ) NAIF_BODY_CODE += ( -30901 ) \begintext Plasma Suite: ------------- This table presents the Plasma Suite (PS) suite and structures' names and IDs: Name ID Synonyms --------------------- ------- ----------------------- INTERCEPTOR_B1_PS -30901100 The mappings summarized in this table are implemented by the keywords below. \begindata NAIF_BODY_NAME += ( 'INTERCEPTOR_B1_PS' ) NAIF_BODY_CODE += ( -30901100 ) \begintext Hydrogen imager: ---------------- This table presents the Hydrogen imager (HI) instrument and structures' names and IDs: Name ID Synonyms --------------------- ------- ----------------------- INTERCEPTOR_B1_HI -30901200 The mappings summarized in this table are implemented by the keywords below. \begindata NAIF_BODY_NAME += ( 'INTERCEPTOR_B1_HI' ) NAIF_BODY_CODE += ( -30901200 ) \begintext Narrow/wide-angle camera: ------------------------- This table presents the Narrow/wide-angle camera (N/WAC) instrument and structures' names and IDs: Name ID Synonyms --------------------- ------- ----------------------- INTERCEPTOR_B1_NAC -30901300 INTERCEPTOR_B1_WAC -30901400 The mappings summarized in this table are implemented by the keywords below. \begindata NAIF_BODY_NAME += ( 'INTERCEPTOR_B1_NAC' ) NAIF_BODY_CODE += ( -30901300 ) NAIF_BODY_NAME += ( 'INTERCEPTOR_B1_WAC' ) NAIF_BODY_CODE += ( -30901400 ) \begintext B2 spacecraft: ------------------------------------------- This table presents the B2 structures' names and IDs: Name ID Synonyms --------------------- ------- ----------------------- INTERCEPTOR_B2 -30902 The mappings summarized in this table are implemented by the keywords below. \begindata NAIF_BODY_NAME += ( 'INTERCEPTOR_B2' ) NAIF_BODY_CODE += ( -30902 ) \begintext Entire visible sky camera: -------------------------- This table presents the Entire visible sky camera (EnVisS) instrument and structures' names and IDs: Name ID Synonyms --------------------- ------- ----------------------- INTERCEPTOR_B2_ENVISS -30902100 The mappings summarized in this table are implemented by the keywords below. \begindata NAIF_BODY_NAME += ( 'INTERCEPTOR_B2_ENVISS' ) NAIF_BODY_CODE += ( -30902100 ) \begintext Optical periscopic imager for comets: ------------------------------------- This table presents the Optical periscopic imager for comets (OPIC) instrument and structures' names and IDs: Name ID Synonyms --------------------- ------- ----------------------- INTERCEPTOR_B2_OPIC -30902200 The mappings summarized in this table are implemented by the keywords below. \begindata NAIF_BODY_NAME += ( 'INTERCEPTOR_B2_OPIC' ) NAIF_BODY_CODE += ( -30902200 ) \begintext End of FK file.